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市場調查報告書

太陽能發電用鋰離子電容器:全球市場分析及預測(2011-2021年)

Lithium-Ion Capacitors in Solar Photovoltaic Power Generation Global Market Forecast & Analysis (2011-2021)

出版商 ElectroniCast
出版日期 2011年12月 商品編碼 226125
內容資訊 英文 226 Pages
價格
US $ 2800 PDF, MS Excel and PowerPoint files by E-mail (Single User License)


太陽能發電用鋰離子電容器:全球市場分析及預測(2011-2021年) 是由出版商ElectroniCast在2011年12月所出版的。 這份英文市場調查報告書包含226 Pages 價格從美金2800起跳。

簡介

2011年全球太陽能發電用鋰離子電容器之消費額估計僅有86萬2,000美金之規模。但其後預計將以87.5%之平均年成長率變化,2016年可達1,999萬美金規模之成長。而2016至2021年更將以每年63.4%之成長率,於2021年達2億3,288萬美金。

本報告為,調查分析太陽能發電用鋰離子電容器(LIC)市場趨勢及展望,並匯整LIC市場整體趨勢、LIC及太陽能發電技術概要、主要地區別市場趨勢、全球及主要地區消費額、出貨數及平均價格變化、預測(∼2021年)、最終用戶類別內容、(政府/商用、住宅/其他)、主要企業及相關企業簡介等,以下列摘要形式闡述。

第1章 實施概要

  • 概要:鋰離子電容器市場
  • 太陽能發電技術:概要

第2章 技術概要:LIC及關注材料

  • 尖端鋰離子電容器之新鋰摻雜方式
  • 專利資訊:離子電容器
  • 碳納奈米纖維
  • 鋰離子電容器 vs 其他儲藏技術
  • 水系統:混合電容器
  • 混合設備:鋰離子電容器、鋰離子電池
  • 奈米碳管
  • 電容器拓展技術
  • 鋰離子電容器之電動車
  • CNT、鈦酸鋰之高效鋰離子電容器
  • Northwestern University

第3章 太陽能發電用鋰離子電容器(LIC):2011-2021年

  • 概要:全球市場預測
  • 南北美市場
  • 歐洲、中東、非洲市場
  • 亞太地區市場

第4章 相關企業

第5章 市場調查方式

第6章 定義、縮寫等

第7章 ElectroniCast之市場預測數據庫:簡介/解說

  • 概要
  • 教程(Excel表)

目錄

Abstract

This ElectroniCast report provides a 2011-2021 market forecast and analysis of the worldwide consumption of lithium-ion capacitors (LICs) used in solar photovoltaic (PV) power generation applications.

A capacitor is an electrical device that stores or releases electricity through rapid electrostatic reactions. Compared with a battery that stores electricity through slow chemical reactions, a capacitor makes it possible to charge and discharge electricity almost instantaneously with a long cycle life.

Lithium-Ion Capacitors (LICs) have a higher power density as compared to batteries and LIC's are safer in use than Lithium-Ion Batteries (LIBs), since thermal runaway reactions may occur with the LIBs. Compared to an Electric Double-Layer Capacitor (EDLC), the lithium-ion capacitor has a higher output voltage. They both have similar power densities, but energy density of a lithium-ion capacitor is higher.

Lithium-ion capacitors contain no hazardous substances, such as heavy metals (Cadmium, Mercury or Lead) making them environmentally friendly electrical storage devices. They are also characterized by an ability to charge with even weak current, and as a result, demand is expected to increase substantially in environmentally friendly fields such as solar power generation. The use of lithium-ion capacitors as independent power supplies in combination with photovoltaic panels is considered for a wide range of devices such as streetlights, surveillance cameras, and security sensors.

Photovoltaics (PV) is a method of generating electrical power by converting solar radiation into direct current electricity using semiconductors that exhibit the photovoltaic effect. Photovoltaic power generation employs solar panels composed of a number of solar cells containing a photovoltaic material.

ElectroniCast Consultants, per requests from clients are following-up on the exciting and innovation aspects of the lithium-ion capacitors, present this report specifically addressing the potential use of lithium-ion capacitors in photovoltaic (PV) power generation applications.

The conclusions of this report are based on background research plus application of quantitative data processing and correlation. ElectroniCast analysts performed interviews with authoritative and representative individuals concerned with the power storage industry sector, plus natural energy power generating technologies (wind, solar and other), energy-efficient lighting (LEDs), industrial logistical machinery/ Automated Guided Vehicles (AGV) / industrial robot, electric vehicles, migration systems of voltage sags/swells, Uninterruptible Power Supply (UPS) devices, and many other concerns and related entities.

The future of the lithium-ion capacitor (LIC) market, despite exciting innovative devices driven by technological advances and ecological/energy-saving concerns, still face challenges in overcoming performance/price limitations and in attracting widespread consumption. The use of LICs in solar photovoltaic power generation applications is increasing, initiating from government-based initiative - then to commercial/business - and eventually to the consumer-level.

On-going extensive customer demand-side and supplier-side information interviews, combined with ElectroniCast background of information and opinions in the energy efficiency solution field were the basis for estimating data to be inserted into the analysis/forecast data base spreadsheets. Published information related to LIC and related component/applications and consumption, was reviewed, including:

  • Trade press
  • Press release information
  • Financial reports
  • Web site background information
  • Vendor production information
  • Other published information

The ElectroniCast market forecast (Excel spreadsheet) database structure used for this project is provided for insertion (and later manipulation) of quantities, prices (and thus value) for lithium-ion capacitors used in solar photovoltaic power generation applications for each year, in each end-user category subset of each geographical region. This technique permits analysis for reasonableness check at all levels. The final database/spreadsheet is the source for the various values incorporated in the tables and figures in this report and quoted in the (report) text.

Regional Market Segmentation This report provides the market data by the following regional segments and sub-regions:

  • Global (Total)
    • America
      • United States and Canada
      • Latin America
    • EMEA
      • Northern Europe
      • Southern Europe
      • Western Europe
      • Eastern Europe
      • Middle East and Africa
    • APAC
      • People's Republic of China (PRC)
      • Japan
      • Republic of Korea (ROK)
      • Rest of APAC

Consumption Value:

The consumption value of a Lithium-Ion capacitor (LIC) is determined by the final application (“end-use”) and ownership of that product. For example, a packaged LIC produced in Japan (APAC region) and then the LIC ends-up in a new car manufactured in Europe, and then the car is sold and consumed (consumption) in the USA, is shown in the ElectroniCast market forecast Excel database as a LIC consumed in America (not APAC and not Europe).

The estimate of 2011 plus the market forecast (2012-2021) is presented for Lithium-Ion capacitors for use with solar photovoltaic (PV) power generation.

The Lithium-Ion capacitor (LIC) market forecast data are segmented by the following functions:

  • Consumption Value (US$, million)
  • Quantity (number/Farad: Million)
  • Average Selling Prices (ASP $, each Farad)

Nominal Capacitance - Farad (F):

The farad (symbol: F) is the SI unit of capacitance (SI is the International System of Units). Capacitance is the ability of a capacitor to store energy in an electric field. Capacitance is also a measure of the amount of electric potential energy stored (or separated) for a given electric potential. A common form of energy storage device is a parallel-plate capacitor.

Market Forecast Application Categories The ElectroniCast market forecast of consumption is also presented for two major End-User categories:

  • Government/Commercial
  • Residential/Non-Specific

Market Forecast:

LICs used in Solar PV Power Generation ElectroniCast estimates that in 2011, the worldwide consumption value of lithium-ion capacitors used in solar photovoltaic power generation applications will reach (only) $0.862 million; consumption value is forecast to increase at an average annual growth rate of 87.5 percent to $19.99 million in 2016(1). From 2016-2021, the total consumption value is forecast an increase 63.4 percent per year, reaching $232.88 million in the year 2021.

Lithium-Ion Capacitors (LICs) used in Solar Photovoltaic Power Generation
Global Market Forecast (Value Basis, US$ Million)

(1) All values and prices in this report are at end-user levels, and are in current dollars, which include the effect of a forecasted 5 percent annual inflation rate over the forecast period.

Note: Market forecast data in this study report refers to consumption (use) for a particular calendar year; therefore, this data is not cumulative data. Market forecast data are provided in United States Dollars.

Report Statistics

  • Publication Date: December 13, 2011
  • Total Number of Pages: 226
  • Also Included: Excel worksheets and PowerPoint Slides

Table of Contents

1. Executive Summary

  • 1.1. Overview: Lithium-Ion Capacitor Market
    • Lithium-Ion Capacitors (LICs)
    • Photovoltaics (PV)
    • More Effective Utilization of Energy
    • Joint-venture company for LIC business
    • The Lithium-Ion Capacitor Market
    • ElectroniCast Market Forecast Database Structure
    • Regional Market Segmentation
    • Consumption Value
    • Nominal Capacitance - Farad (F)
    • Comparison to Other Technologies
    • Photovoltaic: Growing Demand for Renewable Energy Sources
    • Solar Cell Manufacturing Plant
    • Solar PV LED Lighting Using Lithium-Ion Capacitors
    • Light Emitting Diode Lighting
    • Street Lighting
    • Advantages of LEDs
    • Market Forecast: LICs used in Solar PV Power Generation
    • Quantity Market Forecast (Farad)
    • Selling Price Market Forecast (Farad)
    • Value Market Forecast by Region
    • Green-Tech Opportunity Costs
    • Types of End-Use Solar Photovoltaic Systems
    • Market Forecast Application Categories
    • R&D (Research and Development)
  • 1.2. Solar Photovoltaic Technology- Overview
    • Explanation: Photovoltaic
    • PV: Cells, Modules and Arrays
    • Solar Cells and Energy Payback
    • Crystalline Silicon
    • Types of Thin-film Semiconductors
    • Solar Cells Manufacturing - Competition Overview

2. Technology Overview: LIC and Relevant Concerns

  • A Novel Lithium-Doping Approach for an Advanced Lithium Ion Capacitor
  • Patent Information: Lithium Ion Capacitor
  • Carbon Nanofiber
  • Lithium-ion Capacitor versus Other Storage Technologies
  • Water System - Hybrid Capacitor
  • Hybrid Device: Lithium-ion Capacitor and Lithium-ion Battery
  • Nanogate Carbon
  • Capacitance Increasing Technology
  • Electric Car with a Lithium Ion Capacitor
  • High-performance Li-ion Capacitor Developed With CNT, Lithium Titanate
  • Northwestern University
  • Evolution of Research Emphasis During Technology Life Cycle

3. LIC in Solar Photovoltaic Power Generation (2011-2021)

  • 3.1. Overview: Global Market Forecast
    • Market Forecast Application Categories
    • Market Forecast Functions
    • Advantages of Using Solar Photovoltaic Streetlights
    • Sales/Distribution-Channel
    • Super-efficient Equipment and Appliance Deployment (SEAD) Initiative
    • International Energy Agency
    • Ubiquitous Product Environment
    • Worldwide Market Forecast (Value, $Million)
    • Nominal Capacitance - Farad (F)
    • Worldwide Market Forecast (Volume, Farad/Million)
    • Worldwide Market Forecast (ASP, $/Each Farad)
    • Value Market Forecast by Region
  • 3.2. America Market Forecast
    • Value Market Forecast: America
    • American Region, by User Group
    • Energy Policy of the United States
    • Five-Year Commercialization Support Plan
    • Next Generation Lighting Industry Alliance (NGLIA)
    • Development of the Economies in Latin America
    • Economic Recovery
    • Countries Face the Risk of Overheating
    • Foreign Direct Investment (FDI) in Latin America
    • Union de Naciones Suramericanas (UNASUR)
    • Comunidad Andina, CAN
    • South American Free Trade Area (SAFTA)
    • Mercado Comun del Sur (Mercosur)
    • Cooperation Agreement with Mercosur
    • The World Bank Group (WBG)/Others
    • Trade and Integration between Brazil and Colombia
    • Argentina Economic Overview
    • Bolivia Economic Overview
    • Brazil Economic Overview
    • Chile Economic Overview
    • Colombia Economic Overview
    • Costa Rica Economic Overview
    • Ecuador Economic Overview
    • El Salvador Economic Overview
    • Guatemala Economic Overview
    • Honduras Economic Overview
    • Mexico Economic Overview
    • Nicaragua Economic Overview
    • Panama Economic Overview
    • Paraguay Economic Overview
    • Peru Economic Overview
    • Uruguay Economic Overview
    • Venezuela Economic Overview
    • LED-Based Street Lamps Used With Solar Panel
    • Viaducto Bicentenario Superhighway (Mexico)
  • 3.3. EMEA Market Forecast
    • European Sub-Regions as identified by the United Nations Geo-scheme
    • European Market Forecast by Regional Geo-scheme
    • Value Market Forecast: EMEA
    • International Environmental Treaty
    • Energy Performance of Buildings
    • Economic Recovery Overview-Europe
    • Council of the European Union - Foreign Affairs/Trade
    • Competitiveness and Innovation Framework Program (CIP)
    • Economic Developments in Africa
  • 3.4. APAC Market Forecast
    • Value Market Forecast: APAC
    • Global Financial Crisis
    • Japan Economic Situation
    • People's Republic of China Economy
    • Republic of Korea's Economy
    • Kyoto Protocol
    • Residential Energy Services Network (RESNET)
    • Japan Energy Star Council
    • Energy efficiency buildings in Japan
    • Energy efficiency buildings in China
    • Energy efficiency buildings in Hong Kong
    • Energy efficiency buildings in Taiwan
    • Energy efficiency buildings in Korea
    • Energy efficiency buildings in Malaysia
    • Building energy efficiency policy in the Philippines
    • Energy efficiency building in Singapore
    • Energy efficiency buildings in Thailand
    • Energy efficiency buildings for India
    • Australia GDP
    • ANZCERTA
    • Australian Foreign Investment Review Board
    • Singapore-Australia Free Trade Agreement (SAFTA)
    • Thailand-Australia Free Trade Agreement (TAFTA)
    • Australia-United States Free Trade Agreement
    • Australia-Chile Free Trade Agreement (FTA)
    • Australia-China Free Trade Agreement Negotiations
    • Australia-GCC Free Trade Agreement Negotiations
    • Australia-Japan Free Trade Agreement Negotiations
    • Australia-Korea Free Trade Agreement (FTA) Negotiations
    • Australia-Malaysia Free Trade Agreement negotiations
    • Pacific Agreement on Closer Economic Relations (PACER)
    • Trans-Pacific Partnership Agreement (TPP) negotiations
    • Australia-India FTA Feasibility Study
    • Indonesia-Australia Comprehensive Economic Partnership Agreement (IA-CEPA)
    • Department of Innovation, Industry, Science and Research
    • Future Manufacturing Industry Innovation Council
    • Australia: Re-tooling for Climate Change Program
    • Energy Efficiency for Small business program - NSW only
    • Australia Commercial Building Disclosure scheme (CBD scheme)
    • NSW Green Business Program
    • AusIndustry Green Building Fund
    • Development of the Economy in India
    • ELCINA Electronic Industries Association of India
    • ELCOMA (India)
    • World Bank and International Finance Corporation (IFC)
    • Japan Bank for International Cooperation (JBIC)
    • Bureau of Energy Efficiency (BEE)
    • National Mission on Enhanced Energy Efficiency (India)
    • Renewable Energy & Energy Efficiency Partnership (REEEP)
    • Solar/Wind LED Street Lighting in Tangshan, Hebei province, China
    • Solar Street Light Project - Okinawa

4. Lithium-Ion Capacitor Competitors & Related Entities

  • The following Companies/Entities are discussed in this chapte
    • Advanced Capacitor Technologies, Inc.
      • JEOL Ltd.
      • Sojitz Corporation
      • Taiyo Yuden Co., Ltd.
    • Asahi Kasei FDK Energy Device Co., Ltd.
      • Asahi Kasei
      • FDK
    • Eamex Corporation
    • Fraunhofer-Gesellschaft
    • Fuji Electric Systems Co., Ltd.
    • Hitachi Chemical Co., Ltd.; Hitachi AIC Inc.
    • Ionova Technologies
    • Ioxus Incorporated
    • JM Energy Corporation / JSR Group
    • KAIDO MFG.CO.,LTD.
    • Mitsubishi Electric
    • NEC Energy Devices, Ltd.
      • NEC/Tokin
    • Nippon Chemi-Con Corporation
      • Tokyo University of Agriculture and Technology
      • K&W Company
    • Oki Printed Circuits Co Ltd
    • Panasonic
      • Sanyo Electric

5. Market Research Methodology

  • Information Base
  • Bottom-Up Methodology
  • Cross-Correlation Increases Accuracy
  • Nature of the Data
  • Inventory Change
  • R&D (Research and Development)

6. Definitions: Acronyms, Abbreviations, and General Terms

7. ElectroniCast Market Forecast Data Base - Introduction/Explanation of Excel Worksheets

  • 7.1. Overview
  • 7.2. Tutorial of the Excel Worksheets
    • Example

List of Tables

  • 1.1.1. LICs in Solar PV Power Generation Global Market Forecast, by Region ($ Million)
  • 1.1.2. LICs in Solar PV Power Generation Global Market Forecast, by End-User ($ Million)
  • 2.1. LICs Measurement Specifications
  • 3.1.1. LICs Used in PV Power Generation Global Forecast, by End-User Group ($ Million)
  • 3.1.2. LICs Used in PV Power Generation Global Forecast, by End-User Group (Million/Farads)
  • 3.1.3. LICs Used in PV Power Generation Global Forecast, by End-User Group (ASP per Farad)
  • 3.1.4. LICs Used in PV Power Generation Global Forecast, by Region ($ Million)
  • 3.1.5. LICs Used in PV Power Generation Global Forecast, by Region (Million/Farads)
  • 3.1.6. LICs Used in PV Power Generation Global Forecast, by Region (ASP per Farad)
  • 3.2.1. LICs Used in PV Power Generation American Forecast, by Sub-Region ($ Million)
  • 3.2.2. LICs Used in PV Power Generation American Forecast, by End-User Group ($ Million)
  • 3.2.3. LICs Used in PV Power Generation USA/Canada Forecast, by End-User Group ($ Million)
  • 3.2.4. LICs Used in PV Power Generation Latin American Forecast, by End-User Group ($ Million)
  • 3.2.5. Latin American Demographic Trends
  • 3.3.1. European Sub-Regions as identified by the United Nations Geo-scheme
  • 3.3.2. Population in Northern Europe, by Country
  • 3.3.3. Population in Southern Europe, by Country
  • 3.3.4. Population in Western Europe, by Country
  • 3.3.5. Population in Eastern Europe, by Country
  • 3.3.6. LICs Used in PV Power Generation EMEA Forecast, by Sub-Region ($ Million)
  • 3.3.7. LICs Used in PV Power Generation EMEA Forecast, by End-User Group ($ Million)
  • 3.3.8. LICs Used in PV Power Generation Northern Europe Forecast, by End-User Group ($ Million)
  • 3.3.9. LICs Used in PV Power Generation Southern Europe Forecast, by End-User Group ($ Million)
  • 3.3.10. LICs Used in PV Power Generation Western Europe Forecast, by End-User Group ($ Million)
  • 3.3.11. LICs Used in PV Power Generation Eastern Europe Forecast, by End-User Group ($ Million)
  • 3.3.12. LICs Used in PV Power Generation Middle East/Africa Forecast, by End-User Group ($ Million)
  • 3.4.1. LICs Used in PV Power Generation APAC Forecast, by Sub-Region ($ Million)
  • 3.4.2. LICs Used in PV Power Generation APAC Forecast, by End-User Group ($ Million)
  • 3.4.3. LICs in PV Power Generation People's Republic of China Forecast, End-User Group ($ Million)
  • 3.4.4. LICs Used in PV Power Generation Japan Forecast, by End-User Group ($ Million)
  • 3.4.5. LICs Used in PV Power Generation Republic of Korea Forecast, by End-User Group ($ Million)
  • 3.4.5. LICs Used in PV Power Generation Rest of APAC Forecast, by End-User Group ($ Million)
  • 3.4.5. List of ELCOMA Members

List of Figures

  • 1.1.1. Energy Density vs. Power Density for LIC with Different Technologies
  • 1.1.2. Solar Photovoltaic LED Lighting Using Lithium-Ion Capacitors
  • 1.1.3. LICs used in Solar PV Power Generation Global Market Forecast (Value Basis, $ Million)
  • 1.1.4. LICs used in Solar PV Power Generation Global Market Forecast (Quantity Basis, Million/Farad)
  • 1.1.5. LICs used in Solar PV Power Generation Global Market Forecast (ASP per Farad)
  • 1.1.6. LICs in Solar PV Power Gen. Global Forecast, by End-User Group, $ Million & Market Share (%)
  • 1.2.1. Photovoltaic Cell, Module and Array
  • 1.2.2. Cell Efficiencies
  • 2.1. Advanced Lithium Ion Capacitor
  • 2.2. Ultra-Centrifugal Processing Technology
  • 2.3. Electrochemical Difference: EDLC and Lithium Ion Capacitors
  • 2.4. High-performance LIC Developed With CNT, Lithium Titanate
  • 2.5. Electrode: Composite material and Aluminum Alloy Current Collector
  • 2.6. Evolution of Research Emphasis during Technology Life Cycle
  • 3.2.1. LED-Based Street Lamps Used With Solar Panel in Mexico
  • 3.4.1. Solar/Wind LED Street Lighting (China)
  • 3.4.2. Solar LED Street Lighting (Okinawa)
  • 4.1. Cylindrical Lithium-ion Capacitor
  • 4.2. Lithium-ion (Li-ion) capacitor module for HEVs
  • 4.3. Lithium-ion Capacitor
  • 4.4. Lithium-ion Capacitor
  • 4.5. Ultra Capacitors
  • 4.6. Laminate Cell
  • 4.7. Laminate Cell Module 4-2
  • 4.8. Prismatic Cell
  • 4.9. Prismatic Cell Module
  • 4.10. Electric Double-Layer Capacitor Prototype
  • 4.11. Structure of (3 x 3cm) Prototype
  • 4.12. Lithium-Ion Battery (Cell) for Electric Vehicles
  • 4.13. Nano-Hybrid Capacitors
  • 4.14. Embedded Li-ion Battery in Printed Board
  • 5.1. Market Research & Forecasting Methodology

Press Release

預計2021年太陽能發電用鋰離子電容將達到2億3,300萬美元規模

2011年12月28日

Global Information, Inc.已開始銷售ElectroniCast所發行的報告書「Lithium-Ion Capacitors in Solar Photovoltaic Power Generation Global Market Forecast & Analysis (2011-2021) (太陽能發電用鋰離子電容器:全球市場分析及預測(2011-2021年))」

ElectroniCast Consultants推算2011年全球太陽能發電用鋰離子電容的消費額僅為86萬2,000美元規模。

然預計之後以87.5%的年平均成長率推移,2016年時成長為1,999萬美元規模。

再則,預測從2016年到2021年年間將以63.4%的成長率推移,2021年時達到2億3,288萬美元。

電容是透過迅速的靜電反應來充放電力的電力裝置。

透過低化學反應與充電電力的電池做比較,發現電容可以連續很長的生命週期,幾乎在瞬間就完成充電或放電。

鋰離子電容(LIC)與電池做比較,因有很高的輸出密度,能比鋰離子電池(LIB)更安全使用。因為LIB有發生熱逸散反應的可能性。

與電雙層電容(EDLC)做比較,鋰離子電容有高輸出電壓。雙方都有相同的輸出密度,然鋰離子電容能源密度變高。

預測太陽能(PV)面板用LIC市場成長的主因之一,乃與街路/道路用發光二極管(LED)照明併用。

由於全球持續的經濟壓力,現在PV太陽能電池板有龐大的庫存量,然太陽能發電產業的前景可期。

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