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Electrokinetics across disciplines a...
~
Couto, Nazare.
Electrokinetics across disciplines and continentsnew strategies for sustainable development /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Electrokinetics across disciplines and continentsedited by Alexandra B. Ribeiro, Eduardo P. Mateus, Nazare Couto.
Reminder of title:
new strategies for sustainable development /
other author:
Ribeiro, Alexandra B.
Published:
Cham :Springer International Publishing :2016.
Description:
xv, 469 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Electrokinetics.
Online resource:
http://dx.doi.org/10.1007/978-3-319-20179-5
ISBN:
9783319201795$q(electronic bk.)
Electrokinetics across disciplines and continentsnew strategies for sustainable development /
Electrokinetics across disciplines and continents
new strategies for sustainable development /[electronic resource] :edited by Alexandra B. Ribeiro, Eduardo P. Mateus, Nazare Couto. - Cham :Springer International Publishing :2016. - xv, 469 p. :ill., digital ;24 cm.
Part I Introduction and Overview of the Process -- 1. Overview of the Eletrokinetic Process -- 2. Electrochemical Remediation Technologies -- Part II Remediation of Contaminants and Recovery of Secondary Resources with Socio-Economical Value -- 3. Electrochemical Process for Phosphorus Recovery from Wastewater Treatment Plants -- 4. Electrochemical Process for Phosphorus Recovery from Incinerated Sewage Sludge -- 5. Electrochemical Process for Phosphorus Recovery from Water Treatment Plants -- 6. Electrokinetic Remediation Applied to Different Porous Matrices: Mine Tailings, Soils, Sediments, Ashes, Treated Wood Waste -- 7. Advanced Analytical Techniques for Matrix Characterization and Contaminants Monitorization -- Part III Conservation of Cultural Heritage and Use in Construction Material -- 8. Restoration of salt-damaged traditional ceramic tiles9. Construction and Road Materials Using Ashes// Upgrading of Bio-Ashes as Admixture In Cement Based Materials -- Part IV Mathematical Modeling of the Electrokinetic Process -- 10. Theoretical aspects of mathematical modeling applied to the electrokinetic process -- 11. Electrokinetic Modelling of Organic Compounds -- Part V Coupling Electrokinetic Process with Other Technologies to Enhance Performance and Sustainability -- 12. Enhanced Technologies Applied with Electrokinetic Remediation -- 13. Nanoremediation Coupled to the Electrochemical Process for PCB Removal from Soils -- 14. Phytoremediation Coupled to the Electrochemical Process for Contaminants Removal.
The socio-economic activities due to world development are promoting increasing pressures on land, creating competition and conflicts, resulting in suboptimal use of resources. There is a need to find new strategies for sustainable development that link social and economic progress with environmental protection and enhancement. Electrokinetic transport processes (EK) uses a low-level direct current as a "cleaning agent". EK has been applied to the remediation of polluted soils and other contaminated matrices. It also shows a great potential to be used in different fields, as in saline soil restoration, nutrients recovery from wastes or repair and maintenance of building structures. EK introduces a new integrated approach aiming at sustainable development and to support waste strategies with worldwide interest. EK can also be coupled with phytoremediation and integrated with nanotechnology, enlarging the scope of its application. The use of EK in the recovery of secondary resources, remediation, and conservation, is a multidisciplinary and novel approach. EK opens up new technical possibilities for waste minimization, through upgrading of particulate waste products, and the recovery of secondary resources for industrial, agricultural or social use.
ISBN: 9783319201795$q(electronic bk.)
Standard No.: 10.1007/978-3-319-20179-5doiSubjects--Topical Terms:
378203
Electrokinetics.
LC Class. No.: QC625
Dewey Class. No.: 530.417
Electrokinetics across disciplines and continentsnew strategies for sustainable development /
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Part I Introduction and Overview of the Process -- 1. Overview of the Eletrokinetic Process -- 2. Electrochemical Remediation Technologies -- Part II Remediation of Contaminants and Recovery of Secondary Resources with Socio-Economical Value -- 3. Electrochemical Process for Phosphorus Recovery from Wastewater Treatment Plants -- 4. Electrochemical Process for Phosphorus Recovery from Incinerated Sewage Sludge -- 5. Electrochemical Process for Phosphorus Recovery from Water Treatment Plants -- 6. Electrokinetic Remediation Applied to Different Porous Matrices: Mine Tailings, Soils, Sediments, Ashes, Treated Wood Waste -- 7. Advanced Analytical Techniques for Matrix Characterization and Contaminants Monitorization -- Part III Conservation of Cultural Heritage and Use in Construction Material -- 8. Restoration of salt-damaged traditional ceramic tiles9. Construction and Road Materials Using Ashes// Upgrading of Bio-Ashes as Admixture In Cement Based Materials -- Part IV Mathematical Modeling of the Electrokinetic Process -- 10. Theoretical aspects of mathematical modeling applied to the electrokinetic process -- 11. Electrokinetic Modelling of Organic Compounds -- Part V Coupling Electrokinetic Process with Other Technologies to Enhance Performance and Sustainability -- 12. Enhanced Technologies Applied with Electrokinetic Remediation -- 13. Nanoremediation Coupled to the Electrochemical Process for PCB Removal from Soils -- 14. Phytoremediation Coupled to the Electrochemical Process for Contaminants Removal.
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The socio-economic activities due to world development are promoting increasing pressures on land, creating competition and conflicts, resulting in suboptimal use of resources. There is a need to find new strategies for sustainable development that link social and economic progress with environmental protection and enhancement. Electrokinetic transport processes (EK) uses a low-level direct current as a "cleaning agent". EK has been applied to the remediation of polluted soils and other contaminated matrices. It also shows a great potential to be used in different fields, as in saline soil restoration, nutrients recovery from wastes or repair and maintenance of building structures. EK introduces a new integrated approach aiming at sustainable development and to support waste strategies with worldwide interest. EK can also be coupled with phytoremediation and integrated with nanotechnology, enlarging the scope of its application. The use of EK in the recovery of secondary resources, remediation, and conservation, is a multidisciplinary and novel approach. EK opens up new technical possibilities for waste minimization, through upgrading of particulate waste products, and the recovery of secondary resources for industrial, agricultural or social use.
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based on 0 review(s)
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電子館藏
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000000120893
電子館藏
1圖書
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EB QC625 E38 2016
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1 records • Pages 1 •
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http://dx.doi.org/10.1007/978-3-319-20179-5
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