Green catalysts for energy transformation and emission control

著者

書誌事項

Green catalysts for energy transformation and emission control

Virender K. Sharma, editor ... [et al.]

(ACS symposium series, 1184)

American Chemical Society , Dstributed in print by Oxford University Press, c2014

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注記

Includes bibliographical references and index

Other editors: Sue-min Chang, Ruey-an Doong, Chien-Hou Wu

収録内容

  • Greener and sustainable remediation using iron nanomaterials
  • Evaluation of hydrothermally carbonized hydrochar in improving energy security and mitigating greenhouse gas emissions
  • Synthesis of fluorogenic chemosensors for Hg2+ detection using naphthalimide derivatives
  • Visible light activated photocatalytic effect of iron-containing silicate glass -a review
  • Thickness dependent photocatalytic performance of nanocrystalline TiO2 thin films
  • Preparation of ZNo photocatalyst by plasma-enhanced vapor deposition and their photocatalytic activity
  • Is surface doping or bulk doping more beneficial to the photocatalytic activity of tio2
  • Fabrication of titanium dioxide nanotube array as a photocathode for hydrogen evolution
  • Efficient electricity generation and degradation of organic pollutants in wastewater using Ag-BiOI photoactivated fuel cell
  • Iron-enriched mineral oxides : a class of sustainable oxygenation catalysts for water decontamination
  • Degradation of trichloroethylene and methylene blue by a mixture of Fe0 and gamma-Fe2O3 : a review
  • Ferrate(VI): a green molecule in odorous gas treatment

内容説明・目次

内容説明

The development of alternative energy for transportation and the reduction of pollution emission from vehicles are the major challenge for environmental sustainability. Green catalysis is at the heart of industrial and environmental challenges on energy, health, and sustainable development. For example, the use of petroleum-based fuels produces air pollutants and catalysts are needed for reduction of the emission of gaseous pollutants as well as for carbon sequestration. Green catalytic processes are also used to produce biofuels and renewable energies. To meet these challenges, an interdisciplinary chemical approach from molecules to materials and processes from homogeneous, heterogeneous, and enzymatic catalysis are needed. This book addresses the most advanced research topics in the fabrication and application of environmentally friendly catalysts for energy conversion and emission control. The topics that are covered in this book include fabrication and characterization of environmentally benign catalysts, catalytic process for reduction, chemistry and catalysis of particulate and gaseous pollutants, water splitting for hydrogen production. This book contains 12 peer-reviewed chapters that cover various aspects of green catalysts with main emphasis on energy and depollution of air. After an overview of catalysis that defines green chemistry for synthesis and decontamination of a wide range of pollutants, chapters are dedicated to the approaches and applications used to improve energy security and mitigate greenhouse gas emissions, as well as the various derivatives.

目次

1. Greener and Sustainable Remediation Using Iron Nanomaterials 2. Evaluation of Hydrothermally Carbonized Hydrochar in Improving Energy Security and Mitigating Greenhouse Gas Emissions 3. Synthesis of Fluorogenic Chemosensors for Hg2+ Detection Using Naphthalimide Derivatives Mengshan Lee, Ya-Chi Jang, Walter Den, and Paiyu Kuo 4. Visible Light-Activated Photocatalytic Effect of Iron-Containing Silicate Glass - A Review 5. Thickness Dependent Photocatalytic Performance of Nanocrystalline TiO2 Thin Films 6. Preparation of ZnO Photocatalyst by Plasma-Enhanced Vapor Deposition and Their Photocatalytic Activity 7. Is Surface Doping or Bulk Doping More Beneficial to the Photocatalytic Activity of TiO2 8. Fabrication of Titanium Dioxide Nanotube Array as a Photocathode for Hydrogen Evolution 9. Efficient Electricity Generation and Degradation of Organic Pollutants in Wastewater Using Ag-BiOI Photoactivated Fuel Cell 10. Iron-Enriched Mineral Oxides: A Class of Sustainable Oxygenation Catalysts for Water Decontamination 11. Degradation of Trichloroethylene and Methylene Blue by a Mixture of Fe0 and y-Fe2O3 --A Review 12. Ferrate(VI): A Green Molecule in Odorous Gas Treatment

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