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市場調查報告書

產業、科學部門的放射線檢測市場:2015-2022年

Radiation Detection In Industrial and Scientific Markets: 2015-2022

出版商 n-tech Research, a NanoMarkets company 商品編碼 324145
出版日期 內容資訊 英文 70 Pages
商品交期: 最快1-2個工作天內
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產業、科學部門的放射線檢測市場:2015-2022年 Radiation Detection In Industrial and Scientific Markets: 2015-2022
出版日期: 2015年02月04日 內容資訊: 英文 70 Pages
簡介

放射線檢測,在醫療現場和軍事,國內安全等用途之外,在許多產業用途中達成大幅成長。儘管近幾年終端用戶市場變化和技術的進步,核能依然確實看作終端用戶市場,不過其他,石油與天然氣、礦業、醫藥品、科學研究所等也作為主要產業,金屬廢料的回收和食品安全等,有特殊的必要條件的市場新抬頭。

本報告提供產業、科學部門的放射線檢測的市場相關調查、放射線檢測設備的各種終端用途市場、各市場上使用的檢測器的類型及必要條件、關注企業與其產品及策略、終端用途市場的市場規模的變化與預測、新興終端用途市場分析等彙整資料。

第1章 簡介

第2章 醫藥品產業上的放射線檢測

  • 醫藥品部門的放射線檢測器的用途
  • 放射線檢測與藥物研發
    • 在藥物研發部門推遲放射線檢測器利用的要因
  • 放射性醫藥品和放射線檢測器
  • 醫藥品部門所使用的放射線檢測器的類型
  • 企業、產品
  • 本章的要點

第3章 核能放射線與檢測設備

  • 趨勢和變化
  • 核子反應爐網站的永久型檢測器
  • 核子反應爐週邊的放射線檢測
  • 核能產業所使用的放射線檢測器的類型
  • 市場與需求變化
    • 流動性的部門
    • 對於核能的地區政策的變化
    • 新的核子反應爐技術:有很長的路要走
    • 要點:對核能的放射線檢測的考察
  • 關注企業的策略、產品
    • 富士電機
    • Mirion Technologies
    • General Atomics
    • Saphymo
    • Canberra Industries
    • Polimaster
    • Fluke Biomedical
  • 本章的要點

第4章 科學研究所的放射線檢測

  • 實驗室用放射線檢測器的演進趨勢
  • 實驗室使用的放射線檢測器
  • 實驗室用自訂檢測機
  • 放射線檢測和高能源物理學、天體物理學
    • 高能源物理學用放射線檢測技術
    • 天體物理學用放射線檢測技術
    • 高能源物理學、天體物理學和放射線檢測的課題
  • 醫療研究所:重要的利基
  • 關注企業的策略、產品
    • Mirion Technologies
    • Oak Ridge Detector Laboratory (ORDELA)
    • Ortec (Ametek)
    • S.E. International
    • Canberra Industries
    • SMART Labs
  • 本章的要點

第5章 產業、科學用途的放射線檢測設備的8年預測:摘要

  • 一般產業的放射線檢測設備的8年預測
  • 石油、天然氣
  • 食品照射
  • 金屬廢料產業
  • 工業用X光設備
  • 核能
  • 8年預測:科學研究所使用的放射線檢測設備
  • 放射線檢測設備市場預測:各區各國

第6章 其他產業用途的放射線檢測設備

  • 石油、礦業
    • 資源開發的X光掃描攝影
    • 廢棄物管理
    • 石油製造
  • 金屬廢料再生
  • 食品照射
    • 所使用的放射線檢測
    • 食品產業上放射線檢測器的用途
  • 本章的要點

圖表

目錄
Product Code: Nano-811

Aside from extensive use in healthcare, and military/domestic security contexts, radiation detection is seeing significant growth in a number of industrial applications. Nuclear power is an obvious end market, despite recent end-market shifts and technology advancements. Other key industries here include oil/gas and mining, pharmaceuticals, and scientific research labs, as well as some emerging sectors with unique customized requirements such as scrap metal recycling and food safety.

Grouped together under one roof, these industrial sectors represent some of the best growth opportunities for radiation detection equipment. There are clear opportunities in environmental monitoring, both for equipment (e.g. gas lines) and personnel. Novel applications (food irradiation) are emerging alongside broader trends of continued globalization and further industrialization of developing regions. Management of radioactive waste from a number of industrial processes will continue to be an area of concern and focus.

In this report, we explore the revenue potential for radiation detection various industrial and scientific contexts, both for personal radiation detection and fixed-location installations, and including the major products and suppliers of radiation detection equipment in these markets. This report includes granular eight-year forecasts (volume and value) broken out by device types and world region.

NanoMarkets believes that business development executives and product management professionals, investors, entrepreneurs involved with radiation detection equipment -- especially those operating within industrial, energy, and scientific fields, or who supply to those industries -- will benefit from the comprehensive analysis of radiation detection trends and technologies within this report.

Table of Contents

Chapter One: Introduction

  • 1.1 Background to the Report
    • 1.1.1 Changes in the Industrial Radiation Detection Equipment Market: Neutrons, Nano and Nuclear
    • 1.1.2 New Technology, Materials and Design Trends for Radiation
    • 1.1.3 Opportunities for Electronics and Software
  • 1.2 Objective and Scope of this Report
  • 1.3 Methodology of this Report
  • 1.4 Plan of this Report

Chapter Two: Radiation Detection in the Pharmaceutical Industry

  • 2.1 Application Spectrum for Radiation Detectors in Pharma
  • 2.2 Radiation Detection and Drug Discovery
    • 2.2.1 Factors Retarding the Uses of Radiation Detectors in Drug Discovery
  • 2.3 Radiopharmaceuticals and Radiation Detectors
  • 2.4 Types of Radiation Detectors Used in Pharma
  • 2.5 Companies and Products
    • 2.5.1 Custom Radio-Synthesis Companies
  • 2.6 Key Points from this Chapter

Chapter Three: Radiation Detection Equipment in Nuclear Energy

  • 3.1 What's Trending, and What's Changing
  • 3.2 Permanent Detectors at Nuclear Reactor Sites
  • 3.3 Radiation Detection in Vicinity of Nuclear Sites
  • 3.4 Types of Radiation Detectors Used in the Nuclear Power Industry
  • 3.5 Changing Market and Needs
    • 3.5.1 A Sector in Flux
    • 3.5.2 Shifting Regional Policies for Nuclear Power
    • 3.5.3 New Reactor Technologies: Still Far to Go
    • 3.5.4 Bottom Line: Our Thoughts on Radiation Detection for Nuclear Power
  • 3.6 Companies to Watch, Strategies and Products
    • 3.6.1 Fuji Electric
    • 3.6.2 Mirion Technologies
    • 3.6.3 General Atomics
    • 3.6.4 Saphymo
    • 3.6.5 Canberra Industries
    • 3.6.6 Polimaster
    • 3.6.7 Fluke Biomedical
  • 3.7 Key Points from this Chapter

Chapter Four: Radiation Detection in Scientific Laboratories

  • 4.1 Trends in Advancing Radiation Detectors in Labs
  • 4.2 Types of Radiation Detectors Used in Laboratories
  • 4.3 Customized Detection Equipment for Laboratories
  • 4.4 Radiation Detection and High-Energy Physics and Astrophysics
    • 4.4.1 Radiation Detection Technologies for High-Energy Physics
    • 4.4.2 Radiation Detection Technologies for Astrophysics
    • 4.4.3 Challenges for High-Energy, Astrophysics and Radiation Detection
  • 4.5 Medical Labs: An Important Niche
  • 4.6 Companies to Watch, Strategies and Products
    • 4.6.1 Mirion Technologies
    • 4.6.2 Oak Ridge Detector Laboratory (ORDELA)
    • 4.6.3 Ortec (Ametek)
    • 4.6.4 S.E. International
    • 4.6.5 Canberra Industries
    • 4.6.6 SMART Labs
  • 4.7 Key Points from this Chapter

Chapter Five: Summary of Eight-Year Market Forecasts for Radiation Detection Equipment in Industrial and Scientific Applications

  • 5.1 Eight-Year Forecasts of Radiation Detection Equipment Used in General Industrial Applications
  • 5.2 Oil and Gas
  • 5.3 Food Irradiation
  • 5.4 Scrap Metal Industry
  • 5.5 Industrial Radiography
  • 5.6 Nuclear Power
  • 5.7 Eight-Year Forecasts of Radiation Detection Equipment Used in Scientific Laboratories
  • 5.8 Forecast of Radiation Detection Equipment Markets by Region/Country

Chapter Six: Radiation Detection Equipment in Other Industrial Applications

  • 6.1 Oil and Mining Industry
    • 6.1.1 Radiography in Resource Exploration
    • 6.1.2 Waste Management
    • 6.1.3 Oil Production
  • 6.2 Scrap Metal Recycling
  • 6.3 Food Irradiation
    • 6.3.1 Radiation Detection Used
    • 6.3.2 Applications for Radiation Detectors in the Food Industry
  • 6.4 Key Points from this Chapter
  • Acronyms and Abbreviations Used In this Report
  • About the Author

List of Exhibits

  • Exhibit 1-1: Classification of Selected Radiation Detection Systems by Functionality and Markets
  • Exhibit 1-2: Important Materials for Scintillating Detectors.
  • Exhibit 2-1: Important Radioisotopes and their Clinical Uses.
  • Exhibit 2-2: Different Types of Detectors Used in the Pharmaceutical Industry.
  • Exhibit 3-1: Types of Detectors Used in Nuclear Energy Sites.
  • Exhibit 4-1: Types of Detectors used in Laboratories.
  • Exhibit 5-1: The Market for Radiation Detectors for Oil and Mineral Exploration.
  • Exhibit 5-2: The Market for Radiation Detectors for Food Irradiation Safety.
  • Exhibit 5-3: The Market for Radiation Detectors for Scrap Metal Recycling.
  • Exhibit 5-4: The Market for Radiation Detectors for Industrial Radiography.
  • Exhibit 5-5: The Market for Radiation Detectors for Nuclear Power
  • Exhibit 5-6: The Market for Radiation Detectors for Big Physics Laboratories.
  • Exhibit 5-7: The Market for Radiation Detectors for Medical and Academic Laboratories.
  • Exhibit 5-8: The Total Market for Radiation Detectors for Industrial and Scientific Applications ($ Millions)
  • Exhibit 5-9: Market Share of Radiation Detectors by Region (Percent)
  • Exhibit 5-10: The Market Size of Detectors by Region ($Millions)
  • Exhibit 5-11: Total Radiation Detector Market by Region ($ Millions)
  • Exhibit 6-1: Radiation Detection: Important Companies and Products in Oil, Gas and Mining Industry
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