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市場調查報告書

永續能源市場中的奈米科技利用及各產業領域中減少CO2排放量的行動

Nanotechnologies for Sustainable Energy: Reducing Carbon Emissions Through Clean Technologies and Renewable Energy Sources

出版商 Cientifica Ltd
出版日期 2007年05月 商品編碼 51878
內容資訊 英文  
價格
US $ 3990 PDF by E-mail (Single User License)


永續能源市場中的奈米科技利用及各產業領域中減少CO2排放量的行動 是由出版商Cientifica Ltd在2007年05月所出版的。 這份英文市場調查報告書價格從美金3990起跳。

簡介

專門於奈米科技領域顧問服務及資訊提供的英國市調公司 Cientifica Ltd (總公司:London),針對永續能源市場中奈米科技利用進行調查分析,並將各產業領域中為減少CO2排放量的行動整理後出版報告書 "Nanotechnologies for Sustainable Energy: Reducing Carbon Emissions Through Clean Technologies and Renewable Energy Sources" 。

本報告書內容包括:全球永續能源市場概要及奈米科技利用趨勢、各產業領域(運輸&汽車・可攜式電子產品・住宅&商業)為減少CO2排放量所利用的綠色科技及可再生能源的利用趨勢等。包含圖表共計185頁的內容綱要摘記如下:

實施概要

永續能源市場中的奈米科技:市場預測

  • 奈米科技市場環境
    • 節省能源
    • 可再生能源的貯藏
    • 能源轉換/製造
  • 應用別能源市場

介紹

  • 全球能源趨勢
  • 奈米科技利用的必要性
  • 能源市場
  • 能源市場中奈米科技的價值鏈・附加價値重點
  • 永續能源市場中帶動奈米科技利用的主要因素
  • 永續能源市場中奈米科技利用的障礙

永續能源市場中的奈米科技利用

  • 摘要
  • 介紹
  • 應用於改善化石燃料永續性及有效利用/節省能源的奈米科技
    • 輕量且有力的材料
    • 溫度管理
    • 固態照明
    • 大面積照明的效率化
    • 有效率地燃燒
  • 應用於能源轉換・能源生產的奈米科技
    • 太陽光發電
    • 氫轉換
    • 餘熱回收
    • 太陽熱能源
    • 地熱能源
    • 生質能
  • 應用於能源貯藏的奈米科技
    • 充電電池
    • 氫貯藏:燃料電池
    • 超級電容器

運輸・汽車市場中二氧化碳排放量之減少

  • 摘要
  • 目前的利用狀況
    • 利用奈米技術電池的油電混合車
    • 用於汽車零件高性能化的奈米複合材料
    • 發電塗料及衣服
  • 目前的利用業者
  • 未來發展預測
  • 主要供應企業

可攜式電子產品市場中二氧化碳排放量之減少

  • 摘要
  • 目前的利用狀況
    • 針對可攜式設備的鋰離子電池
    • 可快速充電的超級電容器
    • 效率化:改善陳列方式
    • 針對輕量・強化型設備的奈米複合材料
    • 高性能可再生能源發電
    • 電子衣服及動力系統
  • 目前的利用業者
  • 未來發展預測
  • 主要供應企業

住宅・商業市場中二氧化碳排放量之減少

  • 摘要
  • 目前的利用狀況
    • 具高度能源效率,而且環保的奈米建築材料
    • 針對智慧房屋的奈米感應器
    • 高度能源效率的光源
  • 目前的利用業者
  • 未來發展預測
  • 主要供應企業

調查結果

附錄I:奈米科技及能源應用的矩陣組合

附錄II:能源市場中具高度發展潛力的奈米材料應用

附錄III:能源市場中的奈米科技供應企業

圖表

目錄

Abstract

“Nanotechnologies for Sustainable Energy: Reducing Carbon Emissions Through Clean Technologies and Renewable Energy Sources” examines the impact of nanotechnology on the quest for sustainable energy.

Both the report and the accompanying free white paper “Nanotech:Cleantech - Quantifying The Effect Of Nanotechnologies on CO2 Emissions” use a new economic model based on primary research that quantifies the impact and diffusion of nanotechnologies over time, allowing more accurate quantification of market impacts than was previously possible.

Through a detailed analysis of technologies both currently available and under development the report concludes that

  • The major near-term benefit of nanotechnologies will be in reducing weight in the transportation sector with nanocomposite materials quickly diffusing across the automotive and aerospace industries
  • Over the next seven years, highest growth opportunities will come from the application of nanomaterials to making better use of existing resources rather than generating new forms of renewable energy
  • Highest growth rates will be in the development of renewable energy sources while the materials sector is already crowded
  • Current applications of nanotechnologies will result in a global annual saving of 8 thousand tons of carbon dioxide in 2007, rising to over a million tons by 2014

Table of Contents

  • EXECUTIVE SUMMARY
    • Cientifica Nanotechnology Model
      • Definitions of Nanotechnologies
      • Major Assumptions
    • Quantifying The Effect of Nanotechnologies on Global Emissions
    • The Impact Of Nanotechnologies on CO2 Emissions
      • Reduction of Transport Emissions
      • Reduction of Residential and Commercial Energy Use Through Improved Insulation
      • Thin Film Solar Cells for Renewable Energy
    • Nanotechnologies for Sustainable Energy
  • MARKET FORECAST FOR NANOTECHNOLOGY APPLICATIONS IN SUSTAINABLE ENERGY
    • The Nano-Energy Landscape
      • Energy Saving
      • Storage of Renewable Energy
      • Energy Conversion/Production
    • Overall Energy Markets By Application
  • INTRODUCTION
    • Objectives of the Report
    • World Energy Trends
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in the EU
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in the USA
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in China and India
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in Japan
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in Australia
      • Overview of the Interaction of Sustainable Energy with Nanotechnologies in the Rest of the World
    • Why Sustainable Energy Needs Nanotechnologies
      • Market Demand Push
      • Technology Improvement
      • Environmental Issue
    • The Energy Sector
      • Common Energy Source Classifications
        • Conventional Energy
        • Renewable Energy
        • Clean Energy
      • Renewable Energy Conversion
        • Solar Photovoltaics
        • Solar Thermal Energy
        • Hydrogen Conversion
        • Thermoelectricity
        • Bioenergetics
      • Energy Storage Technologies
        • Batteries
        • Fuel Cells
        • Capacitors
        • Supercapacitors
    • Value Chain And Value-Added Points Of Nanotechnology In The Energy Sector
      • Energy Sector Value Chain
      • Value-Added Points of Nanotechnology in the Energy Value Chain
    • Key Drivers of Nanotechnology Applications in Sustainable Energy
    • Challenge of Nanotechnology Applications in Sustainable Energy
      • Emission Issues
        • Carbon Dioxide (CO2) Emissions
        • Carbon Management
        • Nanotechnology Methods
      • Cost Issues
      • Safety Issues
      • Commercialization Issues
      • Infrastructural Issues
      • Intellectual Property Issues
  • NANOTECHNOLOGY APPLICATIONS FOR SUSTAINABLE ENERGY
    • Summary Of Nanotechnology Applications For Sustainable Energy
    • Introduction
    • Nanotechnologies For Sustainability And Efficiency Of Fossil Fuels/Energy Saving
      • Lighter and Stronger Materials
      • Thermal Management
      • Solid-State Lighting - More Efficient Lighting Point Sources
      • More Efficient Lighting For Large Areas
      • Efficient Combustion
    • Nanotechnologies for Energy Conversion / Production
      • Solar Photovoltaics (PV) - Solar Cells
      • Hydrogen Conversion
      • Waste Heat Recovery/Thermoelectricity
      • Solar Thermal Energy
      • Geothermal Energy
      • Biomass
    • Nanotechnologies for Storage of Renewable Energy
      • Rechargeable Batteries
      • Hydrogen Storage - Fuel Cells
      • Supercapacitors
  • REDUCING CO2 EMISSIONS IN THE TRANSPORTATION AND AUTOMOTIVE SECTOR
    • Summary of the Reduction of CO2 Emissions In the Transportation and Automotive Sector
    • Current Applications of Nanotechnology for Reducing CO2 Emissions in the Transportation and Automotive Sector
      • Hybrid Electric Cars Powered by Nano-Engineered Batteries
      • Nanocomposite Materials for Higher Performance Vehicle Parts
      • Paint and Clothing that can Generate Electricity
    • Current Adopters of Nanotechnology in Transportation and Automotive Sector
      • Products and Markets
      • Costs and Benefits
    • Future Projection of Nanotechnology in Energy for Transportation and Automotive Sector
      • Drivers and Barriers
      • Market Forecast
      • Roadmap
    • The Major Providers of Nanotechnology in Energy for Transportation and Automotive Sector
  • REDUCING CO2 EMISSIONS IN THE PORTABLE ELECTRONICS SECTOR
    • Summary of Reduction of CO2 Emissions in the Portable Electronics Sector
    • Current Applications of Nanotechnology for Reducing CO2 Emissions in the Portable Electronics Sector
      • Better Li-Ion Batteries for Portable Devices
      • Supercapacitor for Fast Recharging Portable Devices
      • Efficiency -Improved Displays
      • Nanocomposite Materials for Lighter and Stronger Devices
      • High Performance Renewable Power Generation
      • Electronic Clothing and Powering Systems
    • Current Adopters of Nanotechnology in Portable Electronics Sector
      • Products and Markets
      • Costs and Benefits
    • Future Projection of Nanotechnology in Energy for Portable Electronics Sector
      • Drivers and Barriers
      • Market Forecast
      • Roadmap
    • The Major Providers of Nanotechnology in Energy for Portable Electronics Sector
  • REDUCING CO2 EMISSIONS IN RESIDENTIAL AND COMMERCIAL USE
    • Summary of Reduction of CO2 Emissions in Residential and Commercial Use
    • Current Applications of Nanotechnology For Reducing CO2 Emissions in Residential and Commercial Use
      • Nanomaterials for Power-Efficient and Environmentally-Friendly Buildings
      • Nanosensors for Smart Houses
      • Energy-Efficient Lightening Sources
    • Current Adopters of Nanotechnology in Energy for Residential and Commercial Use
      • Products and Markets
      • Costs and Benefits
    • Future Projection of Nanotechnology in Energy for Residential and Commercial Use
      • Drivers and Barriers
      • Market Forecast
      • Roadmap
    • The Major Providers of Nanotechnology in Energy for Residential and Commercial Use
  • FINDINGS
  • APPENDIX I: NANOTECHNOLOGY AND ENERGY APPLICATIONS MATRIX
    • Sustainable Energy for Transportation and Automotive Sector
    • Sustainable Energy for Portable Electronics Sector
    • Sustainable Energy for Residential and Commercial Use
  • APPENDIX II: PROMISING NANOMATERIALS APPLICATIONS IN SUSTAINABLE ENERGY
  • APPENDIX III: NANOTECHNOLOGY PROVIDERS FOR SUSTAINABLE ENERGY
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