Well Intervention Service Market 2017 Global Share, Trend, Segmentation and Forecast to 2022

Wiseguyreports.Com Added New Market Research Report On -“Well Intervention Service Market 2017 Manufacturers, Applications and Future Demand Forecast to 2022”.

PUNE, INDIA, October 3, 2017 /EINPresswire.com/ —

Global Well Intervention Service Market

Description

WiseGuyReports.Com adds” Global Well Intervention Service Market Size, Status and Forecast 2022 “Research To Its Database.

This report studies the global Well Intervention Service Market, analyzes and researches the Well Intervention Service development status and forecast in United States, EU, Japan, China, India and Southeast Asia. This report focuses on the top players in global market, like 
Aker Solutions ASA 
Baker Hughes Inc. 
Chlumberger Ltd. 
Archer Well Company 
EXPRO International Group Holdings Ltd. 
Halliburton Energy Services Co. 
Helix Energy Solutions Group Inc. 
Eatherford International Ltd.

 

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Market segment by Regions/Countries, this report covers 
United States 
EU 
Japan 
China 
India 
Southeast Asia

Market segment by Type, Well Intervention Service can be split into 
Stimulation and Logging Bottom Hole Survey 
Tubing and Packer Failure Repair

Market segment by Application, Well Intervention Service can be split into 
Onshore 
Offshore

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Table of Contents -Major Key Points

Global Well Intervention Service Market Size, Status and Forecast 2022 
1 Industry Overview of Well Intervention Service 
1.1 Well Intervention Service Market Overview 
1.1.1 Well Intervention Service Product Scope 
1.1.2 Market Status and Outlook 
1.2 Global Well Intervention Service Market Size and Analysis by Regions 
1.2.1 United States 
1.2.2 EU 
1.2.3 Japan 
1.2.4 China 
1.2.5 India 
1.2.6 Southeast Asia 
1.3 Well Intervention Service Market by Type 
1.3.1 Stimulation and Logging Bottom Hole Survey 
1.3.2 Tubing and Packer Failure Repair 
1.4 Well Intervention Service Market by End Users/Application 
1.4.1 Onshore 
1.4.2 Offshore

2 Global Well Intervention Service Competition Analysis by Players 
2.1 Well Intervention Service Market Size (Value) by Players (2016 and 2017) 
2.2 Competitive Status and Trend 
2.2.1 Market Concentration Rate 
2.2.2 Product/Service Differences 
2.2.3 New Entrants 
2.2.4 The Technology Trends in Future

3 Company (Top Players) Profiles 
3.1 Aker Solutions ASA 
3.1.1 Company Profile 
3.1.2 Main Business/Business Overview 
3.1.3 Products, Services and Solutions 
3.1.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.1.5 Recent Developments 
3.2 Baker Hughes Inc. 
3.2.1 Company Profile 
3.2.2 Main Business/Business Overview 
3.2.3 Products, Services and Solutions 
3.2.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.2.5 Recent Developments 
3.3 Chlumberger Ltd. 
3.3.1 Company Profile 
3.3.2 Main Business/Business Overview 
3.3.3 Products, Services and Solutions 
3.3.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.3.5 Recent Developments 
3.4 Archer Well Company 
3.4.1 Company Profile 
3.4.2 Main Business/Business Overview 
3.4.3 Products, Services and Solutions 
3.4.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.4.5 Recent Developments 
3.5 EXPRO International Group Holdings Ltd. 
3.5.1 Company Profile 
3.5.2 Main Business/Business Overview 
3.5.3 Products, Services and Solutions 
3.5.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.5.5 Recent Developments 
3.6 Halliburton Energy Services Co. 
3.6.1 Company Profile 
3.6.2 Main Business/Business Overview 
3.6.3 Products, Services and Solutions 
3.6.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.6.5 Recent Developments 
3.7 Helix Energy Solutions Group Inc. 
3.7.1 Company Profile 
3.7.2 Main Business/Business Overview 
3.7.3 Products, Services and Solutions 
3.7.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.7.5 Recent Developments 
3.8 Eatherford International Ltd. 
3.8.1 Company Profile 
3.8.2 Main Business/Business Overview 
3.8.3 Products, Services and Solutions 
3.8.4 Well Intervention Service Revenue (Value) (2012-2017) 
3.8.5 Recent Developments

 ………..CONTINUED

 

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Norah Trent
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Source: EIN Presswire

Commuters Frustrated by Rising Numbers of Recent SEPTA Accidents

Brett Tessler & Associates, P.C

Why would a government run public transportation system seem to have so many accidents of which many are linked to negligence and not prioritizing safety?

Going up against well funded companies is one thing, but going up against the government is even more difficult.”

— Brett Tessler

PHILADELPHIA, PENNSYLVANIA, UNITED STATES, October 3, 2017 /EINPresswire.com/ — SEPTA came into existence in 1964 and has been a dependable mode of transportation for residents and visitors in Southeastern Pennsylvania for many decades now. SEPTA is an acronym for Southeastern Pennsylvania Transportation Authority which is a system of trains, trolleys, and buses, used for public transportation in Philadelphia and its surrounding suburbs.

SEPTA has been governed by Local County rather than the state and has been through various crises. In recent times the number of accidents caused due to both negligence and not prioritizing safety has seen SEPTA at the center of many accident claims.

SEPTA, as many commuters already know, has been involved in quite a few train accidents. If SEPTA injured you or a loved one, a Philadelphia injury lawyer should be consulted before filing a case. We stress this point because it’s a government organization that you’re filing a case against, and getting them to pay up is not going to be an easy battle.

What Do You Do After The Accident?

All accidents are bound to have a physical as well as a mental effect on those who are caught in the mishap. If you were on board a SEPTA vehicle and were involved in an accident, the first step is to seek medical help and get your injuries treated.

Even if you think your injuries aren’t severe, you should call an ambulance and get yourself checked out by a doctor. Many injuries might not immediately be apparent. A medical practitioner will be able to tell you if anything looks suspicious. And you need to keep all of these documented in order to file your claim. If you are injured, you would probably miss work till the time you can go back to it.

Causes of SEPTA Accidents

Although SEPTA has many safety regulations in place, accidents occur which can put lives in danger. Finding the cause of a crash or an accident gives way to the next line of action, which is to rectify the problem and ensure the safety of passengers. Let’s take a look into the common causes of SEPTA accidents which should be avoided or rectified to make commuters feel safe when traveling.

Poor Maintenance

Poor maintenance is a prime cause of many accidents involving SEPTA, especially vehicles involved in mass public transportation. Hence regular inspection of vehicles (buses, trains, trolleys, etc.) and taking them out of service to have them repaired can bring to a halt many accidents.

Faulty Tracks

The train tracks where SEPTA trains ply must always be kept in optimum conditions. A faulty track can derail trolleys or cause brake failures. This can cause serious accidents and loss of life.

Driver’s Fault

Driver distraction has caused many serious injuries in the past. Mobile phones, food, and loud music are the primary causes of distraction to drivers. Drivers should keep all distractions at bay when they are driving since they are responsible for many lives while driving, including their own.

Other Vehicles and Pedestrians

On more than one occasion a SEPTA bus driver has hit an oncoming bicycle or a pedestrian and caused a fatal accident. The cause often time was because of the inability of the bus driver taking a turn to see the bicycle or the pedestrian because they were in his blind-spot.

Whatever the cause of the accident may be, as a SEPTA commuter you want to be assured that you are safe when you travel.

Nevertheless, if you have been a victim of a SEPTA accident and want to claim compensation, then it’s important that you contact an injury lawyer in Philadelphia to ensure that you receive adequate representation for your claims.

Contact an Experienced Lawyer Today

If you’ve been a victim of an accident involving SEPTA, you will require a team of seasoned attorneys by your side. Brett Tessler & Associates can help you receive the right amount of compensation to which you are entitled. Contact us today at (215)-569-9005 to learn more about our legal services or if you have any questions regarding a case.

AUTHOR: Brett Tessler

Brett Tessler has 20 years of combined legal experience. He is strongly committed to helping injured workers and those who fall victim to a Personal Injury and fights aggressively fights for his clients to help them win their case.

Disclaimer:

This press release does not provide any legal advice and there is no relationship established with any reader. The piece has been developed by the Digital Marketing firm of Results Driven Marketing, LLC located in Philadelphia, PA. The piece is strictly informational and does not constitute, promote any client-attorney privilege.

Mike Bannan
Results Driven Marketing, LLC
2156003540
email us here


Source: EIN Presswire

Smart Airport Solutions Market Analysis 2017 (By Segment, Key Players and Applications) and Forecasts To 2024

Smart Airport Solutions Global Market Share, Opportunities, Segmentation and Forecast to 2024

PUNE, INDIA, October 3, 2017 /EINPresswire.com/ — Market Overview
Emergence of Internet of things (IoT) provides innovative connectivity platforms for smart devices and systems covering variety of applications. IoT applications start from small objects to manufacturing units and growing to areas such as smart cities. Applications of IoT are also expanding in all aspects of transportation systems (passengers, vehicles and infrastructure). Growing air traffic and volume of passengers led the airport management to adapt advanced and connectivity solutions to become more proactive minimize the risk in changing aviation dynamics. Primary aim of the smart airports is to make systems interconnected, intelligent and effortless access of passengers. Globally, two thirds of airports are planning major developments in passenger effortless self-service solutions to provide better services. On the other hand, IT expenditure is likely to be the top priority by airport authorities. By 2018, more than 38% airports globally will be infused by the digital technologies such as interactive way findings, smart tracking of passengers and smart check-in services. In 2016, more than 57% passenger used kiosks to check-in and 37% passenger used smart bag tagging services. According to SITA, Geneva based airport solution company, more than 91% passengers who use some kind of smart services at airport stated that they would like to prefer such services in future trips.

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Expanding applications of IoT has provided ease to passengers as well as airport operators by automation of infrastructure and self-service processes, which is the major reason behind the rising demand for smart airports solutions across the globe. In past few years, there has been rapid growth in number of self-service solutions, kiosk check-in and bag recovery at the airports. Globally, passenger traffic is increasing with 5% Y-O-Y growth and IT spending by the airport authorities are growing to lower their operating expenditures and to implement advanced technologies, fuel the growth of global smart airport solution market. However, high initial investments and slow rate of adoption by the emerging economies are expected to hinder the growth of global smart airport solution market.

Key Players
• IBM Corporation
o Synopsis
o Financial Analysis
o Business Strategy
o Product Portfolio
o SWOT Analysis
• CISCO Systems
• Siemens AG
• Honeywell International Inc.
• SITA
• Huawei Technologies Co. Ltd.
• Raytheon
• Quinetiq Group PLC
• INDRA
• Amadeus IT Group SA
• Thales Group

Market Segmentation
• By Services
o Automated Intelligent Building
o Smart Operations Planning
o Intelligent Passenger Tracking
o Predictive Retailing
o Predictive Security
o Seamless Connectivity
o Others (Digital Management of Energy etc.)
• By Infrastructure
o Smart Devices
o Communication Systems
o Cargo and Baggage Ground Handling Control
o Air Traffic Control
o Security Systems
o others

Growth Drivers and Restraints
Rising number of flight passengers and growing need of air travel owing to globalization of businesses are some of the factors that led the airport operators to adopt the airport smart solutions for enhanced connectivity and to accommodate growing numbers of passengers. Airport authorities are also adding new and efficient services which increase passenger satisfaction, which help the aviation industry to increase their revenue from non-aeronautical services. Smart airport solution also provides digital management services to manage energy resources, which improves the environmental footprint through green solutions. One of the major challenges faced by the airports is safety and security threats which can be minimized by smart airport solutions. Predictive security and smart operation planning of airport are expected to boost the market growth of smart airport solutions market. Huawei, leading player of smart airport solution and services caters more than 40 airports, airlines and ATC authorities worldwide. Huawei customers include 10 busiest airports of China and serve more than 30 million passengers. In 2016, Huawei partnered with Dubai airports to develop world first TIER-III certified modular data centre complex (MDCC) at Dubai international airport. This shows the growth opportunities for the smart airport solutions market players in developing countries such as China, India, Brazil, Dubai and others. According to Goldstein Research, there are more than 2,000 ongoing airport projects across the globe with more than USD 400 billion investment. Development of airport infrastructure and construction of new airport showcase the massive growth of smart airport solution market in upcoming 5-6 years.

Market Size and Forecast (2016-2024)
The global smart airport solutions market accounted at USD 7.38 billion in 2015 and is anticipated to expand at a compound annual growth rate of 12.3% over the forecast period i.e. 2016 to 2024. Rising need of smart security and smart passenger services are the two major factors which are pushing the airport authorities towards the inclination of smart airport solutions. The rising number of airports across the globe with advanced connectivity facilities is bolstering the demand for high-end smart airport solutions. On the basis of these factors, global smart airport solution market is anticipated to garner USD 18.76 billion by the end of 2024.

Global airport solution market is segmented into different application such as Smart Operations Planning, Intelligent Passenger Tracking and Predictive Security. Smart operation planning and intelligent passenger tracking system such as flight details, kiosk Check-in and smart air traffic control is expected to expand at a CAGR of 18.6% over the forecast period. Globally, North-America and Western Europe accounts the major revenue share with more than 45% in the global smart airport solution market. Developing countries such as UAE, China, Brazil and others are anticipated to be fastest growing countries over the forecast period on the back of huge investment in infrastructural facilities. According to Goldstein Research, Middle-East smart airport solution market is expected to reach USD 1.6 billion by 2020, owing to high investments particularly in UAE.
…Continued

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Source: EIN Presswire

In-Flight Wifi Market Analysis, Size, Share, Growth, Industry Demand, Application, Forecast Analysis To 2022

This report covers market characteristics, size and growth, segmentation, regional breakdowns, competitive landscape, market shares, trends and strategies

PUNE, INDIA, October 3, 2017 /EINPresswire.com/ — In-Flight Wi-Fi is a revolutionary service that enables people to remain connected and updated with the latest activities all across the globe even while travelling above 3,000 meters in the air.

The global in-flight Wi-Fi connectivity market was valued at USD 2,493 Million in 2015 and is anticipated to expand at a substantial compound annual growth rate (CAGR) of 14.50% over the forecast period.

The global in-flight Wi-Fi market is likely to be fuelled by increasing number of commercial aircrafts all over the world, which are anticipated to reach to 40,020 by 2032.

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In addition to that, rising penetration of smartphones and formulation of favorable guidelines by the aviation authorities (Federal Aviation Administration in the U.S. allowed use of portable electronic devices in the planes) for the use of in-flight Wi-Fi services inside an aircraft would further bid to boost the airborne wireless connectivity market over the next few years.

However, lack of safety and security, higher costs and lack of technology are some of the major challenges that would restrain the growth of in-flight Wi-Fi market during the forecast period.

The global in-flight Wi-Fi market is segmented on the basis of type such as hardware and services. . At 62%, the service segment is believed to have the highest market share by 2021.

On the basis of technology, the market is segmented into two main types i.e. ATG (Air-to-Ground) and satellite technology. The ATG technology covered the largest segment of the market in 2015, but owing to larger adoption of the satellite based technology by the airline companies, the satellite segment is anticipated to observe the highest compound annual growth rate (CAGR) of 22.03% during 2015-2021.

The global in-flight WiFi market is also divided on the basis of geography. It has been noticed that North America captured the highest share in global in-flight Wi-Fi market in 2015 followed by Europe. Maintaining the same trend, North America is projected to dominate the global inflight WiFi market between 2015 and 2021. Asia Pacific region is anticipated to grow at a rapid pace owing to some of the major factors such as robust economic growth, rising disposable income and increasing penetration of smartphones.

The key players of the in-flight Wi-Fi market include ViaSat, Honeywell International Inc., Global Eagle Entertainment, Thales Group, SITA, Kymeta Corporation, Gogo Inc. etc.

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Table of Contents:

1. List of Figures

2. List of Tables

3. Executive Summary

4. Research Methodology

5. Global In-flight Wi-Fi Market Overview13

5.1 Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

6. Global In-Flight Wi-Fi Market Trend Analysis

7. Global In-Flight Wi-Fi Market Dynamics

7.1.1 Drivers

7.1.1.1 Increasing Penetration of Smartphones

7.1.1.2 Rise in Tech Savvy Population

7.1.1.3 Increase in Number of Airline Passengers

7.1.1.4 Growing Demand of In-flight Entertainment Services

7.1.1.5 Favorable Regulations by Aviation Authorities

7.1.2 Restraints

7.1.2.1 Lack of Awareness

7.1.2.2 Lack of Technology

7.1.2.3 High installation cost

7.1.2.4 Lack of Safe and Secure Technology

8. Global In-Flight Wi-Fi Market Segmentation- By Hardware

8.1 Global Hardware Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

8.1.1 Antenna Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

8.1.2 Wireless LAN Market Size and Year-on-Year Growth Rate, 2015-2021

8.1.3 Access Point Controller Device Global Market Size and Year-on-Year Growth (Y-O-Y) Rate, 2015-2021

8.1.4 Wireless Hotspot Gateway Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

8.1.5 Other Hardware Global Market Size and Year-on-Year (Y-O) Growth Rate, 2015-2021

8.2 Future Growth Prospects of In-Flight Wi-Fi Hardware by Regions

8.3 Year-on-Year (Y-O-Y) Growth Rate Comparisons

8.4 Market Attractiveness -by Hardware

9. Global In-Flight Wi-Fi Market Segmentation- By Services

9.1 Services Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

9.1.1 Integration and Implementation Services Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

9.1.2 Network Planning and Design Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

Support Services Global Market Size and Year-on-Year Growth Rate, 2015-2021

9.1.3

9.1.4 Other Services Global Market Size and Year-on-Year (Y-O-Y) Growth Rate, 2015-2021

9.2 Future Growth Prospects of In-Flight Wi-Fi Services by Regions

9.3 Year-on-Year (Y-O-Y) Growth Rate Comparison

9.4 Market Attractiveness Analysis – By Services

……Continued

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Norah Trent
wiseguyreports
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Source: EIN Presswire

Commercial Aircraft Seating 2017 Global Market Expected to Grow at CAGR of 7.81% and Forecast to 2021

Wiseguyreports.Com Publish New Market Research Report On-“Commercial Aircraft Seating 2017 Global Market Expected to Grow at CAGR of 7.81% and Forecast to 2021”

PUNE, INDIA, October 3, 2017 /EINPresswire.com/ —

Commercial Aircraft Seating Market 2017

Airline seats are usually arranged in rows and separated by aisle(s) running along the length of aircraft’s fuselage, and the diagram that demonstrates the seating arrangement in an aircraft is known as aircraft seat map. Airlines have dissimilar seat maps for similar type of aircraft, which are purely based on the routes and the targeted passenger segment. They also aim to make the seats flexible and comfortable for their passengers. Therefore, they equip the seats with a reclining mechanism, which is usually operated mechanically in the economy and short-haul business class and electrically operated in long-haul business and first class.

The analysts forecast the global commercial aircraft seating market to grow at a CAGR of 7.81% during the period 2017-2021.

Covered in this report
The report covers the present scenario and the growth prospects of the global commercial aircraft seating market for 2017-2021. To calculate the market size, the report considers new installations and aftermarket market sales of commercial aircraft seats.

The market is divided into the following segments based on geography:
• Americas
• APAC
• EMEA

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The report, Global Commercial Aircraft Seating Market 2017-2021, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.

Key vendors
• Aviointeriors
• Geven
• RECARO
• Rockwell Collins (B/E Aerospace)
• Zodiac Aerospace

Other prominent vendors
• Acro Aircraft Seating
• Expliseat
• HAECO Americas
• JAMCO
• MIRUS Aircraft Seating
• EnCore
• STELIA Aerospace
• Thompson Aero Seating
• ZIM FLUGSITZ

Key questions answered in this report
• What will the market size be in 2021 and what will the growth rate be?
• What are the key market trends?
• What is driving this market?
• What are the challenges to market growth?
• Who are the key vendors in this market space?

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Table of Contents –Analysis of Key Points

PART 01: Executive summary
PART 02: Scope of the report
PART 03: Research Methodology
PART 04: Introduction
• Market outline

PART 05: Market landscape
• Market overview
• Market size and forecast
• Five forces analysis

PART 06: Market segmentation by aircraft type
• Segmentation of global aircraft seating market by aircraft type
• Global narrow-body aircraft seating market
• Global wide-body aircraft seating market
• Global regional aircraft seating market

PART 07: Market segmentation by cabin class
• Segmentation of global commercial aircraft seating market by cabin class
• Global commercial aircraft seating market for economy class
• Global commercial aircraft seating market for premium economy class
• Global commercial aircraft seating market for business class
• Global commercial aircraft seating market for first class

PART 08: Geographical segmentation
• Geographical segmentation of global commercial aircraft seating market
• Commercial aircraft seating market in Americas
• Commercial aircraft seating market in EMEA
• Commercial aircraft seating market in APAC

PART 09: Decision framework
PART 10: Drivers and challenges
• Market drivers
• Market challenges

PART 11: Market trends
• Use of new materials to make aircraft seats lighter
• Enhancing functionality with advanced positioning technology
• Increasing demand for VIP cabins
• Collaboration of automotive seat companies and aircraft OEMs

PART 12: Vendor landscape
• Competitive landscape
• Other prominent vendors
PART 13: Key vendor analysis
..…..Continued

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Norah Trent
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Source: EIN Presswire

CP Communications Taps Silvus Technologies Mesh Network for Wireless Camera Connectivity

MN-MIMO technology provides a single frequency bidirectional multi-camera solution for golf, football, and baseball coverage

The Silvus mesh network solution allows us to have seamless bidirectional communications from the camera in the field back to the RCP and the video engineers love it.”

— CP Communications Senior VP Kurt Heitmann

LOS ANGELES, CALIFORNIA, UNITED STATES, October 2, 2017 /EINPresswire.com/ — CP Communications, a leading provider of wireless camera systems for FOX Sports golf coverage as well as other high profile events such as Superbowl LI and the 2017 MLB All Star Game, has begun deploying Silvus StreamCaster radios to provide seamless wireless connectivity for their new camera control / paint system and return video.

At the USGA Senior Open and again at the Women’s Open, the system was set-up to provide simultaneous control of nine cameras throughout the golf course. CP’s innovative IP based camera control receiver (CCR) and RCP interface solution provides the video engineer with instantaneous control as well as full feedback to the RCP, including indications that have not previously been available, such as showing when the lens extender is in use and the real values of iris, gain and gamma.

Reliable RF coverage for the system is provided by the Silvus StreamCaster “MN-MIMO” waveform, a combination of mobile ad-hoc networking (MANET), COFDM modulation and MIMO multi-antenna transmission and reception technologies. StreamCaster radios are available for use in both licensed and unlicensed frequency bands and automatically operate as a self-forming, self-healing mesh network with no user interaction required.

Commenting on the first successful deployments of the system, CP Communications Senior VP Kurt Heitmann said “The Silvus mesh network solution allows us to have seamless bidirectional communications from the camera in the field back to the RCP and the video engineers love it. They can see exactly what the camera values really are, not like the old systems which “faked” the handshake. We are extremely happy with the Silvus system and we are now deploying it on all of our RF camera rentals.”

Mark Tommey
Silvus Technologies
3104793333
email us here


Source: EIN Presswire

Air Defense System 2017 Global Market – Technologies, Applications, Verticals, Strategies & Forecasts

Air Defense System Market

WiseGuyReports.Com Publish a New Market Research Report On-“Air Defense System 2017 Global Market -Technologies, Applications,Verticals,Strategies & Forecasts”.

PUNE, INDIA, October 2, 2017 /EINPresswire.com/ —

Global Air Defense System market competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including
Saab AB (Sweden)
Israel Aerospace Industries Ltd. (Israel)
Raytheon Company (US)
Thales Group (France)
Lockheed Martin Corporation (US)
Hanwa Corporation (South Korea)
BAE Systems PLC (UK)

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Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Air Defense System in these regions, from 2012 to 2022 (forecast), covering
North America
Europe
China
Japan
Southeast Asia
India

On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into
Weapon System
Fire Control System
Command and Control System
Others

On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Air Defense System for each application, including
Civil Use
Military Use

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Table Of Contents – Major Key Points

Global Air Defense System Market Research Report 2017
1 Air Defense System Market Overview
1.1 Product Overview and Scope of Air Defense System
1.2 Air Defense System Segment by Type (Product Category)
1.2.1 Global Air Defense System Production and CAGR (%) Comparison by Type (Product Category)(2012-2022)
1.2.2 Global Air Defense System Production Market Share by Type (Product Category) in 2016
1.2.3 Weapon System
1.2.4 Fire Control System
1.2.5 Command and Control System
1.2.6 Others
1.3 Global Air Defense System Segment by Application
1.3.1 Air Defense System Consumption (Sales) Comparison by Application (2012-2022)
1.3.2 Civil Use
1.3.3 Military Use
1.4 Global Air Defense System Market by Region (2012-2022)
1.4.1 Global Air Defense System Market Size (Value) and CAGR (%) Comparison by Region (2012-2022)
1.4.2 North America Status and Prospect (2012-2022)
1.4.3 Europe Status and Prospect (2012-2022)
1.4.4 China Status and Prospect (2012-2022)
1.4.5 Japan Status and Prospect (2012-2022)
1.4.6 Southeast Asia Status and Prospect (2012-2022)
1.4.7 India Status and Prospect (2012-2022)
1.5 Global Market Size (Value) of Air Defense System (2012-2022)
1.5.1 Global Air Defense System Revenue Status and Outlook (2012-2022)
1.5.2 Global Air Defense System Capacity, Production Status and Outlook (2012-2022)

2 Global Air Defense System Market Competition by Manufacturers
2.1 Global Air Defense System Capacity, Production and Share by Manufacturers (2012-2017)
2.1.1 Global Air Defense System Capacity and Share by Manufacturers (2012-2017)
2.1.2 Global Air Defense System Production and Share by Manufacturers (2012-2017)
2.2 Global Air Defense System Revenue and Share by Manufacturers (2012-2017)
2.3 Global Air Defense System Average Price by Manufacturers (2012-2017)
2.4 Manufacturers Air Defense System Manufacturing Base Distribution, Sales Area and Product Type
2.5 Air Defense System Market Competitive Situation and Trends
2.5.1 Air Defense System Market Concentration Rate
2.5.2 Air Defense System Market Share of Top 3 and Top 5 Manufacturers
2.5.3 Mergers & Acquisitions, Expansion

……..

7 Global Air Defense System Manufacturers Profiles/Analysis
7.1 Saab AB (Sweden)
7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.1.2 Air Defense System Product Category, Application and Specification
7.1.2.1 Product A
7.1.2.2 Product B
7.1.3 Saab AB (Sweden) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.1.4 Main Business/Business Overview
7.2 Israel Aerospace Industries Ltd. (Israel)
7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.2.2 Air Defense System Product Category, Application and Specification
7.2.2.1 Product A
7.2.2.2 Product B
7.2.3 Israel Aerospace Industries Ltd. (Israel) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.2.4 Main Business/Business Overview
7.3 Raytheon Company (US)
7.3.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.3.2 Air Defense System Product Category, Application and Specification
7.3.2.1 Product A
7.3.2.2 Product B
7.3.3 Raytheon Company (US) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.3.4 Main Business/Business Overview
7.4 Thales Group (France)
7.4.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.4.2 Air Defense System Product Category, Application and Specification
7.4.2.1 Product A
7.4.2.2 Product B
7.4.3 Thales Group (France) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.4.4 Main Business/Business Overview
7.5 Lockheed Martin Corporation (US)
7.5.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.5.2 Air Defense System Product Category, Application and Specification
7.5.2.1 Product A
7.5.2.2 Product B
7.5.3 Lockheed Martin Corporation (US) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.5.4 Main Business/Business Overview
7.6 Hanwa Corporation (South Korea)
7.6.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.6.2 Air Defense System Product Category, Application and Specification
7.6.2.1 Product A
7.6.2.2 Product B
7.6.3 Hanwa Corporation (South Korea) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.6.4 Main Business/Business Overview
7.7 BAE Systems PLC (UK)
7.7.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors
7.7.2 Air Defense System Product Category, Application and Specification
7.7.2.1 Product A
7.7.2.2 Product B
7.7.3 BAE Systems PLC (UK) Air Defense System Capacity, Production, Revenue, Price and Gross Margin (2012-2017)
7.7.4 Main Business/Business Overview

Continue…….

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Source: EIN Presswire

Advanced Protective Gears 2017 Global Market Share, Growth, Trends & Forecast to 2022

Advanced Protective Gears-Market Demand, Growth, Opportunities, Manufacturers, Analysis of Top Key Players and Forecast to 2022

PUNE, INDIA, October 2, 2017 /EINPresswire.com/ — Advanced Protective Gears Market 2017 

Description: 

In this report, the global Advanced Protective Gears market is valued at USD XX million in 2016 and is expected to reach USD XX million by the end of 2022, growing at a CAGR of XX% between 2016 and 2022.

Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Advanced Protective Gears in these regions, from 2012 to 2022 (forecast), covering 
North America 
Europe 
China 
Japan 
Southeast Asia 
India 
Global Advanced Protective Gears market competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including 
3M 
Kimberly-Clark 
Royal TenCate 
Teijin Aramid 
BAE Systems 
Armor Source 
Ballistic Body Armor 
Blucher GMBH 
Donaldson 
Espin Technologies 
Honeywell Safety 
Innotex 
Ceradyne 
Alliant Techsystems (ATK) 
Ansell 
E.I.Du Pont De Nemours and Company 
Mine Safety Appliances Company (MSA) 
Polymer Group (PGI) 
Tex-Shield 
Rheinmentall AG 
Point Blank Enterprises 
Morgan Advanced Materials PLC 
Eagle Industries 
Survitec Group 
M Cubed Technologies 

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On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into 
Thermal Protective Clothing 
Chemical Clothing 
Biological Clothing 
Ancillary Protection Clothing 
Ballistic Clothing 
Other 
On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Advanced Protective Gears for each application, including 
Law Enforcement 
Agriculture 
Forestry 
Government 
Utilities 
Industrial 
Other

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If you have any special requirements, please let us know and we will offer you the report as you want.

Table of Contents:

Global Advanced Protective Gears Market Research Report 2017 
1 Advanced Protective Gears Market Overview 
1.1 Product Overview and Scope of Advanced Protective Gears 
1.2 Advanced Protective Gears Segment by Type (Product Category) 
1.2.1 Global Advanced Protective Gears Production and CAGR (%) Comparison by Type (Product Category)(2012-2022) 
1.2.2 Global Advanced Protective Gears Production Market Share by Type (Product Category) in 2016 
1.2.3 Thermal Protective Clothing 
1.2.4 Chemical Clothing 
1.2.5 Biological Clothing 
1.2.6 Ancillary Protection Clothing 
1.2.7 Ballistic Clothing 
1.2.8 Other 
1.3 Global Advanced Protective Gears Segment by Application 
1.3.1 Advanced Protective Gears Consumption (Sales) Comparison by Application (2012-2022) 
1.3.2 Law Enforcement 
1.3.3 Agriculture 
1.3.4 Forestry 
1.3.5 Government 
1.3.6 Utilities 
1.3.7 Industrial 
1.3.8 Other 
1.4 Global Advanced Protective Gears Market by Region (2012-2022) 
1.4.1 Global Advanced Protective Gears Market Size (Value) and CAGR (%) Comparison by Region (2012-2022) 
1.4.2 North America Status and Prospect (2012-2022) 
1.4.3 Europe Status and Prospect (2012-2022) 
1.4.4 China Status and Prospect (2012-2022) 
1.4.5 Japan Status and Prospect (2012-2022) 
1.4.6 Southeast Asia Status and Prospect (2012-2022) 
1.4.7 India Status and Prospect (2012-2022) 
1.5 Global Market Size (Value) of Advanced Protective Gears (2012-2022) 
1.5.1 Global Advanced Protective Gears Revenue Status and Outlook (2012-2022) 
1.5.2 Global Advanced Protective Gears Capacity, Production Status and Outlook (2012-2022)

2 Global Advanced Protective Gears Market Competition by Manufacturers 
2.1 Global Advanced Protective Gears Capacity, Production and Share by Manufacturers (2012-2017) 
2.1.1 Global Advanced Protective Gears Capacity and Share by Manufacturers (2012-2017) 
2.1.2 Global Advanced Protective Gears Production and Share by Manufacturers (2012-2017) 
2.2 Global Advanced Protective Gears Revenue and Share by Manufacturers (2012-2017) 
2.3 Global Advanced Protective Gears Average Price by Manufacturers (2012-2017) 
2.4 Manufacturers Advanced Protective Gears Manufacturing Base Distribution, Sales Area and Product Type 
2.5 Advanced Protective Gears Market Competitive Situation and Trends 
2.5.1 Advanced Protective Gears Market Concentration Rate 
2.5.2 Advanced Protective Gears Market Share of Top 3 and Top 5 Manufacturers 
2.5.3 Mergers & Acquisitions, Expansion

…….

7 Global Advanced Protective Gears Manufacturers Profiles/Analysis 
7.1 3M 
7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.1.2 Advanced Protective Gears Product Category, Application and Specification 
7.1.2.1 Product A 
7.1.2.2 Product B 
7.1.3 3M Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.1.4 Main Business/Business Overview 
7.2 Kimberly-Clark 
7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.2.2 Advanced Protective Gears Product Category, Application and Specification 
7.2.2.1 Product A 
7.2.2.2 Product B 
7.2.3 Kimberly-Clark Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.2.4 Main Business/Business Overview 
7.3 Royal TenCate 
7.3.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.3.2 Advanced Protective Gears Product Category, Application and Specification 
7.3.2.1 Product A 
7.3.2.2 Product B 
7.3.3 Royal TenCate Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.3.4 Main Business/Business Overview 
7.4 Teijin Aramid 
7.4.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.4.2 Advanced Protective Gears Product Category, Application and Specification 
7.4.2.1 Product A 
7.4.2.2 Product B 
7.4.3 Teijin Aramid Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.4.4 Main Business/Business Overview 
7.5 BAE Systems 
7.5.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.5.2 Advanced Protective Gears Product Category, Application and Specification 
7.5.2.1 Product A 
7.5.2.2 Product B 
7.5.3 BAE Systems Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.5.4 Main Business/Business Overview 
7.6 Armor Source 
7.6.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.6.2 Advanced Protective Gears Product Category, Application and Specification 
7.6.2.1 Product A 
7.6.2.2 Product B 
7.6.3 Armor Source Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.6.4 Main Business/Business Overview 
7.7 Ballistic Body Armor 
7.7.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.7.2 Advanced Protective Gears Product Category, Application and Specification 
7.7.2.1 Product A 
7.7.2.2 Product B 
7.7.3 Ballistic Body Armor Advanced Protective Gears Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.7.4 Main Business/Business Overview 
7.8 Blucher GMBH 
Continued…..

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Norah Trent
WiseGuy Research Consultants Pvt. Ltd.
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email us here


Source: EIN Presswire

Global Renewable Aviation Fuel Market 2017 Segmentation, Demand, Growth, Trend, Opportunity and Forecast to 2022

Renewable Aviation Fuel-Market Demand, Growth, Opportunities, Manufacturers, Analysis of Top Key Players and Forecast to 2022

PUNE, INDIA, October 2, 2017 /EINPresswire.com/ — Renewable Aviation Fuel Market 2017     

Description: 

In this report, the global Renewable Aviation Fuel market is valued at USD XX million in 2016 and is expected to reach USD XX million by the end of 2022, growing at a CAGR of XX% between 2016 and 2022.

Geographically, this report is segmented into several key Regions, with production, consumption, revenue (million USD), market share and growth rate of Renewable Aviation Fuel in these regions, from 2012 to 2022 (forecast), covering 
North America 
Europe 
China 
Japan 
Southeast Asia 
India 
Global Renewable Aviation Fuel market competition by top manufacturers, with production, price, revenue (value) and market share for each manufacturer; the top players including 
Amyris 
LanzaTech 
General Biomass 
SGB 
UOP 
Neste 
TOTAL 
Byogy 
Sundrop Fuels 
AltAir Fuels 
BP 
Chevron 
Aemetis 
REG Synthetic Fuels 
Gevo 
Terrabon 
Envergent 
Solazyme 
INEOS 
DONG Energy 

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On the basis of product, this report displays the production, revenue, price, market share and growth rate of each type, primarily split into 
Algal Biofuel 
Plant Biofuel 
Others 
On the basis on the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate of Renewable Aviation Fuel for each application, including 
Commercial 
Defense

Enquiry before Buying @ https://www.wiseguyreports.com/enquiry/869015-global-renewable-aviation-fuel-market-research-report-2017

If you have any special requirements, please let us know and we will offer you the report as you want.

Table of Contents:

Global Renewable Aviation Fuel Market Research Report 2017 
1 Renewable Aviation Fuel Market Overview 
1.1 Product Overview and Scope of Renewable Aviation Fuel 
1.2 Renewable Aviation Fuel Segment by Type (Product Category) 
1.2.1 Global Renewable Aviation Fuel Production and CAGR (%) Comparison by Type (Product Category) (2012-2022) 
1.2.2 Global Renewable Aviation Fuel Production Market Share by Type (Product Category) in 2016 
1.2.3 Algal Biofuel 
1.2.4 Plant Biofuel 
1.2.5 Others 
1.3 Global Renewable Aviation Fuel Segment by Application 
1.3.1 Renewable Aviation Fuel Consumption (Sales) Comparison by Application (2012-2022) 
1.3.2 Commercial 
1.3.3 Defense 
1.4 Global Renewable Aviation Fuel Market by Region (2012-2022) 
1.4.1 Global Renewable Aviation Fuel Market Size (Value) and CAGR (%) Comparison by Region (2012-2022) 
1.4.2 North America Status and Prospect (2012-2022) 
1.4.3 Europe Status and Prospect (2012-2022) 
1.4.4 China Status and Prospect (2012-2022) 
1.4.5 Japan Status and Prospect (2012-2022) 
1.4.6 Southeast Asia Status and Prospect (2012-2022) 
1.4.7 India Status and Prospect (2012-2022) 
1.5 Global Market Size (Value) of Renewable Aviation Fuel (2012-2022) 
1.5.1 Global Renewable Aviation Fuel Revenue Status and Outlook (2012-2022) 
1.5.2 Global Renewable Aviation Fuel Capacity, Production Status and Outlook (2012-2022)

2 Global Renewable Aviation Fuel Market Competition by Manufacturers 
2.1 Global Renewable Aviation Fuel Capacity, Production and Share by Manufacturers (2012-2017) 
2.1.1 Global Renewable Aviation Fuel Capacity and Share by Manufacturers (2012-2017) 
2.1.2 Global Renewable Aviation Fuel Production and Share by Manufacturers (2012-2017) 
2.2 Global Renewable Aviation Fuel Revenue and Share by Manufacturers (2012-2017) 
2.3 Global Renewable Aviation Fuel Average Price by Manufacturers (2012-2017) 
2.4 Manufacturers Renewable Aviation Fuel Manufacturing Base Distribution, Sales Area and Product Type 
2.5 Renewable Aviation Fuel Market Competitive Situation and Trends 
2.5.1 Renewable Aviation Fuel Market Concentration Rate 
2.5.2 Renewable Aviation Fuel Market Share of Top 3 and Top 5 Manufacturers 
2.5.3 Mergers & Acquisitions, Expansion

…….

7 Global Renewable Aviation Fuel Manufacturers Profiles/Analysis 
7.1 Amyris 
7.1.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.1.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.1.2.1 Product A 
7.1.2.2 Product B 
7.1.3 Amyris Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.1.4 Main Business/Business Overview 
7.2 LanzaTech 
7.2.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.2.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.2.2.1 Product A 
7.2.2.2 Product B 
7.2.3 LanzaTech Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.2.4 Main Business/Business Overview 
7.3 General Biomass 
7.3.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.3.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.3.2.1 Product A 
7.3.2.2 Product B 
7.3.3 General Biomass Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.3.4 Main Business/Business Overview 
7.4 SGB 
7.4.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.4.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.4.2.1 Product A 
7.4.2.2 Product B 
7.4.3 SGB Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.4.4 Main Business/Business Overview 
7.5 UOP 
7.5.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.5.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.5.2.1 Product A 
7.5.2.2 Product B 
7.5.3 UOP Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.5.4 Main Business/Business Overview 
7.6 Neste 
7.6.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.6.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.6.2.1 Product A 
7.6.2.2 Product B 
7.6.3 Neste Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.6.4 Main Business/Business Overview 
7.7 TOTAL 
7.7.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.7.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.7.2.1 Product A 
7.7.2.2 Product B 
7.7.3 TOTAL Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.7.4 Main Business/Business Overview 
7.8 Byogy 
7.8.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.8.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.8.2.1 Product A 
7.8.2.2 Product B 
7.8.3 Byogy Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.8.4 Main Business/Business Overview 
7.9 Sundrop Fuels 
7.9.1 Company Basic Information, Manufacturing Base, Sales Area and Its Competitors 
7.9.2 Renewable Aviation Fuel Product Category, Application and Specification 
7.9.2.1 Product A 
7.9.2.2 Product B 
7.9.3 Sundrop Fuels Renewable Aviation Fuel Capacity, Production, Revenue, Price and Gross Margin (2012-2017) 
7.9.4 Main Business/Business Overview 
7.10 AltAir Fuels 
Continued…..

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Norah Trent
WiseGuy Research Consultants Pvt. Ltd.
+1 646 845 9349 / +44 208 133 9349
email us here


Source: EIN Presswire