Ȩ Ä«Å×°í¸® ¸ÂÃãÇü½ÃÀåÁ¶»ç ±¹Á¦ÄÁÆÛ·±½º ±Û·Î¹ú ÆÄÆ®³Ê ¸ÞÀϸµ ¼­ºñ½º ȸ»ç¼Ò°³È¸»ç¼Ò°³ Contact Us
English Japaness Chinese
Home > ½ÃÀ庸°í¼­ > ¸ÅÆ®¸®¾ó > ³ª³ëÅ×Å©³î·¯Áö > Nanotechnology in Energy Applications
Ä«Å×°í¸®
¸ÅÆ®¸®¾ó (3959)
³ª³ëÅ×Å©³î·¯Áö (197)
³­¿¬Á¦ (24)
¸ÅÅ» (260)
¼¼¶ó¹Í (112)
À¯±âÈ­ÇÕ¹° (443)
À¯¸® (62)
À×Å©/Àμâ (53)
Á¢ÂøÁ¦ (53)
Ã˸Š(34)
ź¼Ò (39)
Æ÷Àå (509)
Æú¸®¸Ó (152)
ÇÃ¶ó½ºÆ½ (444)
ÈñÀ¯±Ý¼Ó/ÈñÅä·ù (120)
½ÃÀ庸°í¼­

Nanotechnology in Energy Applications

¸®¼­Ä¡»ç BCC Research
¹ßÇàÀÏ 2007³â 03¿ù »óǰÄÚµå 51640
ÆäÀÌÁö Á¤º¸ 156 pages 80 tables
°¡°Ý
US $ 4,850 £Ü 5,778,700 PDF by E-mail (Single User License)
US $ 5,950 £Ü 7,089,400 PDF by E-mail (Business Unit License)
US $ 8,500 £Ü 10,127,700 PDF by E-Mail (Enterprise License)


¿µ¹®¸ñÂ÷

Abstract

INTRODUCTION

Nanotechnology is increasingly impacting the U.S. and world energy balance, both on the supply and demand sides. On the supply side, nanotechnology is being used to optimize production from existing energy sources (e.g., crude petroleum) and to exploit new sources such as heavy oil, liquefied coal, and solar energy (including using solar energy to produce hydrogen). Nanotechnology is also improving and opening new possibilities for the transmission and storage of energy, especially electricity and possibly hydrogen in the future.

On the supply side, nanotechnologies have the potential to reduce energy consumption by making it possible to manufacture lighter and/or more energy efficient cards and appliances. Nanotechnologies can also be used to improve energy efficiency in buildings.

SCOPE OF STUDY

This report contains:
  • The global market for nanoscale materials (e.g., nanopowders, nanocomposites, nanoscale thin films, and others) and devices (e.g., nanosensors) used in the following types of energy applications: renewable and non-renewable energy production (e.g., petroleum refining, solar energy), energy transmission, conversion, and storage (e.g., transmission systems, transformers, batteries and fuel cells), and energy end-uses (motor vehicles, building HVAC systems, manufacturing)
  • Nanotechnology applications that are currently in commercial use or are likely to be commercialized by 2012. Other applications that are unlikely to make it out of the laboratory by 2012 are not covered in depth.
  • An in-depth technology review and a detailed patent analysis
  • Profiles for important companies.

INFORMATION SOURCES AND METHODOLOGY

The findings and conclusions of this report are based on information gathered from developers and manufacturers of nanoscale materials and devices and the energy systems in which they are used, as well as concerned governmental, industry, and professional organizations. Interview data were combined with information gathered through an extensive review of secondary sources such as trade publications, trade associations, company literature, and online databases to produce the baseline market estimates contained in this report.

The methodologies and assumptions used to develop the market projections in this report are discussed at length under the various types of nano-energy applications. The report carefully documents data sources and assumptions. This way, readers can see how the market estimates were developed and, if they so desire, test the impact on the final numbers of changing assumptions such as price.

ANALYST CREDENTIALS

Andrew McWilliams, the author of this report, is a partner in the Boston-based international technology and marketing consulting firm, 43rd Parallel, LLC. He is the author of numerous other BCC Research technology market research reports, including several reports in the areas of nanotechnology and energy such as Advanced Materials and Devices for Renewable Energy Systems, EGY053A, Petroleum Fuel Optimization Technologies, EGY051A, Catalysts for Environmental and Energy Applications, CHM020B, and Nanomaterials Market by Type, NAN040A.

Table of Contents

  • INTRODUCTION
    • STUDY BACKGROUND
    • STUDY GOALS AND OBJECTIVES
    • INTENDED AUDIENCE
    • SCOPE AND FORMAT
    • INFORMATION SOURCES AND METHODOLOGY
    • ANALYST CREDENTIALS
    • RELATED BCC RESEARCH REPORTS
    • DISCLAIMER
  • EXECUTIVE SUMMARY
    • Summary Table:
    • GLOBAL ENERGY-RELATED MARKET FORECAST FOR ENERGY-RELATED NANOTECHNOLOGIES, THROUGH 2012 ($ BILLIONS)
    • Summary Figure:
    • TRENDS IN GLOBAL ENERGY-RELATED MARKET FOR NANOTECHNOLOGIES, 2006-2012 ($ BILLIONS)
  • OVERVIEW
    • GENERAL DESCRIPTION OF NANOMATERIALS AND NANODEVICES
      • NANOMATERIALS
    • Table 1 MAJOR TYPES OF NANOMATERIALS
      • Solid Nanoparticles
      • Hollow Nanoparticles
      • Nanoscale Thin Films
      • Nanostructured Monolithics
      • Nanocomposites
      • Other Nanomaterials
    • NANODEVICES
      • Nanosensors
    • SPECIAL PROPERTIES
      • MAJOR ENERGY APPLICATIONS OF NANOMATERIALS AND NANODEVICES
    • ENERGY PRODUCTION, REFINING, STORAGE, TRANSMISSION AND DISTRIBUTION
      • Synthetic Hydrocarbon Fuels
      • Solar Photovoltaics
      • Ethanol
      • Petroleum Refining
      • Fuel Cells
      • Batteries and Other Energy Storage Devices
      • Energy Transportation And Distribution
      • Miscellaneous Energy Production Applications
    • ENERGY EFFICIENCY
      • Transport Applications
      • Energy-Efficient Buildings
      • Industrial Processes
      • Consumer Products
    • OVERALL MARKET SIZE AND SEGMENTATION
      • MARKET SIZE
    • Table 2 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOTECHNOLOGIES, THROUGH 2012 ($ MILLIONS)
    • Figure 1 TRENDS IN GLOBAL ENERGY-RELATED MARKET FOR NANOTECHNOLOGIES, 2006-2012 ($BILLIONS)
      • NANOTECHNOLOGY SEGMENTS
    • Table 3 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOMATERIALS AND NANODEVICES BY TYPE, THROUGH 2012 ($ MILLIONS)
    • Figure 2 ENERGY-RELATED MARKETS FOR NANOMATERIALS AND NANODEVICES, TECHNOLOGY SEGMENTS 2006 VS. 2012 (% OF TOTAL MARKET)
      • APPLICATIONS AND END USES
    • Table 4 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOMATERIALS AND NANODEVICES BY APPLICATION, THROUGH 2012 ($ MILLIONS)
    • Figure 3 ENERGY-RELATED MARKETS FOR NANOMATERIALS AND NANODEVICES END-USE SEGMENTS, 2006 VS. 2012 (% OF TOTAL MARKET)
    • Figure 3 (CONTINUED)
  • NANOTECHNOLOGIES FOR ENERGY APPLICATIONS
    • SOLID NANOPARTICLES
      • FABRICATION
    • Table 5 NANOPARTICLE PRODUCTION PROCESSES
      • TYPES OF SOLID NANOPARTICLES WITH ENERGY APPLICATIONS
        • Metal Nanoparticles
    • Table 6 METAL NANOPARTICLES WITH ENERGY APPLICATIONS
      • Nickel and Iron Nanoparticles
      • Other Types of Metal Nanoparticles
        • Simple Oxide Nanoparticles
    • Table 7 SIMPLE OXIDE NANOPARTICLES WITH ENERGY APPLICATIONS
      • Titanium Dioxide
      • Vanadium Oxide
      • Cerium Oxide
        • Complex Oxide Nanoparticles
    • Table 8 COMPLEX OXIDE NANOPARTICLES WITH ENERGY APPLICATIONS
      • Lithium Titanate Spinel
      • Molybdenum Disulfide
      • Yttrium Stabilized Zirconia
      • Rare Earth Nanophosphors
        • Semiconductor Nanoparticles
    • HOLLOW NANOPARTICLES
      • FABRICATION
        • Arc Discharge
        • Laser Ablation
        • Chemical Vapor Deposition
    • HOLLOW NANOPARTICLES WITH ENERGY APPLICATIONS
      • Carbon Nanotubes
      • Nanohorns
    • NANOSCALE THIN FILMS
      • FABRICATION
        • Nanoparticulate Precursor Methods
        • Direct Production of Nanoscale Thin Films
      • NANOSCALE THIN FILMS WITH ENERGY APPLICATIONS
        • Platinum Thin Films
      • NANOSTRUCTURED MONOLITHICS
    • Table 9 TYPES OF NANOSTRUCTURED MONOLITHICS WITH ENERGY APPLICATIONS
      • ZEOLITES
        • Fabrication
        • Energy Applications
    • Table 10 COMMERCIAL ZEOLITES
      • AEROGELS
        • Fabrication
        • Energy Applications
      • NANOPOROUS MEMBRANES
        • Fabrication
        • Energy Applications
          • Petroleum Refining
          • Fuel Cells
      • NANOCOMPOSITES
        • FABRICATION
          • Clay/ Polymer Nanocomposites
          • Carbon Nanotube Composites
            • Oriented Nanocomposite Extrusion Process
            • Layered Fabrication
      • TYPES OF NANOCOMPOSITES WITH ENERGY APPLICATIONS
    • Table 11 NANOCOMPOSITES WITH ENERGY APPLICATIONS
      • Cadmium Selenide Nanocomposites
      • Quantum Dot Nanocomposites
      • Carbon Fullerenes Doped Nanocomposites
      • Nanocomposite Fuel Cell Membranes
      • Nanomagnetic Composites
      • Carbon Nanotube Composites
    • OTHER NANOMATERIALS
      • FABRICATION
      • ENERGY APPLICATIONS
    • NANODEVICES
      • NANOSENSORS
    • Table 12 ENERGY APPLICATIONS OF NANOSENSORS
  • SYNTHETIC HYDROCARBON FUELS
    • SUMMARY
    • Table 13 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN COAL LIQUEFACTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • SYNTHETIC FUELS PRODUCTION
      • NANOMATERIALS USED IN SYNTHETIC FUELS PRODUCTION
        • SOLID NANOPARTICLES
          • Metal Nanoparticles
            • Technology and Applications
            • Patents
            • Market Analysis
    • Table 14 GLOBAL MARKET FORECAST FOR COAL LIQUEFACTION NANOCATALYSTS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
  • SOLAR PHOTOVOLTAICS
    • SUMMARY
    • Table 15 GLOBAL MARKET FORECAST FOR NANOMATERIALS USED IN PHOTOVOLTAICS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • SOLAR PHOTOVOLTAIC TECHNOLOGIES
        • SECOND-GENERATION PHOTOVOLTAICS
        • THIRD-GENERATION PHOTOVOLTAICS
          • Dye-Sensitized Solar Cells
          • Quantum Dot PVs
          • Organic PVs
          • Hybrid Organic-Metal PVs
          • Hybrid Organic-Organic PVs
      • NANOMATERIALS USED IN SOLAR PHOTOVOLTAICS
        • SOLID NANOPARTICLES
    • Table 16 GLOBAL MARKET FORECAST FOR SOLID NANOPARTICLES IN PHOTOVOLTAIC APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLION)
      • TiO2 Nanoparticles
        • Technology and Applications
        • Manufacturers
    • Table 17 COMPANIES MANUFACTURING OR DEVELOPING DSSC PVS
      • Patents
    • Table 18 U.S. PATENTS AND PATENT APPLICATIONS RELATED TO USE OF TI02 NANOPARTICLES IN PHOTOVOLTAIC APPLICATIONS
      • Market Analysis
    • Table 19 CONSUMPTION OF DYE-SENSITIVE SOLAR CELLS, THROUGH 2012 ($ MILLIONS)
    • Table 20 GLOBAL MARKET FORECAST OF TI02 NANOPARTICLES IN DYE-SENSITIZED SOLAR CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • Quantum Dots
        • Technology and Applications
        • Manufacturer
        • Patents
        • Market Analysis
    • Table 21 GLOBAL MARKET FORECAST FOR EPITAXIALLY GROWN QUANTUM DOT PV CELLS, THROUGH 2012 ($ MILLIONS)
    • Table 22 GLOBAL MARKET FORECAST FOR EPITAXIALLY GROWN QUANTUM DOT PVS CONSUMPTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • NANOCOMPOSITES
    • Table 23 GLOBAL MARKET FORECAST FOR NANOCOMPOSITES IN PHOTOVOLTAIC APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • P3HT/Cadmium Selenide
        • Technology and Applications
        • Manufacturers
        • Patents
        • Market Analysis
    • Table 24 CONSUMPTION OF P3HT/CDSE SOLAR CELLS, 2006-2012 ($ MILLIONS)
    • Table 25 PROJECTED CONSUMPTION OF CDSE/P3HT NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
      • MEH-PPV/PbS Nanocomposites
        • Technology and Applications
        • Manufacturers
        • Patents
        • Market Analysis
    • Table 26 CONSUMPTION OF QUANTUM DOT NANOCOMPOSITE PV CELLS, 2006-2012 ($ MILLIONS)
    • Table 27 PROJECTED CONSUMPTION OF MEH-PPV/PBS NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
      • Carbon Fullerene Doped Polymer Solar Cells
        • Technology and Applications
        • Market Analysis
    • Table 28 CONSUMPTION OF CARBON FULLERENE DOPED POLYMER PV CELLS, 2006-2012 ($ MILLIONS)
    • Table 29 PROJECTED CONSUMPTION OF CARBON FULLERENE DOPED POLYMER NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
  • ETHANOL PRODUCTION
    • SUMMARY
    • Table 30 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN ETHANOL PRODUCTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • ETHANOL PRODUCTION
      • NANOMATERIALS USED IN ETHANOL PRODUCTION
        • OTHER NANOMATERIALS
          • Enzymes
            • Technology and Applications
            • Manufacturers
    • Table 31 PRODUCERS OF ENZYMES FOR ETHANOL PRODUCTION
      • Patents
      • Market Analysis
    • Figure 4 U.S. ETHANOL PRODUCTION, 2006-2012 (BILLION GALLONS)
    • Table 32 GLOBAL MARKET FORECAST FOR ENZYME CATALYSTS USED IN ETHANOL PRODUCTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
  • PETROLEUM REFINING
    • SUMMARY
    • Table 33 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN PETROLEUM REFINING, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Figure 5 REFINERY NANOMATERIALS DOLLAR MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS VALUE CONSUMED IN REFINING)
      • REFINING PROCESSES
    • Table 34 NANOCATALYST APPLICATIONS IN PETROLEUM REFINING/PETROCHEMICALS
      • FLUID CRACKING
      • HYDROTREATING
      • HEAVY OIL UPGRADING
      • OTHER REFINERY PROCESSES
    • NANOMATERIALS USED IN REFINING
      • SOLID NANOPARTICLES
        • Miscellaneous Solid Nanoparticles
        • Technology and Applications
        • Manufacturers
        • Patents
        • Market Analysis
    • Table 35 GLOBAL MARKET FORECAST OF NON-ZEOLITE NANOCATALYSTS IN REFINING AND PETROCHEMICALS, THROUGH 2012 (METRIC TONS/$ MILLION)
      • NANOSTRUCTURED MONOLITHIC
    • Table 36 GLOBAL MARKET FORECAST FOR NANOSTRUCTURED MONOLITHICS USED IN REFINING, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • Zeolites
        • Technologies and Applications
        • Manufacturers
    • Table 37 MANUFACTURERS OF ZEOLITES
      • Patents
    • Figure 6 TRENDS IN NUMBER OF U.S. ZEOLITE REFINERY CATALYST PATENTS ISSUED ANNUALLY, 2002-2006
    • Figure 7 MAJOR ZEOLITE REFINERY CATALYST IP PORTFOLIOS (% OF U.S. ZEOLITE REFINERY CATALYST PATENTS ISSUED SINCE 1976)
      • Market Analysis
    • Figure 8 TRENDS IN GLOBAL DEMAND FOR CRACKING CATALYSTS, 2006-2012 ($ BILLIONS)
    • Table 38 GLOBAL MARKET FORECAST FOR ZEOLITE CRACKING CATALYSTS, 2006-2012 (METRIC TONS/$ MILLIONS)
      • Nanoporous Thin Films
        • Technologies and Applications
        • Manufacturers
    • Table 39 COMPANIES DEVELOPING OR MANUFACTURING NANOPOROUS THIN FILMS FOR REFINERY APPLICATIONS
      • Patent Analysis
      • Market Analysis
    • Table 40 GLOBAL MARKET FORECAST FOR NANOPOROUS THIN FILMS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • NANODEVICES USED IN REFINING
        • NANOSENSORS
          • Technologies and Applications
          • Manufacturers
          • Patents
          • Market Analysis
    • Table 41 GLOBAL MARKET FORECAST FOR CHEMICAL AND GAS NANOSENSORS IN THE PETROLEUM REFINING INDUSTRY, THROUGH 2012 ($ BILLIONS)
  • FUEL CELLS
    • SUMMARY
    • Table 42 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN FUEL CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Figure 9 NANOMATERIAL VOLUME SHARES OF FUEL CELL MARKET, 2006 VS. 2012 (PERCENT OF TOTAL FUEL CELL NANOMATERIALS IN METRIC TONS)
    • Figure 10 NANOMATERIAL DOLLAR SHARES OF FUEL CELL MARKET, 2006 VS. 2012 (PERCENT OF TOTAL FUEL CELL NANOMATERIALS IN DOLLARS)
      • FUEL CELL TECHNOLOGIES
    • Figure 11 FUEL CELL BASIC PRINCIPLES
      • PHOSPHORIC ACID FUEL CELLS
      • PROTON EXCHANGE MEMBRANE FUEL CELLS
      • DIRECT METHANE FUEL CELLS
      • SOLID OXIDE FUEL CELLS
    • NANOMATERIALS USED IN FUEL CELLS
      • SOLID NANOPARTICLES
        • Complex Oxide Nanoparticles
          • Technology and Applications
          • Market Analysis
    • Table 43 GLOBAL MARKET FOR SOFC FUEL CELLS, THROUGH 2012 ($ MILLIONS)
    • Figure 12 TRENDS IN GLOBAL MARKET FOR SOFC FUEL CELLS, 2006-2012 ($ MILLIONS)
    • Table 44 GLOBAL CONSUMPTION OF COMPLEX OXIDE NANOPARTICLES FOR SOFC FUEL CELL APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • HOLLOW NANOPARTICLES
        • Carbon Nanohorns
          • Technology and Applications
          • Market Analysis
    • Table 45 GLOBAL CONSUMPTION OF NANOHORNS FOR FUEL CELL APPLICATIONS, 2006-2012 (METRIC TONS/$ MILLIONS)
      • NANOSCALE THIN FILMS
        • Platinum Thin Films
          • Technology and Applications
          • Market Analysis
    • Table 46 GLOBAL PLATINUM THIN FILM FUEL CELL MARKET FORECAST BY TECHNOLOGY TYPE, THROUGH 2012 ($ MILLIONS)
    • Table 47 GLOBAL CONSUMPTION OF NANOSTRUCTURED PLATINUM THIN FILM MATERIALS IN FUEL CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • NANOSCALE MONOLITHICS
        • Polymer Membranes
          • Technology and Applications
          • Market Analysis
    • Table 48 POLYMER MEMBRANE FUEL CELL MARKET FORECAST BY TECHNOLOGY TYPE, THROUGH 2012 ($ MILLIONS)
    • Table 49 GLOBAL CONSUMPTION OF NANOPOROUS POLYMER FUEL CELL MEMBRANE MATERIALS, 2006-2012 (METRIC TONS/$ MILLIONS)
      • NANOCOMPOSITES
        • Nanocomposite Membranes
          • Technology and Applications
          • Manufacturers
          • Market Analysis
    • Table 50 FUEL CELL MEMBRANE CONSUMPTION, 2012 ($ MILLIONS)
    • Table 51 GLOBAL MARKET FORECAST FOR NANOCOMPOSITE FUEL CELL MEMBRANE, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
  • BATTERIES AND OTHER ENERGY STORAGE DEVICES
    • SUMMARY
    • Table 52 NANOMATERIALS AND NANODEVICES USED IN ENERGY STORAGE DEVICES, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Figure 13 ENERGY STORAGE NANOMATERIALS MARKET SHARES, 2012 (% OF TOTAL NANOMATERIALS CONSUMPTION IN METRIC TONS AND $)
      • TYPES OF ENERGY STORAGE DEVICE
        • BATTERIES
        • SUPERCAPACITORS
      • NANOMATERIALS USED IN ENERGY STORAGE DEVICES
        • SOLID NANOPARTICLES
          • Complex Oxide Nanoparticles
            • Technology and Applications
            • Patents
            • Market Analysis
    • Table 53 GLOBAL LITHIUM ION BATTERY SALES, 2006-2012 ($ BILLIONS)
    • Table 54 CONSUMPTION OF LITHIUM TITANATE NANOPARTICLES USED IN ADVANCED LI-ION BATTERIES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • NANOSTRUCTURED MONOLITHICS
        • Carbon Aerogels
          • Technology and Applications
          • Manufacturers
          • Patents
          • Market Analysis
    • Table 55 GLOBAL MARKET FOR ADVANCED ELECTRONIC AND CAPACITIVE ENERGY STORAGE DEVICES, THROUGH 2012 ($ MILLIONS)
    • Table 56 PROJECTED CONSUMPTION OF CARBON AEROGELS USED IN SUPERCAPACITORS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
  • ENERGY TRANSMISSION AND DISTRIBUTION
    • SUMMARY
    • Table 57 NANOMATERIALS AND NANODEVICES USED IN ENERGY TRANSMISSION AND DISTRIBUTION, THROUGH 2012 (METRIC TONS IN MILLIONS/$$ MILLIONS)
    • Figure 14 ENERGY TRANSMISSION AND DISTRIBUTION NANOMATERIALS VOLUME MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS CONSUMPTION IN METRIC TONS)
    • Figure 15 ENERGY TRANSMISSION AND DISTRIBUTION NANOMATERIALS VALUE MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS CONSUMPTION IN DOLLARS)
      • ENERGY TRANSMISSION AND DISTRIBUTION SYSTEM
        • Cryogenic Pipelines and Storage Tanks
        • Transformers
      • NANOMATERIALS USED IN ENERGY TRANSMISSION AND DISTRIBUTION
        • NANOSTRUCTURED MONOLITHICS
          • Silica Aerogels
            • Technology and Applications
            • Manufacturers
            • Patents
            • Market Analysis
    • Table 58 CONSUMPTION OF AEROGEL ENERGY PIPELINE INSULATION, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
      • NANOCOMPOSITES
        • Nanomagnetic Composites
          • Technology and Applications
          • Manufacturers
    • Table 59 MANUFACTURERS OF NANOMAGNETIC COMPOSITES
      • Patents
      • Market Analysis
    • Table 60 INDUSTRIAL CONSUMPTION OF NANOMAGNETIC MATERIALS, THROUGH 2012 ($ MILLIONS)
    • Table 61 PROJECTED CONSUMPTION OF MAGNETIC NANOCOMPOSITES IN TRANSFORMERS, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
      • NANODEVICES USED IN ENERGY TRANSMISSION AND DISTRIBUTION
        • NANOSENSORS
          • Hydrogen Nano-Sensors
            • Technology and Applications
            • Patents
            • Market Analysis
    • Table 62 MARKET FORECAST FOR HYDROGEN GAS NANOSENSORS USED IN MONITORING TRANSFORMERS, THROUGH 2012 (MILLION UNITS/$ MILLIONS)
  • MISCELLANEOUS ENERGY PRODUCTION APPLICATIONS
    • SUMMARY
    • Table 63 NANOMATERIALS USED IN MISCELLANEOUS ENERGY APPLICATIONS, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
      • MISCELLANEOUS ENERGY APPLICATIONS OF NANOMATERIALS
      • NANOMATERIALS USED IN MISCELLANEOUS ENERGY APPLICATIONS
        • SOLID NANOPARTICLES
          • Metal Oxide Nanoparticles
            • Technologies and Applications
            • Patents
            • Market Analysis
    • Table 64 GLOBAL MARKET FORECAST FOR NANOPARTICULATE CERIUM OXIDE DIESEL FUEL ADDITIVES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • Aluminum Nanoparticles
        • Technologies and Applications
        • Market Analysis
    • Table 65 GLOBAL MARKET FOR NANOPARTICULATE ALUMINA FUEL ADDITIVES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
  • ENERGY-EFFICIENT TRANSPORT
    • SUMMARY
    • LIGHTWEIGHT MATERIALS AND ENERGY CONSUMPTION
    • NANOMATERIALS USED IN ENERGY-EFFICIENT TRANSPORTATION EQUIPMENT
      • NANOCOMPOSITES
        • Technology and Applications
    • Table 66 AUTOMOTIVE APPLICATIONS OF NANOCOMPOSITE MATERIALS
      • Patents
      • Market Analysis
    • Table 67 MANUFACTURERS OF NANOCOMPOSITE MATERIALS USED IN AUTOMOTIVE APPLICATIONS
      • Manufacturers
    • Figure 16 GLOBAL NANOCOMPOSITE CONSUMPTION IN AUTOMOTIVE APPLICATIONS, 2006 (PERCENT TOTAL CONSUMPTION BY VALUE)
    • Table 68 GLOBAL MARKET FOR NANOCOMPOSITE USED IN AUTOMOTIVE APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
  • ENERGY EFFICIENT BUILDINGS
    • SUMMARY
    • Table 69 NANOMATERIALS AND NANODEVICES USED TO INCREASE BUILDINGS' ENERGY EFFICIENCY, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
      • NANOMATERIALS USED TO INCREASE BUILDING ENERGY EFFICIENCY
        • SOLID NANOPARTICLES
          • Light Emitting Diodes
            • Technologies and Applications
            • Manufacturers
    • Table 70 COMPANIES DEVELOPING NANOPARTICLE LEDS
      • Patents
      • Market Analysis
    • Table 71 GLOBAL HIGH BRIGHTNESS LED SALES, THROUGH 2012 ($ MILLIONS)
    • Table 72 GLOBAL MARKET FOR SOLID NANOPARTICLES USED IN LED APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
      • NANOSTRUCTURED MONOLITHICS
        • Aerogel Insulation
          • Technologies and Applications
          • Manufacturers
    • Table 73 MANUFACTURERS OF AEROGEL BUILDING INSULATION
      • Patents
      • Market Analysis
    • Table 74 GLOBAL CONSUMPTION OF AEROGELS FOR BUILDING INSULATION APPLICATIONS, THROUGH 2012 (METRICTONS IN THOUSANDS/$ MILLIONS)
  • ENERGY-EFFICIENT INDUSTRIAL PROCESSES
    • SUMMARY
    • NANOCATALYSTS AND INDUSTRIAL PROCESSES
    • NANOMATERIALS
      • OTHER NANOMATERIALS
        • Enzyme Nanocatalysts
          • Technology and Applications
          • Manufacturers
    • Table 75 MANUFACTURERS OF INDUSTRIAL ENZYMES
      • Patents
      • Market Analysis
    • Table 76 ENZYME CONSUMPTION IN INDUSTRIAL PROCESS APPLICATIONS OTHER THAN ETHANOL PRODUCTION, THROUGH 2012 ($ MILLIONS)
      • Market ... (Continued)
  • ENERGY-EFFICIENT CONSUMER PRODUCTS
    • SUMMARY
    • ENZYME-BASED DETERGENTS
    • NANOMATERIALS
      • OTHER NANOMATERIALS
        • Enzyme Nanocatalysts
          • Technology and Applications
    • Table 77 DETERGENT ENZYMES AND THEIR APPLICATIONS
      • Manufacturers
      • Patents
        • Market Analysis
    • Table 78 TOTAL DETERGENT SALES IN ADVANCED VS. EMERGING MARKETS, THROUGH 2012 ($ BILLIONS)
    • Table 79 PROJECTED GLOBAL MARKET FOR ENZYME DETERGENTS, 2006-2012 ($ BILLIONS)
    • Table 80 PROJECTED CONSUMPTION OF DETERGENT ENZYMES, 2006-2012 (METRIC TONS/$ MILLIONS)
  • COMPANY PROFILES
    • ALBEMARLE CORP
    • ALPS ELECTRIC CO., LTD
    • ALTAIR NANOTECHNOLOGIES, INC.
    • ARGONIDE CORP.
    • ASPEN AEROGELS, INC.
    • BASELL POLYOLEFINS COMPANY N.V.
    • BASF AG
    • BAYER MATERIAL SCIENCE AG
    • BC INTERNATIONAL CORPORATION
    • COOPER ELECTRONIC TECHNOLOGIES
    • CYRIUM TECHNOLOGIES, INC.
    • DEGUSSA AG
    • DIVERSA CORP.
    • DOW CHEMICAL CO.
    • E. I. DU PONT DE NEMOURS AND CO.
    • ENER1, INC.
    • ENGELHARD CORP.
    • EVIDENT TECHNOLOGIES
    • EXXONMOBIL CORP
    • FERROTEC CORP.
    • FORGE EUROPA, LTD.
    • G24 INNOVATIONS, LTD.
    • GE PLASTICS
    • GENENCOR INTERNATIONAL
    • HEADWATERS NANOKINETIX, INC.
    • HONEYWELL SPECIALTY POLYMERS
    • HYDROCARBON TECHNOLOGIES, INC.
    • HYPERION CATALYSIS INTERNATIONAL, INC.
    • INFRAMAT CORP.
    • INNOVALIGHT, INC.
    • IOGEN CORP.
    • JOHNSON MATTHEY, PLC
    • KONARKA TECHNOLOGIES, INC.
    • LUMILEDS, LLC
    • MACH 1, INC.
    • MEDIA AND PROCESS TECHNOLOGY, INC.
    • MEMBRANE TECHNOLOGY AND RESEARCH, INC.
    • NANOFORCE, INC.
    • NANOGRAM CORP.
    • NANOMIX, INC.
    • NANOPOWDER ENTERPRISES CORP.
    • NANOPRODUCTS CORP.
    • NANO-PROPRIETARY, INC.
    • NANOSOLAR, INC.
    • NANOSYS, INC.
    • NANOTECHNOLOGIES, INC.
    • NEOMAX CO., LTD.
    • NEXTECH MATERIALS, LTD.
    • NOBLE POLYMERS
    • NOVOZYMES A/S
    • OCELLUS TECHNOLOGIES
    • OXONICA, LTD.
    • POLYONE CORP.
    • RHODIA SA
    • RTP COMPANY
    • SIM COMPOSITES, INC.
    • SOLARONIX SARUE DE L' OURIETTE 129
    • SOUTHERN CLAY PRODUCTS, INC.
    • STMICROELECTRONICS
    • SUD-CHEMIE AG
    • TAL MATERIALS, INC.
    • TECHNANOGY, INC.
    • UBE INDUSTRIES, LTD.
    • UNITIKA, LTD.
    • ZEOLYST INTERNATIONAL
  • LIST OF TABLES
    • Summary Table:
    • GLOBAL ENERGY-RELATED MARKET FORECAST FOR ENERGY-RELATED NANOTECHNOLOGIES, THROUGH 2012 ($ BILLIONS)
    • Table 1 MAJOR TYPES OF NANOMATERIALS
    • Table 2 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOTECHNOLOGIES, THROUGH 2012 ($ MILLIONS)
    • Table 3 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOMATERIALS AND NANODEVICES BY TYPE, THROUGH 2012 ($ MILLIONS)
    • Table 4 GLOBAL MARKET FORECAST FOR ENERGY-RELATED NANOMATERIALS AND NANODEVICES BY APPLICATION, THROUGH 2012 ($ MILLIONS)
    • Table 5 NANOPARTICLE PRODUCTION PROCESSES
    • Table 6 METAL NANOPARTICLES WITH ENERGY APPLICATIONS
    • Table 7 SIMPLE OXIDE NANOPARTICLES WITH ENERGY APPLICATIONS
    • Table 8 COMPLEX OXIDE NANOPARTICLES WITH ENERGY APPLICATIONS
    • Table 9 TYPES OF NANOSTRUCTURED MONOLITHICS WITH ENERGY APPLICATIONS
    • Table 10 COMMERCIAL ZEOLITES
    • Table 11 NANOCOMPOSITES WITH ENERGY APPLICATIONS
    • Table 12 ENERGY APPLICATIONS OF NANOSENSORS
    • Table 13 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN COAL LIQUEFACTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 14 GLOBAL MARKET FORECAST FOR COAL LIQUEFACTION NANOCATALYSTS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 15
    • GLOBAL MARKET FORECAST FOR NANOMATERIALS USED IN PHOTOVOLTAICS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 16 GLOBAL MARKET FORECAST FOR SOLID NANOPARTICLES IN PHOTOVOLTAIC APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLION)
    • Table 17 COMPANIES MANUFACTURING OR DEVELOPING DSSC PVS
    • Table 18 U.S. PATENTS AND PATENT APPLICATIONS RELATED TO USE OF TI02 NANOPARTICLES IN PHOTOVOLTAIC APPLICATIONS
    • Table 19 CONSUMPTION OF DYE-SENSITIVE SOLAR CELLS, THROUGH 2012 ($ MILLIONS)
    • Table 20 GLOBAL MARKET FORECAST OF TI02 NANOPARTICLES IN DYE-SENSITIZED SOLAR CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 21 GLOBAL MARKET FORECAST FOR EPITAXIALLY GROWN QUANTUM DOT PV CELLS, THROUGH 2012 ($ MILLIONS)
    • Table 22 GLOBAL MARKET FORECAST FOR EPITAXIALLY GROWN QUANTUM DOT PVS CONSUMPTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 23 GLOBAL MARKET FORECAST FOR NANOCOMPOSITES IN PHOTOVOLTAIC APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 24 CONSUMPTION OF P3HT/CDSE SOLAR CELLS, 2006-2012 ($ MILLIONS)
    • Table 25 PROJECTED CONSUMPTION OF CDSE/P3HT NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 26 CONSUMPTION OF QUANTUM DOT NANOCOMPOSITE PV CELLS, 2006-2012 ($ MILLIONS)
    • Table 27 PROJECTED CONSUMPTION OF MEH-PPV/PBS NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 28 CONSUMPTION OF CARBON FULLERENE DOPED POLYMER PV CELLS, 2006-2012 ($ MILLIONS)
    • Table 29 PROJECTED CONSUMPTION OF CARBON FULLERENE DOPED POLYMER NANOCOMPOSITE MATERIALS IN SOLAR CELLS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 30 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN ETHANOL PRODUCTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 31 PRODUCERS OF ENZYMES FOR ETHANOL PRODUCTION
    • Table 32 GLOBAL MARKET FORECAST FOR ENZYME CATALYSTS USED IN ETHANOL PRODUCTION, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 33 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN PETROLEUM REFINING, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 34 NANOCATALYST APPLICATIONS IN PETROLEUM REFINING/PETROCHEMICALS
    • Table 35 GLOBAL MARKET FORECAST OF NON-ZEOLITE NANOCATALYSTS IN REFINING AND PETROCHEMICALS, THROUGH 2012 (METRIC TONS/$ MILLION)
    • Table 36 GLOBAL MARKET FORECAST FOR NANOSTRUCTURED MONOLITHICS USED IN REFINING, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 37 MANUFACTURERS OF ZEOLITES
    • Table 38 GLOBAL MARKET FORECAST FOR ZEOLITE CRACKING CATALYSTS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 39 COMPANIES DEVELOPING OR MANUFACTURING NANOPOROUS THIN FILMS FOR REFINERY APPLICATIONS
    • Table 40 GLOBAL MARKET FORECAST FOR NANOPOROUS THIN FILMS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 41 GLOBAL MARKET FORECAST FOR CHEMICAL AND GAS NANOSENSORS IN THE PETROLEUM REFINING INDUSTRY, THROUGH 2012 ($ BILLIONS)
    • Table 42 GLOBAL MARKET FORECAST FOR NANOTECHNOLOGIES USED IN FUEL CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 43 GLOBAL MARKET FOR SOFC FUEL CELLS, THROUGH 2012 ($ MILLIONS)
    • Table 44 GLOBAL CONSUMPTION OF COMPLEX OXIDE NANOPARTICLES FOR SOFC FUEL CELL APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 45 GLOBAL CONSUMPTION OF NANOHORNS FOR FUEL CELL APPLICATIONS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 46 GLOBAL PLATINUM THIN FILM FUEL CELL MARKET FORECAST BY TECHNOLOGY TYPE, THROUGH 2012 ($ MILLIONS)
    • Table 47 GLOBAL CONSUMPTION OF NANOSTRUCTURED PLATINUM THIN FILM MATERIALS IN FUEL CELLS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 48 POLYMER MEMBRANE FUEL CELL MARKET FORECAST BY TECHNOLOGY TYPE, THROUGH 2012 ($ MILLIONS)
    • Table 49 GLOBAL CONSUMPTION OF NANOPOROUS POLYMER FUEL CELL MEMBRANE MATERIALS, 2006-2012 (METRIC TONS/$ MILLIONS)
    • Table 50 FUEL CELL MEMBRANE CONSUMPTION, 2012 ($ MILLIONS)
    • Table 51 GLOBAL MARKET FORECAST FOR NANOCOMPOSITE FUEL CELL MEMBRANE, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 52 NANOMATERIALS AND NANODEVICES USED IN ENERGY STORAGE DEVICES, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 53 GLOBAL LITHIUM ION BATTERY SALES, 2006-2012 ($ BILLIONS)
    • Table 54 CONSUMPTION OF LITHIUM TITANATE NANOPARTICLES USED IN ADVANCED LI-ION BATTERIES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 55 GLOBAL MARKET FOR ADVANCED ELECTRONIC AND CAPACITIVE ENERGY STORAGE DEVICES, THROUGH 2012 ($ MILLIONS)
    • Table 56 PROJECTED CONSUMPTION OF CARBON AEROGELS USED IN SUPERCAPACITORS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 57 NANOMATERIALS AND NANODEVICES USED IN ENERGY TRANSMISSION AND DISTRIBUTION, THROUGH 2012 (METRIC TONS IN MILLIONS/$$ MILLIONS)
    • Table 58 CONSUMPTION OF AEROGEL ENERGY PIPELINE INSULATION, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 59 MANUFACTURERS OF NANOMAGNETIC COMPOSITES
    • Table 60 INDUSTRIAL CONSUMPTION OF NANOMAGNETIC MATERIALS, THROUGH 2012 ($ MILLIONS)
    • Table 61 PROJECTED CONSUMPTION OF MAGNETIC NANOCOMPOSITES IN TRANSFORMERS, 2006-2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 62 MARKET FORECAST FOR HYDROGEN GAS NANOSENSORS USED IN MONITORING TRANSFORMERS, THROUGH 2012 (MILLION UNITS/$ MILLIONS)
    • Table 63 NANOMATERIALS USED IN MISCELLANEOUS ENERGY APPLICATIONS, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 64 GLOBAL MARKET FORECAST FOR NANOPARTICULATE CERIUM OXIDE DIESEL FUEL ADDITIVES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 65 GLOBAL MARKET FOR NANOPARTICULATE ALUMINA FUEL ADDITIVES, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 66 AUTOMOTIVE APPLICATIONS OF NANOCOMPOSITE MATERIALS
    • Table 67 MANUFACTURERS OF NANOCOMPOSITE MATERIALS USED IN AUTOMOTIVE APPLICATIONS
    • Table 68 GLOBAL MARKET FOR NANOCOMPOSITE USED IN AUTOMOTIVE APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 69 NANOMATERIALS AND NANODEVICES USED TO INCREASE BUILDINGS' ENERGY EFFICIENCY, THROUGH 2012 (METRIC TONS IN MILLIONS/$ MILLIONS)
    • Table 70 COMPANIES DEVELOPING NANOPARTICLE LEDS
    • Table 71 GLOBAL HIGH BRIGHTNESS LED SALES, THROUGH 2012 ($ MILLIONS)
    • Table 72 GLOBAL MARKET FOR SOLID NANOPARTICLES USED IN LED APPLICATIONS, THROUGH 2012 (METRIC TONS/$ MILLIONS)
    • Table 73 MANUFACTURERS OF AEROGEL BUILDING INSULATION
    • Table 74 GLOBAL CONSUMPTION OF AEROGELS FOR BUILDING INSULATION APPLICATIONS, THROUGH 2012 (METRICTONS IN THOUSANDS/$ MILLIONS)
    • Table 75 MANUFACTURERS OF INDUSTRIAL ENZYMES
    • Table 76 ENZYME CONSUMPTION IN INDUSTRIAL PROCESS APPLICATIONS OTHER THAN ETHANOL PRODUCTION, THROUGH 2012 ($ MILLIONS)
    • Table 77 DETERGENT ENZYMES AND THEIR APPLICATIONS
    • Table 78 TOTAL DETERGENT SALES IN ADVANCED VS. EMERGING MARKETS, THROUGH 2012 ($ BILLIONS)
    • Table 79 PROJECTED GLOBAL MARKET FOR ENZYME DETERGENTS, 2006-2012 ($ BILLIONS)
    • Table 80 PROJECTED CONSUMPTION OF DETERGENT ENZYMES, 2006-2012 (METRIC TONS/$ MILLIONS)
  • LIST OF FIGURES
    • Summary Table:
    • GLOBAL ENERGY-RELATED MARKET FORECAST FOR ENERGY-RELATED NANOTECHNOLOGIES, THROUGH 2012 ($ BILLIONS)
    • SUMMARY FIGURE TRENDS IN GLOBAL ENERGY-RELATED MARKET FOR NANOTECHNOLOGIES, 2006-2012 ($ BILLIONS)
    • Figure 1 TRENDS IN GLOBAL ENERGY-RELATED MARKET FOR NANOTECHNOLOGIES, 2006-2012 ($BILLIONS)
    • Figure 2 ENERGY-RELATED MARKETS FOR NANOMATERIALS AND NANODEVICES, TECHNOLOGY SEGMENTS 2006 VS. 2012 (% OF TOTAL MARKET)
    • Figure 3 ENERGY-RELATED MARKETS FOR NANOMATERIALS AND NANODEVICES END-USE SEGMENTS, 2006 VS. 2012 (% OF TOTAL MARKET)
    • Figure 4 U.S. ETHANOL PRODUCTION, 2006-2012 (BILLION GALLONS)
    • Figure 5 REFINERY NANOMATERIALS DOLLAR MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS VALUE CONSUMED IN REFINING)
    • Figure 6 TRENDS IN NUMBER OF U.S. ZEOLITE REFINERY CATALYST PATENTS ISSUED ANNUALLY, 2002-2006
    • Figure 7 MAJOR ZEOLITE REFINERY CATALYST IP PORTFOLIOS (% OF U.S. ZEOLITE REFINERY CATALYST PATENTS ISSUED SINCE 1976)
    • Figure 8 TRENDS IN GLOBAL DEMAND FOR CRACKING CATALYSTS, 2006-2012 ($ BILLIONS)
    • Figure 9 NANOMATERIAL VOLUME SHARES OF FUEL CELL MARKET, 2006 VS. 2012 (PERCENT OF TOTAL FUEL CELL NANOMATERIALS IN METRIC TONS)
    • Figure 10 NANOMATERIAL DOLLAR SHARES OF FUEL CELL MARKET, 2006 VS. 2012 (PERCENT OF TOTAL FUEL CELL NANOMATERIALS IN DOLLARS)
    • Figure 11 FUEL CELL BASIC PRINCIPLES
    • Figure 12 TRENDS IN GLOBAL MARKET FOR SOFC FUEL CELLS, 2006-2012 ($ MILLIONS)
    • Figure 13 ENERGY STORAGE NANOMATERIALS MARKET SHARES, 2012 (%)
    • Figure 14 ENERGY TRANSMISSION AND DISTRIBUTION NANOMATERIALS VOLUME MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS CONSUMPTION IN METRIC TONS)
    • Figure 15 ENERGY TRANSMISSION AND DISTRIBUTION NANOMATERIALS VALUE MARKET SHARES, 2006 VS. 2012 (PERCENT OF TOTAL NANOMATERIALS CONSUMPTION IN DOLLARS)
    • Figure 16 GLOBAL NANOCOMPOSITE CONSUMPTION IN AUTOMOTIVE APPLICATIONS, 2006 (PERCENT TOTAL CONSUMPTION BY VALUE)
Back to Top