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Chemical, Biological, Radiological, Nuclear And Explosive Market will be reach $ 9.8 billion by 2022 ( Applied Science & Chemistry, Agilent Technologies, AirBoss of America)

03-14-2018 03:43 PM CET | Business, Economy, Finances, Banking & Insurance

Press release from: Press-Release

Chemical, Biological, Radiological, Nuclear And Explosive

Chemical, Biological, Radiological, Nuclear And Explosive

Press Release - 14 Mar 2018

Global Research and Development News --
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Report Description-
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The 2016 study has 1,208 pages, 512 tables and figures. Worldwide CBRNE markets are poised to achieve significant growth with the use of detectors that are implemented as platforms, many of them handheld, used to help implement precision detection of intent to do harm to civilian populations or military personnel.

Chemical warfare agents (CWAs), toxic industrial chemicals (TICs), toxic industrial materials (TIMs), hazmat agents are problems in civilized society when terrorists target civilian populations as has happened recently in Boston, Paris, Asia, Syria, London, and Belgium. The risks associated with terrorist use of chemical, biological, radiological, nuclear and explosive (CBRNE) warfare are tremendous.
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– Get Sample Report https://www.researchmoz.us/enquiry.php?type=S&repid=818840
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Growing use of CBRNE detection devices to try to protect civilians is encouraging, because it gives a sense of being able to protect people, whereas previously everyone has felt terribly vulnerable. Watchfulness in the context of terrorist threats is encouraging because the terrorist behavior is concerning.

Expanding threats require more first responder CBRNE detection devices and more vigilance from the first responders as they learn to use the devices. CBRNE detection teams and hazmat response are provided by first responders to help protect civilian populations.

Advanced handheld analytical technology permits first responders to be capable of proactive performance in a hot zone. Handheld devices allow for faster detection, response and continuous monitoring of both conventional and unconventional threats helping to ensure public safety and response team protection.

An abundance of new research and development in sensors and technology permits detection of a hazardous substance that may have been planted by a terrorist. Detection and identification of CBRNE at a distance becomes a way to protect first responders responsible for finding the hazmat. The significance of detection is increasing as governments and military organizations recognize the need to more efficiently identify and categorize chemicals, explosives, biological agents, radiology and nuclear materials and other threats. The ability to manage separate detection devices creates the need for device integration.

Worldwide, government agencies and military branches are tasked with the formidable job of identifying evolving threats to national security such as concealed explosives, improvised explosive devices (IEDs), and airborne chemical and biological materials – without putting equipment or people in harm’s way. Lasers and optical techniques are of critical importance as they are used to implement standoff detection technology for their ability to passively and actively probe threats near and far.

Threat Detection: Chemical, Biological, Radiological, Nuclear and Explosive detection is a fundamental responsibility of governments worldwide. New technology is necessary, less expensive techniques for detection are needed. Domestic and foreign terrorists continue to pose serious threats to the United States. U.S. citizens at home or traveling abroad can be targets, as can infrastructure (roads, bridges, IT systems) and trade ports. CBRNe detection devices are on the front line of evolving protection practices.

Emergency responders are distributed throughout every country are the primary users of the CBRNe devices along with the military. The first responders work in the military and they work in small communities; they work in large cities. All first responders need reliable and interoperable chemical, biological, radiological, nuclear, and explosive (CBRNE) detectors to protect life and property.

Since September 2001, emergency responders are far better equipped to face these threats. Their detection systems, communication and protective gear are better designed for counterterrorism.

In the US, NIST and the Department of Homeland Security continue to address critical needs for standards that identify performance metrics for gear, instruments and systems used in threat detection. In the US, NIST's National Security Standards Program supports and coordinates development of test methods, performance standards, guidance and training for systems and gear that protect against CBRNE threats to ensure that:

According to Susan Eustis, lead author of the study, “Use of CBRNE represents a key milestone in provision of value to the governments charged with protecting large civilian populations. Customized cameras, multiple different types of sensors, and new chemistry approaches are used to address protection in venues everywhere. Smaller, lighter systems further automate detection. Spending on CBRNE detection devices was recently upgraded in response to random weekly terrorist attacks in various parts of the world.”

The worldwide market for CBRNE (Chemical, Biological, Radiological, Nuclear And Explosives) at $2.2 billion in 2015 is anticipated to reach $ 9.8 billion by 2022. Market growth is driven by the vulnerability of civilian populations to the whim of terrorist attacks. CBRNE represents a cohesive response to a scattered threat. As such, there are many different detection devices that need to be available in any one place to address safety issues.

Multiple applications drive market growth, most of all integrated devices that promote ease of use. White powder identification and standoff systems are significant. Applications for CBRNE are in law enforcement, the military, border control, homeland security, building surveillance, concert protection, sports arena protection, fire department use, utility infrastructure surveillance, and delivery systems. These application areas are identified and forecast in the market research study.

– Companies Profiled –
Market Leaders
1. Thermo Fisher Scientific, Inc.
2. Bruker
3. Chemring Group PLC
4. Mirion
5. Agilent
6. FLIR
7. Smiths Group PLC/Smiths Detection
8. Drägerwerk AG & Co KGaA/Dräger
9. Inficon
10. Airbus Defense & Space /Cassidian
11. Canberra
12. Nexter Group/NBC-Sys
13. bioMerieux/Biofire Defense
14. Ludlum Measurements
15. Air Techniques International
16. Morphix Technologies
17. Proengin
18. Luminix
19. Passport Systems, Inc.

Selected Market Participants
1. 20/20 GeneSystems / 20/20 BioResponse
2. 3M
3. 908 Devices
4. 908 Devices Applied Science & Chemistry
5. Agilent Technologies
6. AirBoss of America Corporation
7. Airbus Defense & Space
8. Airsense Analytics
9. Air Techniques International
10. Allen-Vanguard
11. Argon Electronics Ltd.
12. ATI
13. Avon Protection
14. B&W Tek
15. Batelle
16. BBI Detection
17. Berkeley Nucleonics
18. Bertin Technologies
19. bioMérieux
20. BioQuell
21. Block MEMS LLC
22. Blücher
23. Bracco Diagnostics / RSDecon
24. Bruker Detection
25. Canadian Technology Systems
26. Canberra
27. CBRNE Command
28. Cegelec
29. Cepheid
30. Chemring Group PLC
31. Cobalt Light Systems
32. CRISTANINI S.p.A.
33. CUBRC
34. Daylight Solutions
35. Defense Collaboration Services / DCS
36. Decon7 Systems
37. Defentect Group Inc
38. DHS Systems International Ltd
39. Drägerwerk AG & Co KGaA
40. Dräger Evita XL
41. Dugway Proving Ground
42. DuPont / Genencor
43. Edgewood Chemical Biologican Center
44. Elbit
45. Emergent BioSolution
46. Endeavor Robotics
47. Environics
48. Eurolite CBRN
49. Federal Resources
50. First Line Technology
51. FLIR Systems
52. Futuretech / Kärcher Futuretech GmbH
53. GasMet
54. GE Sensors: Measurement & Control Solutions
55. GenPrime
56. Homeland DefSec
57. ICOR Technology Robots
58. Illumina
59. Indra
60. Inficon
61. Intelagard
62. ITL Solutions
63. Johnson Controls / Tyco
64. Kärcher Futuretech GmbH
65. KD Analytical
66. Kestrel Corporation Optical and Sensor Innovations
67. Kestrel Computer-Aided Detection (CAD) SW
68. Kromek Group plc
69. Lakeland Industries
70. Ludlum Measurements
71. Luminex
72. Meridian Medical Technologies
73. Mirion Technologies
74. MKS
75. Morphix Technologies
76. Nexter Group
77. Nexter Robotics
78. Nexter Group / NBC Sys
79. Nor E First Response
80. Northrop Grumman
81. Omega Technical Services
82. OSI Systems
83. Owlstone Inc.
84. OWR
85. Passport Systems
86. Paul Boye Technologies
87. PHDS Co
88. Pony Industry
89. PositiveID Corporation / E-N-G Mobile Systems
90. Proengin
91. QinetiQ
92. Riken Keiki
93. RKI
94. Roche Diagnostics
95. Roche CBRNE Molecular Diagnostic Assay
96. SERB Laboratories
97. Smiths Group / Smiths Detection
98. Smiths / Morpho System™
99. Smiths Detection
100. Spectrex Inc.
101. STERIS
102. Telerob
103. Thales Group
104. Thermo Fisher Scientific
105. Thorlabs
106. Thorlabs / Maxion Technologies
107. W. B. Johnson Instruments
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– More Clear Details get Table of Contents https://www.researchmoz.us/cbrne-chemical-biological-radiological-nuclear-and-explosive-detection-devices-market-shares-strategies-and-forecasts-worldwide-2016-to-2022-report.html/toc
..
Table of Contents
VOLUME 1
Volume 1 2
CBRNe Executive Summary 94
CBRNE Advanced Handheld and Desktop Analytical Technology 94
CBRNE (Chemical, Biological, Radiological, Nuclear And Explosives) Detection Devices 95
CBRNE (Chemical, Biological, Radiological, Nuclear And Explosives) Detection Device Market Driving Forces 96
CBRNE Market Shares 97
CBRNE Market 2016-2022 - Market Forecasts 99
1. CBRNe Detection Market Description and Market Dynamics 101
1.1 Threat Detection: Chemical, Biological, Radiological, Nuclear and Explosive 101
1.2 CBRNe Detection Creates Market Dynamics 105
1.2.1 Stand-Off Detection 106
1.2.2 High Visibility Events (HVE) 107
1.3 Helytex Radiogardase 108
1.4 Building Vulnerability 109
2. CBRNE Market Shares and Forecasts 113
2.1 CBRNE Advanced Handheld and Desktop Analytical Technology 113
2.1.1 CBRNE (Chemical, Biological, Radiological, Nuclear And Explosives) Detection Devices 114
2.1.2 CBRNE (Chemical, Biological, Radiological, Nuclear And Explosives) Detection Device Market Driving Forces 115
2.2 CBRNE Market Shares 116
2.2.1 Smiths 119
2.2.2 Bruker 120
2.2.3 Bruker DE-tector 121
2.2.4 Mirion 122
2.2.5 Flir Biological 122
2.2.6 908 Devices M908 First Responder Chemical Identification 123
2.2.7 Cobalt Light Resolve Product for Detection of Explosives, Narcotics, And Hazardous Materials 124
2.2.8 GenPrime Bio Warfare Agent Detector 125
2.2.9 Proengin 125
2.2.10 Gasmet DX4000 FTIR Gas Analyzer 126
2.2.11 Chemring Detection Systems 127
2.2.12 Inficon Portable Gas Chromatograph/Mass Spectrometer (GC/MS) Gold Standard For Chemical Identification 127
2.2.13 Canberra Serving The Nuclear Community 128
2.3 CBRNE Market 2016-2022 - Market Forecasts 129
2.3.1 CBRNE Detection Market Unit Analysis 131
2.3.2 CBRNE Detection Market Segment Types 134
2.3.3 CBRNE Threat Type Detection Devices, Chemical, Biological, Radiological, Nuclear, And Explosive 135
2.4 Chemical Threat Analysis 139
2.4.1 Chemical Weapons 139
2.4.2 Bruker Mobile Gas Chromatography / Mass Spectrometry Chemical Threat Analysis 141
2.4.3 Thermo Fisher FirstDefender™ RMX Handheld White Powder Chemical Identification 142
2.4.4 Chemring Detection Systems 144
2.5 Biological Threat Analysis 144
2.5.1 Biological Agent Detection Market Trends 145
2.5.2 CBRNE Bio-Detection Market Shares 147
2.5.3 Agilent Technologies 148
2.5.4 Smiths Group 149
2.5.5 BioMérieux / BioFire 149
2.5.6 FLIR Fido B2 Capabilities 150
2.5.7 GenPrime Bio Warfare Agent Detector 152
2.5.8 BBI White Powder Bio-threat Detection IMASS Device 152
2.5.9 BioCheck® White Powder Protocol 153
2.6 Radiological 153
2.7 Nuclear 154
2.7.1 Thermo Scientific Nuclear 154
2.7.2 Mirion Technologies 155
2.7.3 Ludlum Measurements 156
2.7.4 Canberra 156
2.7.5 FLIR 158
2.8 Explosive Device 158
2.8.1 Next Generation Explosives Detection: Trace Capability for Law Enforcement 160
2.8.2 Explosives Trace Detection 160
2.8.3 Explosives Law enforcement applications 161
2.8.4 Handheld Explosives Trace Detectors 163
2.8.5 Flir Interdicting the Invisible Threat 164
2.8.6 How FLIR TrueTrace Works 165
2.8.7 Morphix 168
2.9 CBRNE Detection Device End Users: Military, Homeland Security, First Responder, Local Police & Fire Departments, and Commercial & Logistics 169
2.10 CBRNE Standoff Detection Systems 172
2.10.1 Bruker RAPIDplus Detect All Chemical Warfare Agents (CWA) and Important Toxic Industrial Chemicals (TICs) at Long Distances 174
2.10.2 QinetiQ North America TALON Detects Deadly IEDs Remotely And Saves Lives 175
2.10.3 Block MEMS LLC Standoff Devices 175
2.10.4 Spectrex Standoff SafEye Quasar 900 176
2.10.5 Chemring JSLSCAD Standoff Chemical Detection Device 176
2.11 Human Protective Materials 178
2.12 CBRNE Prices 178
2.12.1 Proengin AP4C Flame Spectrophotometer 178
2.12.2 Thermo Fisher Scientific - TruDefender FTi 2 179
2.12.3 GenPrime Prices 180
2.12.4 Illumina HiSeq 2000 Sequencing System $654,000 180
2.13 CBRNE Regional Segment Analysis 181
3. CBRNE Product Description 184
3.1 Bruker CBRNE Products 184
3.1.1 Bruker Chemical Detection Ion Mobility Spectrometry 184
3.1.2 Bruker RoadRunner Explosives and Narcotics Detector 186
3.1.3 Bruker TIMON 187
3.1.4 Bruker OrthoTIMON Chemical Gas Detection 189
3.1.5 Bruker Raid M100 Chemical Agent Detector 191
3.1.6 Bruker Raid P Chemical Detection System 192
3.1.7 Bruker Raid S2 Gas Trace Detector For Chemical Warfare Agents (CWAs) and Toxic Industrial Chemicals (TICs). 193
3.1.8 Bruker Raid XP Combines Chemical and Radiological Detection Into One System 194
3.1.9 Bruker Raid AFM to Detect Chemical Warfare Agents, Toxic Industrial Chemicals and Radioactive Contamination 195
3.1.10 Bruker ?RAID IMS Chemical Agent Detector 197
3.1.11 Bruker Mobile Gas Chromatography / Mass Spectrometry Gold Standard in Chemical Analysis 198
3.1.12 Bruker MM2 Chemical Detection And Identification 199
3.1.13 Bruker E?2;M Fast And Reliable On-Site Identification Of Chemicals 200
3.1.14 Bruker Biological Identification MALDI Biotyper 201
3.1.15 Bruker RAPIDplus Detect All Chemical Warfare Agents (CWA) and Important Toxic Industrial Chemicals (TICs) at Long Distances 202
3.1.16 Bruker SIGIS II 203
3.1.17 Bruker Portable Detector of Toxins Associated With Biological Warfare Agents (BWA) 204
3.1.18 Bruker Hand-Held Radiation Survey Meter 205
3.1.19 Bruker Radiation Backpack Sentry 207
3.1.20 Bruker Radiation Probe 208
3.1.21 Bruker DE-tector Drugs And Explosives Detection Instrument 209
3.2 FLIR Systems CBRNE Detection 210
3.2.1 FLIR Fido C1 Field Chemical Agent Detection Kit 210
3.2.2 FLIR Fido C2 213
3.2.3 FLIR Griffin 400 Series Gas Chromatograph / Mass Spectrometer (GC/MS) Chemical Hazard Detection 216
3.2.4 FLIR Fido® B2 Biological Detection 220
3.2.5 FLIR Fido® B2 224
3.2.6 FLIR Fido® B2 (IBAC) Early Warning of Bio-Aerosol Threats 225
3.2.7 FLIR Fido B2 Bio-Detector Capabilities 226
3.2.8 FLIR Radiation Detection 228
3.2.9 FLIR identiFINDER® R200 Spectroscopic Personal Radiation Detector 229
3.2.10 FLIR identiFINDER® R300 Radiation Detection Capabilities 233
3.2.11 FLIR R300 Uses Uniquely Constructed Cadmium Zinc Telluride (CZT) Detectors 234
3.2.12 FLIR identiFINDER® R400 236
3.2.13 FLIR identiFINDER® R500 239
3.2.14 Flir Benefits for Nuclear Medicine 241
3.2.15 FLIR Chemical, Drug, and Explosives Detection 242
3.2.16 FLIR Building Inspection 243
3.2.17 FLIR Gas Detection 244
3.2.18 FLIR Emerging Markets 244
3.2.19 FLIR Explosives and Narcotics Detection 245
3.2.20 FLIR Fido X2 Explosives Trace Detector 246
3.2.21 FLIR Fido X3 249
3.2.22 FLIR Griffin 844 Explosives and Narcotics Trace Detector 252
3.2.23 FLIR Explosives and Narcotics Trace Detector 253
3.3 Thermo Fisher Measuring Radiation 255
3.3.1 Thermo Fisher Radiation Contamination and Environmental Monitoring 257
3.3.2 Thermo Fisher Integrated Radiation Monitoring Solutions 258

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