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市場調查報告書

以銦為基礎材料的太陽能發電市場

Markets for Indium-Based Materials in Photovoltaics

出版商 NanoMarkets
出版日期 2011年08月 商品編碼 209311
內容資訊 英文 78 Pages
價格
US $ 1795 PDF by E-mail (Single User License)
US $ 2495 PDF By E-mail - Advanced User License (5 users)
US $ 2995 PDF By E-mail - Group Version (10 users)
US $ 3495 PDF By E-mail - Enterprise Version (Company Wide)


以銦為基礎材料的太陽能發電市場 是由出版商NanoMarkets在2011年08月所出版的。 這份英文市場調查報告書包含78 Pages 價格從美金1795起跳。

簡介

不確實的經濟,新的PV(太陽能發電)技術的出現,加深銦的使用及消費的定量預測作業的困難度。特別是ITO(銦錫氧化物),除了PV以外還有其他多種用途,該市場的成長促進主因在PV領域以外也同樣重要。另一方面,PV電池導向的CIGS(銅銦鎵硒),預計將占據大部分的銦市場,也將對需求產生很大的影響。

本報告提供以銦為基礎材料的太陽能發電市場相關調查分析,以銦為基礎材料市場的利用現況及概要彙整,薄膜矽PV,CdTe(鎘碲)PV,CIGS PV,OPV(有機PV)及DSC(染料敏化太陽能電池)中ITO(銦錫氧化物)的市場及機會分析,以及彙整PV中銦的消費量的8年預測等資料,為您概述為以下內容。

摘要整理

  • PV(太陽能發電)產業過去2年使用銦的趨勢
    • PV製造的銦的利用
  • 銦產業的機會
  • 銦相關PV產業的材料企業的機會
    • 濺射靶材
    • ITO(Indium Tin Oxide: 銦錫氧化物)薄膜
    • 油墨
    • 電鍍材料
    • 磷化銦
  • 太陽能光電板企業的機會
  • 8年預測的摘要

第1章 簡介

  • 報告的背景
    • 作為銦的利用推動因素的CIGS(InP 與PV)
    • ITO,銦及PV:市場發展的歷史
  • 報告的目的和範圍
  • 報告的調查手法
  • 報告內容架構

第2章 以銦為基礎材料的PV市場

  • 銦:產業現狀
    • 中國銦政策的影響
    • 銦新的供給來源
  • PV產業中的ITO和其替代物
    • ITO價格對銦價格的影響
    • ITO材料的種類: 濺射靶材,薄膜,及油墨
  • CIGS(銅銦鎵硒) PV中銦的使用
    • CIGS中銦的相關材料
    • CIGS中銦相關材料的供應商
  • 新一代PV中銦的使用:磷化銦
  • 銦的製造及使用的安全,健康,及環境問題
  • 本章的重點

第3章 以銦為基礎材料的PV市場的市場機會

  • 專門用語
    • 電極和反射體
    • 「CIGS(銅銦鎵硒)」和「CIS(銅銦硒)」
  • PV市場中ITO的未來機會
    • 薄膜矽PV中的ITO
    • CdTe(鎘碲)PV中的ITO
    • CIGS PV中的ITO
    • OPV(有機PV)及DSC(染料敏化太陽能電池)中的ITO
    • ITO和結晶矽PV
  • 銦相關材料中的吸收材料市場
    • CIGS市場
    • 製造因素為CIGS的材料使用帶來的影響
  • 本章的重點

第4章太陽能發電(PV)的銦的8年預測

  • 預測手法
    • 資料來源
    • 經濟條件
    • 預測範圍
    • CIGS及銦的替代方案
    • 有關價格設定的註解
  • PV的銦的消費量量預測:PV不同技術
    • 銦的消費量:結晶矽PV
    • 銦的消費量:薄膜矽PV
    • 銦的消費量:鎘碲PV
    • 銦的消費量:CIGS PV
    • 銦的消費量:OPV/DSC
    • 銦的消費量:其他PV
  • PV的銦的消費量預測:不同的銦材料
  • PV的銦的消費量預測(不同的銦材料)的摘要

報告的縮寫及簡稱

關於作者

圖表

目錄

Abstract

Description

This report is part of NanoMarkets' ongoing analysis of both the PV materials space and the indium industry. In particular we discuss what the evolution of new transparent conductors and the continued growth of the PV market will mean in terms of new opportunities for the indium industry.

This opportunity analysis is carried out in the context of the big changes that the indium industry is going through at the present time with the recent developments in Chinese indium policy. We also examine how new manufacturing technologies - especially solution processing -- will impact the kinds of indium-based materials that will be required by the PV industry. In addition, we examine the strategies that various firms in the PV supply chain are adopting with regard to indium-based materials.

Another goal of this report is to provide detailed forecasts of the markets for the various indium-containing materials considered in this report, as they apply to the photovoltaics industry. With an uncertain economy and the emergence of new PV technologies, quantitatively predicting indium use and consumption is an intricate task. ITO especially has so many applications outside of PV that the major market forces working on it are likely to be outside the PV arena as well. CIGS for PV cells, on the other hand, is expected to make up a significant portion of the indium market and have a large impact on its demand. This report is international in scope. Forecasts of indium consumption by PV technology including; crystalline silicon, thin-film silicon, CdTe, CIGS , OPV and DSC and other PV markets for indium-based materials. Forecasts of indium consumption in PV by material type are also included. Alternative scenarios and confidence intervals are also considered.

Table of Contents

Executive Summary

  • E.1 Trends in Indium Use by the PV Industry in the Past Two Years
    • E.1.1 Indium Use in PV Manufacturing
  • E.2 Opportunities for the Indium Industry
  • E.3 Opportunities for Materials Firms from Indium-Related PV Industry
    • E.3.1 Sputtering Targets
    • E.3.2 ITO Film
    • E.3.3 Inks
    • E.3.4 Materials for Electrodeposition
    • E.3.5 Indium Phosphide
  • E.4 Opportunities for Solar Panel Firms
  • E.5 Summary of Eight-Year Forecasts

Chapter One: Introduction

  • 1.1 Background to this Report
    • 1.1.1 CIGS (and InP PV) as a Driver for Indium Usage
    • 1.1.2 ITO, Indium and PV: A Story of Market Evolution
  • 1.2 Objectives and Scope of this Report
  • 1.3 Methodology of this Report
  • 1.4 Plan of this Report

Chapter Two: Indium-Based Materials for PV Markets

  • 2.1 Indium: the State of an Industry
    • 2.1.1 Impact of Chinese Indium Policy
    • 2.1.2 New Sources of Indium
  • 2.2 ITO and its Replacements in PV
    • 2.2.1 Impact of Indium Pricing on ITO Pricing
    • 2.2.2 Types of ITO Materials: Sputtering Targets, Films and Inks
  • 2.3 Usage of Indium by CIGS PV
    • 2.3.1 Indium-Related Materials for CIGS
    • 2.3.2 Suppliers of Indium-Related Materials for CIGS
  • 2.4 Indium Use in Next-Generation PV: Indium Phosphide
  • 2.5 Safety, Health, and Environmental Concerns with Indium Production and Use
  • 2.6 Key Points From this Chapter

Chapter Three: Markets and Opportunities for Indium-Based Materials in Photovoltaics

  • 3.1 A Few Words of Terminology
    • 3.1.1 Electrodes and Reflectors
    • 3.1.2 "CIGS" and "CIS"
  • 3.2 Future Opportunities for ITO in the PV Market
    • 3.2.1 ITO in Thin-Film Silicon PV
    • 3.2.2 ITO in CdTe PV
    • 3.2.3 ITO in CIGS PV
    • 3.2.4 ITO in OPV and DSC
    • 3.2.5 ITO and Crystalline Silicon PV
  • 3.2 Absorber Material Markets for Indium-Related Materials
    • 3.2.1 CIGS Markets
    • 3.2.2 Manufacturing Factors Impacting Materials Use in CIGS
  • 3.3 Key Points from this Chapter

Chapter Four: Eight-Year Forecasts of Indium in Photovoltaics

  • 4.1 Forecasting Methodology
    • 4.1.1 Data Sources
    • 4.1.2 Economic Assumptions
    • 4.1.3 Scope of Forecast
    • 4.1.4 Alternative Scenarios for CIGS and Indium
    • 4.1.5 Some Notes on Pricing
  • 4.2 Forecasts of Indium Consumption in PV by PV Technology
    • 4.2.1 Indium Consumption by Crystalline Silicon PV
    • 4.2.2 Indium Consumption by Thin-Film Silicon PV
    • 4.2.3 Indium Consumption by Cadmium Telluride PV
    • 4.2.4 Indium Consumption by CIGS PV
    • 4.2.5 Indium Consumption by OPV/DSC
    • 4.2.6 Indium Consumption by Other PV
  • 4.3 Forecasts of Indium Consumption in PV by Indium Material Type
  • 4.4 Summary of Forecasts of Indium Consumption in PV by Indium Material Type

Acronyms and abbreviations used in this report

About the author

List of Exhibits

  • Exhibit E-1 Value of Indium Consumed for the PV Industry by PV Technology ($ Millions)
  • Exhibit E-2 Value of Indium Consumed for the PV Industry by PV Technology ($ Millions)
  • Exhibit 2-1 Refinery Production
  • Exhibit 2-2 Indium Price and Production Trends (Values in Metric Tons Unless Noted)
  • Exhibit 2-3 Selected Major Indium Firms in China
  • Exhibit 3-1 Printed CIGS Firms
  • Exhibit 3-2 Electrodeposited CIGS Firms
  • Exhibit 4-1 Alternative Scenarios for the Growth of CIGS vs. Other TFPV
  • Exhibit 4-2 Eight-Year Forecasts of PV Production
  • Exhibit 4-3 Indium Use in c-Si PV Cells
  • Exhibit 4-4 Indium Use in TF Si PV Cells
  • Exhibit 4-5 Indium Use in CdTe PV Cells
  • Exhibit 4-6 Indium Use in CIGS PV Cells
  • Exhibit 4-7 Indium Use in OPV/DSC Cells
  • Exhibit 4-8 Indium Use in Other PV Cells
  • Exhibit 4-9 Indium Consumption in PV by Indium Material Type (Metric Tons Indium)
  • Exhibit 4-10 Value of Indium Consumed by PV by Indium Material Type ($ Millions)
  • Exhibit 4-11 Indium Consumption by PV Technology

Press Release

NanoMarkets發表新報告,表示CIGS PV的成長成為太陽能發電產業上銦使用的主要原動力

2011年09月20日

日商環球訊息(股)有限公司開始銷售由NanoMarkets所發行的調查報告「Markets for Indium-Based Materials in Photovoltaics (以銦為基礎材料的太陽能發電市場)」。

根據NanoMarkets的預測,太陽能發電產業在追求太陽能發電技術上,將會需要使用許多的磷化銦(InP)。但是,現階段InP的PV價格還是偏高,並沒使用在實驗室以外的地方,僅使用於航太產業的有限應用上。不過,NanoMarkets認為在InP的每單位電池面積的銦消費量高此點上應多加留意。

本報告說明廣泛使用於PV上的數個材料,並也提及在PV產業的數個領域上,做為透明導電體使用的銦錫氧化物(ITO)。此外,並記載做為將銦嵌入光吸收層重要部分的最初事例•CIGS的詳細內容。報告也將磷化銦(InP)將來在太陽能發電上所扮演的角色做為調查對象。並鎖定對銦的業界來說,在PV之中哪裡有機會,並且在哪些地方,銦型材料將可取代非銦型的材料。

銦在太陽能發電產業上使用擴大的主要原動力,為CIGS太陽能電池的成長,並被認為將快速滲透入傳統的太陽能發電面板、BIPV和可攜式PV。雖然有許多可取代ITO的替代品,PV企業仍將持續活用ITO;ITO將被廣泛使用於a - Si、DSC和OPV PV。

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