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Hydrogen production and remediation ...
~
Lichtfouse, Eric.
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Hydrogen production and remediation of carbon and pollutants
Record Type:
Electronic resources : Monograph/item
Title/Author:
Hydrogen production and remediation of carbon and pollutants/ edited by Eric Lichtfouse, Jan Schwarzbauer, Didier Robert.
other author:
Lichtfouse, Eric.
Published:
Cham :Springer International Publishing : : 2015.,
Description:
vii, 290 p. :ill. (some col.), digital ;24 cm.
[NT 15003449]:
1. Hydrogen production by homogeneous catalysis: alcohol acceptorless dehydrogenation -- 2. Photocatalytic reduction of carbon dioxide -- 3. Carbon sequestration in terrestrial ecosystems -- 4. Selenium phytoremediation by giant reed -- 5. Redox processes in water remediation technologies -- 6. Eco-friendly textile dyeing processes.
Contained By:
Springer eBooks
Subject:
Green chemistry. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-19375-5
ISBN:
9783319193755
Hydrogen production and remediation of carbon and pollutants
Hydrogen production and remediation of carbon and pollutants
[electronic resource] /edited by Eric Lichtfouse, Jan Schwarzbauer, Didier Robert. - Cham :Springer International Publishing :2015. - vii, 290 p. :ill. (some col.), digital ;24 cm. - Environmental chemistry for a sustainable world,v.62213-7114 ;. - Environmental chemistry for a sustainable world ;v.5..
1. Hydrogen production by homogeneous catalysis: alcohol acceptorless dehydrogenation -- 2. Photocatalytic reduction of carbon dioxide -- 3. Carbon sequestration in terrestrial ecosystems -- 4. Selenium phytoremediation by giant reed -- 5. Redox processes in water remediation technologies -- 6. Eco-friendly textile dyeing processes.
This book details first the chemistry of hydrogen production from biomass. Solutions to the CO2 issue are given in three chapters, which describe CO2 photo catalytic reduction, CO2 sequestration in terrestrial biomass, and plants as renewable fuels. Further chapters review the selenium cycle in ecosystems, advanced processes to treat water and ecological ways to dye textiles. Society growth during the last century has almost entirely relied on the carbon economy, which is the use of fossil fuels for energy and materials. The carbon economy has provided and will still provide many benefits. However, the increasing use of fossil fuels is partly responsible for the increase of atmospheric CO2 concentrations, and, in turn, global warming. There is therefore an urgent need for cleaner fuels such as hydrogen, as well as a need for a carbon neutral economy where each emitted CO2 molecule is fast sequestered in plants, algae, soils, sub soils and sediments.
ISBN: 9783319193755
Standard No.: 10.1007/978-3-319-19375-5doiSubjects--Topical Terms:
2041612
Green chemistry.
LC Class. No.: TP155.2.E58
Dewey Class. No.: 660
Hydrogen production and remediation of carbon and pollutants
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1. Hydrogen production by homogeneous catalysis: alcohol acceptorless dehydrogenation -- 2. Photocatalytic reduction of carbon dioxide -- 3. Carbon sequestration in terrestrial ecosystems -- 4. Selenium phytoremediation by giant reed -- 5. Redox processes in water remediation technologies -- 6. Eco-friendly textile dyeing processes.
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This book details first the chemistry of hydrogen production from biomass. Solutions to the CO2 issue are given in three chapters, which describe CO2 photo catalytic reduction, CO2 sequestration in terrestrial biomass, and plants as renewable fuels. Further chapters review the selenium cycle in ecosystems, advanced processes to treat water and ecological ways to dye textiles. Society growth during the last century has almost entirely relied on the carbon economy, which is the use of fossil fuels for energy and materials. The carbon economy has provided and will still provide many benefits. However, the increasing use of fossil fuels is partly responsible for the increase of atmospheric CO2 concentrations, and, in turn, global warming. There is therefore an urgent need for cleaner fuels such as hydrogen, as well as a need for a carbon neutral economy where each emitted CO2 molecule is fast sequestered in plants, algae, soils, sub soils and sediments.
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Earth and Environmental Science (Springer-11646)
based on 0 review(s)
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W9274915
電子資源
11.線上閱覽_V
電子書
EB TP155.2.E58 H995 2015
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