市場調查報告書 - 230650

PV(太陽能發電)產業的智慧塗層市場:2012年

Smart Coatings in Photovoltaics 2012

出版商 NanoMarkets
出版日期 2012年02月28日 內容資訊 英文 67 Pages
價格
PV(太陽能發電)產業的智慧塗層市場:2012年 Smart Coatings in Photovoltaics 2012
出版日期: 2012年02月28日 內容資訊: 英文 67 Pages
簡介

有著調查PV(太陽能發電)材料市場將近7年的經驗,NanoMarkets認為智慧塗層對PV部門的銷售機會正在擴大當中。存在著政府削減資金援助的風險、PV成本降低的壓力增加如此的市場環境中,各PV廠商試圖找出急速朝向日用品化的市場的差異化策略。其方法之1,為透過在PV面板上追加自我清潔、或是自我修復塗層,以提昇性能,並降低使用成本。另一方面,也有將BIPV(一體型太陽能發電)與電變色的高機能窗戶一體化,強化最終使用者的PV價值命題等追加PV面板新功能的方法。

本報告,提出PV(太陽能發電)產業的智慧塗層市場,分析PV應用上的自我清潔、自我修復、電變色以及感熱塗層的可能性,彙整該領域哪個部分創造收益、哪間企業獲得成功、哪間企業不幸失敗等相關展望,同時提示PV領域的智慧塗層詳細8年預測等,由下列摘要形式闡述。

報告摘要

  • 前次報告以來PV(太陽能發電)產業上智慧塗層的「新」機會
  • 利用智慧塗層的PV性能大化
  • PV用智慧塗層追加功能的更長期可能性
  • 對PV的智慧塗層來說,軟性PV以及BIPV玻璃具意義的理由
  • PV應用上的智慧塗層8年預測摘要

第1章 PV(太陽能發電)應用上的智慧塗層簡介

  • 本報告的簡介
    • PV市場的變化可能對智慧塗層的導入產生影響
    • 智慧塗層將如何改善PV的價值命題
    • 智慧塗層實現更優良的面板性能
    • 智慧塗層與追加功能
  • 本報告的目標與調查範圍
  • 本報告的調查手法
  • 本報告的構成

第2章 強化PV性能的智慧塗層市場

  • 自我清潔塗層於PV的機會
    • 自我清潔PV的價值
    • 自我清潔塗層的技術
    • PV面板自我清潔技術供應商
  • 自我修復塗層於PV的機會
    • 自我修復於PV的價值命題
    • 自我修復塗層的技術
    • PV面板自我修復技術供應商
  • 智慧塗層適合哪種的PV生產
    • 內部 vs 外部智慧塗層
    • PV類型別的機會
  • 本章重點

第3章 追加功能於PV的智慧塗層的市場機會

  • PV上追加電變色
    • BIPV應用的明暗調節可能性:多功能窗戶(能源、光線以及遮光)
    • 獨立蓄電系統以及攜帶型PV的可變色
    • PV應用的電變色以提昇安全性
    • 可切換以及可調節明暗的技術
    • 朝向PV的電變色實用化的挑戰
  • 感熱裝置於PV的機會
    • 感熱提昇PV面板安全性以及保護投資
  • 追加功能於PV上的長期潛力
    • 新興智慧塗層技術
    • 顯示器以及照明上的PV追加
  • 本章重點

第4章 PV用智慧塗層的8年預測

  • 預測手法
    • 手法
    • 預測範圍
    • 情報來源
    • 替代情境
    • 與過去NanoMarkets預測的差異
  • PV用自我修復以及自我清潔智慧塗層的預測
    • 自我清潔智慧塗層
    • 自我修復智慧塗層
  • PV用電變色以及感熱智慧塗層的預測
    • 電變色以及可切換的智慧塗層
    • 感熱智慧塗層
  • 預測摘要

本報告所使用的首字母縮略語以及省略語

關於作者

圖表

目錄

Abstract

SUMMARY

This report is part of NanoMarkets' ongoing coverage of materials and markets in photovoltaics (PV). In this report, NanoMarkets examines the emerging opportunities for selling "smart" coatings into the solar panel industry. In this report we examine the potential for self-cleaning, self-healing, electrochromic and thermochromic coatings in the PV applications over the next eight years. It includes an assessment of where revenue generation will occur and which companies are likely to be the winners and losers in this space. The report also includes a detailed eight-year forecast of smart coating usage in the PV space, broken out by coated area and market value.

NanoMarkets has been covering the markets for PV materials for almost seven years and believes strongly that there are now growing opportunities to sell smart coatings into the PV sector. This report considers how smart coatings can create value for the PV industry under the changed circumstances that PV faces today, in which government subsidies are under threat and there are huge pressures to reduce PV costs across the industry.

In this environment, some PV module makers are seeking ways to differentiate themselves in a rapidly commoditizing market, such as through addition of self-cleaning or self-healing coatings to PV panels that improve performance and/or reduce cost-in-use. Others may seek to add new functionality to PV panels, such as by combining BIPV with an electrochromic smart window that enhances the value proposition of PV for end-users. Among firms discussed in this report are, Bayer MaterialScience, Cardinal Glass, Corning, Gentex, Nippon Sheet Glass, Nissan, PPG, Peer, SAGE Electrochromics, Saint-Gobain, and Soladigm.

Table of Contents

Table of Contents

Executive Summary

  • E.1 "New" Opportunities for Smart Coatings in the PV Industry Since our Last Report
  • E.2 Maximizing Performance of PV through Smart Coatings
  • E.3 Longer-Term Potential for Added Functionality in Smart Coatings for PV
  • E.4 Why Flexible PV and BIPV Glass Matter to the Future of Smart Coatings in PV
  • E.5 Summary of Eight-Year Forecasts of Smart Coatings in PV Applications

Chapter One: Introduction to Smart Coatings in PV Applications

  • 1.1 Introduction to this Report
    • 1.1.1 Changes in the PV Market That May Influence the Adoption of Smart Coatings
    • 1.1.2 How Smart Coatings Improve the Value Proposition for PV
    • 1.1.3 Smart Coatings for Better Panel Performance
    • 1.1.4 Smart Coatings and Added Functionality
  • 1.2 Objectives and Scope of This Report
  • 1.3 Methodology of this Report
  • 1.4 Plan of this Report

Chapter Two: Markets for Smart Coatings that Enhance PV Performance

  • 2.1 Opportunities for Self-Cleaning Coatings in PV
    • 2.1.1 The Value of Self-Cleaning PV
    • 2.1.2 Technologies for Self-Cleaning Coatings
    • 2.1.3 Suppliers of Technologies for Self-Cleaning of PV Panels
  • 2.2 Opportunities for Self-Repairing Coatings in PV
    • 2.2.1 The Value Proposition for Self-Repair in PV
    • 2.2.2 Technologies for Self-Repairing Coatings
    • 2.2.3 Suppliers of Technologies for the Self-Repair of PV Panels
  • 2.3 How Smart Coatings Fit Into PV Production
    • 2.3.1 Internal vs. External Smart Coatings
    • 2.3.2 Opportunities by PV type
  • 2.4 Key Points Made in this Chapter

Chapter Three: Market Opportunities for Smart-Coatings that Add Functionality to PV

  • 3.1 Adding Electrochromics to PV
    • 3.1.1 Dimmability in BIPV Applications  Multifunctional Windows: Energy, Light, and Shading
    • 3.1.2 Electrochromics in Off-Grid and Portable PV
    • 3.1.3 Electrochromics for Improved Safety in PV Applications
    • 3.1.4 Switchable and Dimmable Technologies
    • 3.1.5 Challenges for Commercialization of Electrochromics in PV
  • 3.2 Opportunities for Thermochromic Devices in PV
    • 3.2.1 Improving the Safety of PV Panels and Protecting Investments with Thermochromics
  • 3.3 Longer-Term Potential for Adding Functionality to PV
    • 3.3.1 Emerging Smart Coatings Technologies
    • 3.3.2 Adding PV to Displays and Lighting
  • 3.4 Key Points Made in this Chapter

Chapter Four: Eight-Year Forecasts of Smart Coatings for PV

  • 4.1 Forecasting Methodology
    • 4.1.1 Methodology
    • 4.1.2 Scope of the Forecast
    • 4.1.3 Data Sources
    • 4.1.4 Alternative Scenarios
    • 4.1.5 Differences from Earlier NanoMarkets Forecasts
  • 4.2 Forecasts of Self-Repairing and Self-Cleaning Smart Coatings for PV
    • 4.2.1 Self-Cleaning Smart Coatings
    • 4.2.2 Self-Repairing Smart Coatings
  • 4.3 Forecasts of Electrochromic and Thermochromic Smart Coatings for PV
    • 4.3.1 Electrochromic and Switchable Smart Coatings
    • 4.3.2 Thermochromic Smart Coatings
  • 4.4 Summary of Forecasts
  • Abbreviations and Acronyms Used in This Report
  • About the Author

List of Exhibits

  • Exhibit E-1: Selected Smart Coatings Firms with PV Potential
  • Exhibit E-2: Summary of Forecasts for Smart Coatings in PV Applications 2012-2019
  • Exhibit 4-1: Forecasts for Self-Cleaning Coatings in PV Applications 2012-2019
  • Exhibit 4-2: Forecasts for Self-Repairing Coatings in PV Applications 2012-2019
  • Exhibit 4-3: Forecasts for Electrochromic Coatings in PV Applications 2012-2019
  • Exhibit 4-4: Forecasts for Thermochromic Coatings in PV Applications 2012-2019
  • Exhibit 4-5: Summary of Forecasts for Smart Coatings in PV Applications 2012-2019
新聞稿

2017年年間PV(太陽光發電)產業的智慧表面塗層市場將超過4億5,000萬美元規模

2012年04月03日

Global Information, Inc.已開始銷售NanoMarkets所發行的報告書「Smart Coatings in Photovoltaics 2012 (PV(太陽能發電)產業的智慧塗層市場:2012年)」

NanoMarkets預測,PV(太陽光發電)智慧表面塗層市場將從2012年不滿1,200萬美元的規模,2017年時擴大到超過4億5,000萬美元規模。

就整體而言,PV市場有減速基調,將來情形亦難以預見。然NanoMarkets確信,藉由提高基本的PV功能,著眼於提供附加價值機能的智慧表面塗層,PV企業得以提高競爭力及成長潛在性。

尤其是整合有自我清洗表面塗層等種類的智慧表面塗層功能,有可能改善PV的成本效率與提高變換效率,對1瓦的成本造成直接且重要的影響。

預測2017年之前自我清洗表面塗層在PV部門約創出1億5,000萬美元的年間收益。

其他更洗練的(並且高價的)智慧表面塗層,亦實現差異化的多種追加功能。PV面板製造商利用該追加功能,可作出尖端產品、急速商品化及均質化,提供自家公司與其他公司差異化的產品。

追加此功能的表面塗層,包含可調整或“可轉換”的因電色變、熱變色塗料及相關表面塗覆系統。

因電色變系統完全適合BIPV(建材一體型太陽光發電)和高度的BIPV/智慧窗應用。

預測在2017年之前PV的因電色變系統年間收益將超過1億9,000萬美元。

PV(太陽能發電)產業的智慧塗層市場:2012年是由出版商NanoMarkets在2012年02月28日所出版的。這份市場調查報告書包含67 Pages 價格從美金2495起跳。

Back to Top
;