SlideShare a Scribd company logo
1 of 10
Electrochemical Remediation Technologies
  for polluted soils, sediments and groundwater
  Reddy, K.R. and Cameselle, C.



SECTIONS
I.    INTRODUCTION AND BASIC PRINCIPLES
II.   REMEDIATION OF HEAVY METALS AND OTHER
      INORGANIC POLLUTANTS
III. REMEDIATION OF ORGANIC POLLUTANTS
IV. REMEDIATION OF MIXED CONTAMINANTS
V. ELECTROKINETIC BARRIERS
VI. INTEGRATED (COUPLED) TECHNOLOGIES
VII. MATHEMATICAL MODELING
VIII. ECONOMIC AND REGULATORY
      CONSIDERATIONS
IX. FIELD APPLICATIONS AND PERFORMANCE
      ASSESSMENT
CONTRIBUTORS

Christopher J. Athmer (USA)         Reinout Lageman (The Netherlands)
Kitae Baek (Korea)                  You-Jin Lee (Korea)
Dave Bowman (USA)                   Keun-Young Lee (Korea)
Claudio Cameselle (Spain)           MyungHo Lee (Korea)           Krishna R. Reddy (USA)
Penny Carter (United Kingdom)       M.C. Lobo Bedmar(Spain)       Alexandra B. Ribeiro (Portugal)
Ha Ik Chung (Korea)                 Svenja T. Lohner (Germany)    José Miguel Rodríguez-Maroto (Spain)
Andrew Cundy (United Kingdom)       Xiaohua Lu (China)            B. Schrammel (Austria)
Giorgia De Gioannis (Italy)         Rod Lynch (United Kingdom)    Mika Sillanpaa (Finland)
Andrea Diamant (Austria)            Charles P. Marsh (USA)        Gregory J. Smith (USA)
Falk Doering (Germany)              M.J. Martínez-Iñigo (Spain)   R. Sri Ranjan (Canada)
Maria Elektorowicz (Canada)         Eduardo P. Mateus (Portugal)  Andreas Tiehm (Germany)
David Faulkner (United Kingdom)     Sean Morefield (USA)          M. Unterberger (Austria)
Henrik K. Hansen (Chile)            Aldo Muntoni (Italy)          Carlos Vereda-Alonso (Spain)
Anne Hansen (United Kingdom)        Anshy Oonnittan (Finland)     Chih-Huang Weng (Taiwan)
Sa V. Ho (USA)                      Lisbeth M. Ottosen (Denmark)  W. Wesner (Austria)
Laurence Hopkinson (United Kingdom) Prof. Sibel Pamukcu (USA)     Lukas Y. Wick (Germany)
Simon A. Jackman (United Kingdom) Randy A. Parker (USA)           J. Kenneth Wittle (USA)
Pernille E. Jensen (Denmark)        A. Pérez-Sanz (Spain)         Jung-Seok Yang (Korea)
Ahmet Karagunduz (Turkey)           A. Plaza-Benito (Spain)       Gordon C. C. Yang (Taiwan)
David A. Kessler (USA)              Alessandra Polettini (Italy)  Ji-Won Yang (Korea)
Kyoung-Woong Kim (Korea)            Ross Pollock (United Kingdom) Albert T. Yeung (China)
Soon-Oh Kim (Korea)                 Raffaella Pomi (Italy)        Songhu Yuan (China)
Vladimir A. Korolev (Russia)        Wiebe Pool (The Netherlands) Lawrence M. Zanko (USA)
Table of Contents

SECTION I: INTRODUCTION AND BASIC PRINCIPLES

Chapter 1. Overview of electrochemical remediation technologies
    Krishna R. Reddy, Claudio Cameselle
Chapter 2. Electrochemical Transport and Transformations
    Sibel Pamukcu
Chapter 3. Geochemical Processes Affecting Electrochemical Remediation
    Albert T. Yeung
Table of Contents

SECTION II: REMEDIATION OF HEAVY METALS AND OTHER INORGANIC POLLUTANTS

Chapter 4. Electrokinetic removal of heavy metals
    Lisbeth M. Ottosen, Henrik K. Hansen, Pernille E. Jensen
Chapter 5. Electrokinetic Removal of Radionuclides
    Korolev V.A.
Chapter 6. Electrokinetic Removal of Nitrate and Fluoride
    Kitae Baek, Jung-Seok Yang
Chapter 7. Electrokinetic Treatment of Contaminated Marine Sediments
    Giorgia De Gioannis, Aldo Muntoni, Alessandra Polettini, Raffaella Pomi
Chapter 8. Electrokinetic Stabilization of Chromium (VI) Contaminated Soils
    Laurence Hopkinson, Andrew Cundy, David Faulkner, Anne Hansen, Ross Pollock
Table of Contents

SECTION III: REMEDIATION OF ORGANIC POLLUTANTS

Chapter 9. Electrokinetic Removal of PAHs
    Ji-Won Yang You-Jin Lee
Chapter 10. Electrokinetic removal of chlorinated organic compounds
    Xiaohua Lu, Songhu Yuan
Chapter 11. Elcetrokinetic transport of chlorinated organic pesticides
    Ahmet Karagunduz
Chapter 12. Electrokinetic removal of herbicides from soils
    Alexandra B. Ribeiro, Eduardo P. Mateus
Chapter 13. Electrokinetic Removal of Energetic Compounds
    David A. Kessler, Charles P. Marsh, Sean Morefield
Table of Contents

SECTION IV: REMEDIATION OF MIXED CONTAMINANTS

Chapter 14. Electrokinetic Remediation of Mixed Metal Contaminants
    Kyoung-Woong Kim, Keun-Young Lee, Soon-Oh Kim
Chapter 15. Electrokinetic Remediation of Mixed Metals and Organic Contaminants
    Maria Elektorowicz

SECTION V: ELECTROKINETIC BARRIERS

Chapter 16. Electrokinetic barriers for preventing groundwater pollution
    Rod Lynch
Chapter 17. Electrokinetic Biofences
    Reinout Lageman, Wiebe Pool
Table of Contents

SECTION VI: INTEGRATED (COUPLED) TECHNOLOGIES

Chapter 18. Coupling Electrokinetics to the Bioremediation of Organic Contaminants: A
Microbial Perspective on Fundamental Interactions
     Lukas Y. Wick
Chapter 19. Coupled electrokinetic – bioremediation: Applied Aspects
     Svenja T. Lohner, Andreas Tiehm, Simon A. Jackman, Penny Carter
Chapter 20. Influence of Coupled Electrokinetic-Phytoremediation on soil remediation.
     M.C. Lobo Bedmar, A. Pérez-Sanz, M.J. Martínez-Iñigo, A. Plaza Benito
Chapter 21. Coupled electrokinetic-chemical oxidation/reduction
     Gordon C. C. Yang
Chapter 22. Electro Synthesis of Oxidants and Their Electrokinetic Distribution
     Wolfgang Wesner, Andrea Diamant, B. Schrammel, M. Unterberger
Chapter 23. Coupled Electrokinetic-Permeable Reactive Barriers
     Chih-Huang Weng
Chapter 24. Coupled Electrokinetics – Thermal Desorption
     Gregory J. Smith
Table of Contents

SECTION VII: MATHEMATICAL MODELING

Chapter 25. Electrokinetic Modeling of Heavy Metals
    José Miguel Rodríguez-Maroto, Carlos Vereda-Alonso
Chapter 26. Electrokinetic Barriers: Modeling and Validation
    R. Sri Ranjan

SECTION VIII: ECONOMIC AND REGULATORY CONSIDERATIONS

Chapter 27. Cost Estimates for Electrokinetic Remediation
    Christopher J. Athmer
Chapter 28. Regulatory aspects of implementing electrokinetic remediation
    Randy A. Parker
Table of Contents

SECTION IX: FIELD APPLICATIONS AND PERFORMANCE ASSESSMENT

Chapter 29. Field Applications of Electrokinetic Remediation of Soils Contaminated with Heavy
Metals
    Anshy Oonnittan, Mika Sillanpaa, Claudio Cameselle, Krishna R. Reddy
Chapter 30. Field Studies: Organics-Contaminated Soil Remediation with Lasagna Technology
    Christopher J. Athmer, Sa V. Ho
Chapter 31. Coupled electrokinetic-PRB for remediation of metals in groundwater
    Ha Ik Chung, MyungHo Lee
Chapter 32. Field Studies on Sediment Remediation
    J. Kenneth Wittle, Sibel Pamukcu, Dave Bowman, Lawrence M. Zanko, Falk Doering
Chapter 33. Experiences with Field Applications of Electrokinetic Remediation
    Reinout Lageman, Wiebe Pool
Table of Contents

SECTION IX: FIELD APPLICATIONS AND PERFORMANCE ASSESSMENT

Chapter 29. Field Applications of Electrokinetic Remediation of Soils Contaminated with Heavy
Metals
    Anshy Oonnittan, Mika Sillanpaa, Claudio Cameselle, Krishna R. Reddy
Chapter 30. Field Studies: Organics-Contaminated Soil Remediation with Lasagna Technology
    Christopher J. Athmer, Sa V. Ho
Chapter 31. Coupled electrokinetic-PRB for remediation of metals in groundwater
    Ha Ik Chung, MyungHo Lee
Chapter 32. Field Studies on Sediment Remediation
    J. Kenneth Wittle, Sibel Pamukcu, Dave Bowman, Lawrence M. Zanko, Falk Doering
Chapter 33. Experiences with Field Applications of Electrokinetic Remediation
    Reinout Lageman, Wiebe Pool

More Related Content

What's hot

Role of photocatalysis in renewable energy.
Role of photocatalysis in renewable energy.Role of photocatalysis in renewable energy.
Role of photocatalysis in renewable energy.Kiran Qamar Kayani
 
Photocatalyst Principle and Application
Photocatalyst Principle and ApplicationPhotocatalyst Principle and Application
Photocatalyst Principle and ApplicationFajar Budi Laksono
 
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...ijtsrd
 
RECOVERY OF METALS FROM EFFLUENT
RECOVERY OF METALS FROM EFFLUENTRECOVERY OF METALS FROM EFFLUENT
RECOVERY OF METALS FROM EFFLUENTArvind Singh Heer
 
Nanophotocatalyst in organic transformation
Nanophotocatalyst in organic transformationNanophotocatalyst in organic transformation
Nanophotocatalyst in organic transformationAshwani Dalal
 
Visible light solar photocatalytic degradation of pulp and paper wastewater u...
Visible light solar photocatalytic degradation of pulp and paper wastewater u...Visible light solar photocatalytic degradation of pulp and paper wastewater u...
Visible light solar photocatalytic degradation of pulp and paper wastewater u...eSAT Journals
 
Removal of heavy metals from wastewater by carbon nanotubes
Removal of heavy metals from wastewater by carbon nanotubesRemoval of heavy metals from wastewater by carbon nanotubes
Removal of heavy metals from wastewater by carbon nanotubesAshish Gadhave
 
Extraction of Heavy Metals From Industrial Waste Water
Extraction of Heavy Metals From Industrial Waste WaterExtraction of Heavy Metals From Industrial Waste Water
Extraction of Heavy Metals From Industrial Waste WaterHashim Khan
 
Solar Water Splitting Presentation
Solar Water Splitting PresentationSolar Water Splitting Presentation
Solar Water Splitting PresentationMichael Davis
 
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...Sunlight-driven water-splitting using two dimensional carbon based semiconduc...
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...Pawan Kumar
 
On what we know and what we don’t know about the photocatalytic conversion of...
On what we know and what we don’t know about the photocatalytic conversion of...On what we know and what we don’t know about the photocatalytic conversion of...
On what we know and what we don’t know about the photocatalytic conversion of...Hariprasad Narayanan
 
degradation of pollution and photocatalysis
degradation of pollution and photocatalysisdegradation of pollution and photocatalysis
degradation of pollution and photocatalysisPraveen Vaidya
 
List of publications (o)
List of publications (o)List of publications (o)
List of publications (o)Dr I. Ahmed
 
Photocatalytic reduction of CO2
Photocatalytic reduction of CO2Photocatalytic reduction of CO2
Photocatalytic reduction of CO2APRATIM KHANDELWAL
 
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...Engineers Australia
 
Multiple adsorption of heavy metal ions in aqueous solution using activated c...
Multiple adsorption of heavy metal ions in aqueous solution using activated c...Multiple adsorption of heavy metal ions in aqueous solution using activated c...
Multiple adsorption of heavy metal ions in aqueous solution using activated c...eSAT Journals
 
Solar photocatalytic process & solar photocatalytic reactors
Solar photocatalytic process & solar photocatalytic reactorsSolar photocatalytic process & solar photocatalytic reactors
Solar photocatalytic process & solar photocatalytic reactorsMuhammad Mudassir
 
Comparative study of rates of biosorption for selected single and mixed metal...
Comparative study of rates of biosorption for selected single and mixed metal...Comparative study of rates of biosorption for selected single and mixed metal...
Comparative study of rates of biosorption for selected single and mixed metal...Alexander Decker
 

What's hot (20)

Role of photocatalysis in renewable energy.
Role of photocatalysis in renewable energy.Role of photocatalysis in renewable energy.
Role of photocatalysis in renewable energy.
 
Photocatalyst Principle and Application
Photocatalyst Principle and ApplicationPhotocatalyst Principle and Application
Photocatalyst Principle and Application
 
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...
Biosorption of Copper (II) Ions by Eclipta Alba Leaf Powder from Aqueous Solu...
 
RECOVERY OF METALS FROM EFFLUENT
RECOVERY OF METALS FROM EFFLUENTRECOVERY OF METALS FROM EFFLUENT
RECOVERY OF METALS FROM EFFLUENT
 
Nanophotocatalyst in organic transformation
Nanophotocatalyst in organic transformationNanophotocatalyst in organic transformation
Nanophotocatalyst in organic transformation
 
Nano in Air
Nano in AirNano in Air
Nano in Air
 
Visible light solar photocatalytic degradation of pulp and paper wastewater u...
Visible light solar photocatalytic degradation of pulp and paper wastewater u...Visible light solar photocatalytic degradation of pulp and paper wastewater u...
Visible light solar photocatalytic degradation of pulp and paper wastewater u...
 
Removal of heavy metals from wastewater by carbon nanotubes
Removal of heavy metals from wastewater by carbon nanotubesRemoval of heavy metals from wastewater by carbon nanotubes
Removal of heavy metals from wastewater by carbon nanotubes
 
Extraction of Heavy Metals From Industrial Waste Water
Extraction of Heavy Metals From Industrial Waste WaterExtraction of Heavy Metals From Industrial Waste Water
Extraction of Heavy Metals From Industrial Waste Water
 
Solar Water Splitting Presentation
Solar Water Splitting PresentationSolar Water Splitting Presentation
Solar Water Splitting Presentation
 
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...Sunlight-driven water-splitting using two dimensional carbon based semiconduc...
Sunlight-driven water-splitting using two dimensional carbon based semiconduc...
 
On what we know and what we don’t know about the photocatalytic conversion of...
On what we know and what we don’t know about the photocatalytic conversion of...On what we know and what we don’t know about the photocatalytic conversion of...
On what we know and what we don’t know about the photocatalytic conversion of...
 
degradation of pollution and photocatalysis
degradation of pollution and photocatalysisdegradation of pollution and photocatalysis
degradation of pollution and photocatalysis
 
List of publications (o)
List of publications (o)List of publications (o)
List of publications (o)
 
14 ch60r29 hydrogen production
14 ch60r29 hydrogen production14 ch60r29 hydrogen production
14 ch60r29 hydrogen production
 
Photocatalytic reduction of CO2
Photocatalytic reduction of CO2Photocatalytic reduction of CO2
Photocatalytic reduction of CO2
 
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...
ICWES15 - Preparation of Mesoporous Titania Photocatalyst for Water Treatment...
 
Multiple adsorption of heavy metal ions in aqueous solution using activated c...
Multiple adsorption of heavy metal ions in aqueous solution using activated c...Multiple adsorption of heavy metal ions in aqueous solution using activated c...
Multiple adsorption of heavy metal ions in aqueous solution using activated c...
 
Solar photocatalytic process & solar photocatalytic reactors
Solar photocatalytic process & solar photocatalytic reactorsSolar photocatalytic process & solar photocatalytic reactors
Solar photocatalytic process & solar photocatalytic reactors
 
Comparative study of rates of biosorption for selected single and mixed metal...
Comparative study of rates of biosorption for selected single and mixed metal...Comparative study of rates of biosorption for selected single and mixed metal...
Comparative study of rates of biosorption for selected single and mixed metal...
 

Similar to Reddy and cameselle book

Molecular Mean Field Theory of ions in Bulk and Channels
Molecular Mean Field Theory of ions in Bulk and ChannelsMolecular Mean Field Theory of ions in Bulk and Channels
Molecular Mean Field Theory of ions in Bulk and ChannelsBob Eisenberg
 
Bowdoin seminar 2/3/2017
Bowdoin seminar 2/3/2017Bowdoin seminar 2/3/2017
Bowdoin seminar 2/3/2017Alex Peroff
 
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...FabianArboleda5
 
[Allen j. bard]_electroanalytical_chemistry
[Allen j. bard]_electroanalytical_chemistry[Allen j. bard]_electroanalytical_chemistry
[Allen j. bard]_electroanalytical_chemistryThuy Dung Pham
 
Chris Dube_Publications_Conference Proceedings_Patents
Chris Dube_Publications_Conference Proceedings_PatentsChris Dube_Publications_Conference Proceedings_Patents
Chris Dube_Publications_Conference Proceedings_PatentsChris Dub
 
Remote Cis Syn Thymine [2+2] Dimers
Remote Cis Syn Thymine [2+2] DimersRemote Cis Syn Thymine [2+2] Dimers
Remote Cis Syn Thymine [2+2] Dimersadotse
 
Dep. of chemistry elective list
Dep. of chemistry elective listDep. of chemistry elective list
Dep. of chemistry elective listAbhirup Bhadra
 
B. Zhao paper2-JACS 2005.water soluble SWNT
B. Zhao paper2-JACS 2005.water soluble SWNTB. Zhao paper2-JACS 2005.water soluble SWNT
B. Zhao paper2-JACS 2005.water soluble SWNTbinzhao2004
 
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar Fuels
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar FuelsBicrystalline Titania Photocatalyst for Reduction of CO2 to Solar Fuels
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar FuelsA'Lester Allen
 
Presentation List_Kyung Min
Presentation List_Kyung MinPresentation List_Kyung Min
Presentation List_Kyung MinKyung Min
 
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33.
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33. Table of Contents for PNAS August 19, 2014 vol. 111 no. 33.
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33. Benjamin Chang-Kwon Chung
 
Renewable energy
Renewable energyRenewable energy
Renewable energy9717924029
 
Ion beam irradiation of polycarbonate_TEST
Ion beam irradiation of polycarbonate_TESTIon beam irradiation of polycarbonate_TEST
Ion beam irradiation of polycarbonate_TESTMircea Chipara
 
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...paperpublications3
 

Similar to Reddy and cameselle book (20)

Molecular Mean Field Theory of ions in Bulk and Channels
Molecular Mean Field Theory of ions in Bulk and ChannelsMolecular Mean Field Theory of ions in Bulk and Channels
Molecular Mean Field Theory of ions in Bulk and Channels
 
Bowdoin seminar 2/3/2017
Bowdoin seminar 2/3/2017Bowdoin seminar 2/3/2017
Bowdoin seminar 2/3/2017
 
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...
(Chemical Industries) Lilianna Z. Pillon - Interfacial Properties of Petroleu...
 
[Allen j. bard]_electroanalytical_chemistry
[Allen j. bard]_electroanalytical_chemistry[Allen j. bard]_electroanalytical_chemistry
[Allen j. bard]_electroanalytical_chemistry
 
Chris Dube_Publications_Conference Proceedings_Patents
Chris Dube_Publications_Conference Proceedings_PatentsChris Dube_Publications_Conference Proceedings_Patents
Chris Dube_Publications_Conference Proceedings_Patents
 
LECTURE 3.pptx
LECTURE 3.pptxLECTURE 3.pptx
LECTURE 3.pptx
 
Remote Cis Syn Thymine [2+2] Dimers
Remote Cis Syn Thymine [2+2] DimersRemote Cis Syn Thymine [2+2] Dimers
Remote Cis Syn Thymine [2+2] Dimers
 
Physics bibliography
Physics bibliographyPhysics bibliography
Physics bibliography
 
Mof´s. By Nelson Giovanny Rincon Silva.
Mof´s. By Nelson Giovanny Rincon Silva. Mof´s. By Nelson Giovanny Rincon Silva.
Mof´s. By Nelson Giovanny Rincon Silva.
 
Dep. of chemistry elective list
Dep. of chemistry elective listDep. of chemistry elective list
Dep. of chemistry elective list
 
B. Zhao paper2-JACS 2005.water soluble SWNT
B. Zhao paper2-JACS 2005.water soluble SWNTB. Zhao paper2-JACS 2005.water soluble SWNT
B. Zhao paper2-JACS 2005.water soluble SWNT
 
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar Fuels
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar FuelsBicrystalline Titania Photocatalyst for Reduction of CO2 to Solar Fuels
Bicrystalline Titania Photocatalyst for Reduction of CO2 to Solar Fuels
 
Nanotech.pdf
Nanotech.pdfNanotech.pdf
Nanotech.pdf
 
Presentation List_Kyung Min
Presentation List_Kyung MinPresentation List_Kyung Min
Presentation List_Kyung Min
 
MPhilChemistrySyllabus (1).pdf
MPhilChemistrySyllabus (1).pdfMPhilChemistrySyllabus (1).pdf
MPhilChemistrySyllabus (1).pdf
 
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33.
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33. Table of Contents for PNAS August 19, 2014 vol. 111 no. 33.
Table of Contents for PNAS August 19, 2014 vol. 111 no. 33.
 
Renewable energy
Renewable energyRenewable energy
Renewable energy
 
Ion beam irradiation of polycarbonate_TEST
Ion beam irradiation of polycarbonate_TESTIon beam irradiation of polycarbonate_TEST
Ion beam irradiation of polycarbonate_TEST
 
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...
Electrochemical Behavior of L-Tyrosine at Poly (Dicyclomine Hydrochloride) Fi...
 
Lunar core dynamo
Lunar core dynamoLunar core dynamo
Lunar core dynamo
 

Reddy and cameselle book

  • 1. Electrochemical Remediation Technologies for polluted soils, sediments and groundwater Reddy, K.R. and Cameselle, C. SECTIONS I. INTRODUCTION AND BASIC PRINCIPLES II. REMEDIATION OF HEAVY METALS AND OTHER INORGANIC POLLUTANTS III. REMEDIATION OF ORGANIC POLLUTANTS IV. REMEDIATION OF MIXED CONTAMINANTS V. ELECTROKINETIC BARRIERS VI. INTEGRATED (COUPLED) TECHNOLOGIES VII. MATHEMATICAL MODELING VIII. ECONOMIC AND REGULATORY CONSIDERATIONS IX. FIELD APPLICATIONS AND PERFORMANCE ASSESSMENT
  • 2. CONTRIBUTORS Christopher J. Athmer (USA) Reinout Lageman (The Netherlands) Kitae Baek (Korea) You-Jin Lee (Korea) Dave Bowman (USA) Keun-Young Lee (Korea) Claudio Cameselle (Spain) MyungHo Lee (Korea) Krishna R. Reddy (USA) Penny Carter (United Kingdom) M.C. Lobo Bedmar(Spain) Alexandra B. Ribeiro (Portugal) Ha Ik Chung (Korea) Svenja T. Lohner (Germany) José Miguel Rodríguez-Maroto (Spain) Andrew Cundy (United Kingdom) Xiaohua Lu (China) B. Schrammel (Austria) Giorgia De Gioannis (Italy) Rod Lynch (United Kingdom) Mika Sillanpaa (Finland) Andrea Diamant (Austria) Charles P. Marsh (USA) Gregory J. Smith (USA) Falk Doering (Germany) M.J. Martínez-Iñigo (Spain) R. Sri Ranjan (Canada) Maria Elektorowicz (Canada) Eduardo P. Mateus (Portugal) Andreas Tiehm (Germany) David Faulkner (United Kingdom) Sean Morefield (USA) M. Unterberger (Austria) Henrik K. Hansen (Chile) Aldo Muntoni (Italy) Carlos Vereda-Alonso (Spain) Anne Hansen (United Kingdom) Anshy Oonnittan (Finland) Chih-Huang Weng (Taiwan) Sa V. Ho (USA) Lisbeth M. Ottosen (Denmark) W. Wesner (Austria) Laurence Hopkinson (United Kingdom) Prof. Sibel Pamukcu (USA) Lukas Y. Wick (Germany) Simon A. Jackman (United Kingdom) Randy A. Parker (USA) J. Kenneth Wittle (USA) Pernille E. Jensen (Denmark) A. Pérez-Sanz (Spain) Jung-Seok Yang (Korea) Ahmet Karagunduz (Turkey) A. Plaza-Benito (Spain) Gordon C. C. Yang (Taiwan) David A. Kessler (USA) Alessandra Polettini (Italy) Ji-Won Yang (Korea) Kyoung-Woong Kim (Korea) Ross Pollock (United Kingdom) Albert T. Yeung (China) Soon-Oh Kim (Korea) Raffaella Pomi (Italy) Songhu Yuan (China) Vladimir A. Korolev (Russia) Wiebe Pool (The Netherlands) Lawrence M. Zanko (USA)
  • 3. Table of Contents SECTION I: INTRODUCTION AND BASIC PRINCIPLES Chapter 1. Overview of electrochemical remediation technologies Krishna R. Reddy, Claudio Cameselle Chapter 2. Electrochemical Transport and Transformations Sibel Pamukcu Chapter 3. Geochemical Processes Affecting Electrochemical Remediation Albert T. Yeung
  • 4. Table of Contents SECTION II: REMEDIATION OF HEAVY METALS AND OTHER INORGANIC POLLUTANTS Chapter 4. Electrokinetic removal of heavy metals Lisbeth M. Ottosen, Henrik K. Hansen, Pernille E. Jensen Chapter 5. Electrokinetic Removal of Radionuclides Korolev V.A. Chapter 6. Electrokinetic Removal of Nitrate and Fluoride Kitae Baek, Jung-Seok Yang Chapter 7. Electrokinetic Treatment of Contaminated Marine Sediments Giorgia De Gioannis, Aldo Muntoni, Alessandra Polettini, Raffaella Pomi Chapter 8. Electrokinetic Stabilization of Chromium (VI) Contaminated Soils Laurence Hopkinson, Andrew Cundy, David Faulkner, Anne Hansen, Ross Pollock
  • 5. Table of Contents SECTION III: REMEDIATION OF ORGANIC POLLUTANTS Chapter 9. Electrokinetic Removal of PAHs Ji-Won Yang You-Jin Lee Chapter 10. Electrokinetic removal of chlorinated organic compounds Xiaohua Lu, Songhu Yuan Chapter 11. Elcetrokinetic transport of chlorinated organic pesticides Ahmet Karagunduz Chapter 12. Electrokinetic removal of herbicides from soils Alexandra B. Ribeiro, Eduardo P. Mateus Chapter 13. Electrokinetic Removal of Energetic Compounds David A. Kessler, Charles P. Marsh, Sean Morefield
  • 6. Table of Contents SECTION IV: REMEDIATION OF MIXED CONTAMINANTS Chapter 14. Electrokinetic Remediation of Mixed Metal Contaminants Kyoung-Woong Kim, Keun-Young Lee, Soon-Oh Kim Chapter 15. Electrokinetic Remediation of Mixed Metals and Organic Contaminants Maria Elektorowicz SECTION V: ELECTROKINETIC BARRIERS Chapter 16. Electrokinetic barriers for preventing groundwater pollution Rod Lynch Chapter 17. Electrokinetic Biofences Reinout Lageman, Wiebe Pool
  • 7. Table of Contents SECTION VI: INTEGRATED (COUPLED) TECHNOLOGIES Chapter 18. Coupling Electrokinetics to the Bioremediation of Organic Contaminants: A Microbial Perspective on Fundamental Interactions Lukas Y. Wick Chapter 19. Coupled electrokinetic – bioremediation: Applied Aspects Svenja T. Lohner, Andreas Tiehm, Simon A. Jackman, Penny Carter Chapter 20. Influence of Coupled Electrokinetic-Phytoremediation on soil remediation. M.C. Lobo Bedmar, A. Pérez-Sanz, M.J. Martínez-Iñigo, A. Plaza Benito Chapter 21. Coupled electrokinetic-chemical oxidation/reduction Gordon C. C. Yang Chapter 22. Electro Synthesis of Oxidants and Their Electrokinetic Distribution Wolfgang Wesner, Andrea Diamant, B. Schrammel, M. Unterberger Chapter 23. Coupled Electrokinetic-Permeable Reactive Barriers Chih-Huang Weng Chapter 24. Coupled Electrokinetics – Thermal Desorption Gregory J. Smith
  • 8. Table of Contents SECTION VII: MATHEMATICAL MODELING Chapter 25. Electrokinetic Modeling of Heavy Metals José Miguel Rodríguez-Maroto, Carlos Vereda-Alonso Chapter 26. Electrokinetic Barriers: Modeling and Validation R. Sri Ranjan SECTION VIII: ECONOMIC AND REGULATORY CONSIDERATIONS Chapter 27. Cost Estimates for Electrokinetic Remediation Christopher J. Athmer Chapter 28. Regulatory aspects of implementing electrokinetic remediation Randy A. Parker
  • 9. Table of Contents SECTION IX: FIELD APPLICATIONS AND PERFORMANCE ASSESSMENT Chapter 29. Field Applications of Electrokinetic Remediation of Soils Contaminated with Heavy Metals Anshy Oonnittan, Mika Sillanpaa, Claudio Cameselle, Krishna R. Reddy Chapter 30. Field Studies: Organics-Contaminated Soil Remediation with Lasagna Technology Christopher J. Athmer, Sa V. Ho Chapter 31. Coupled electrokinetic-PRB for remediation of metals in groundwater Ha Ik Chung, MyungHo Lee Chapter 32. Field Studies on Sediment Remediation J. Kenneth Wittle, Sibel Pamukcu, Dave Bowman, Lawrence M. Zanko, Falk Doering Chapter 33. Experiences with Field Applications of Electrokinetic Remediation Reinout Lageman, Wiebe Pool
  • 10. Table of Contents SECTION IX: FIELD APPLICATIONS AND PERFORMANCE ASSESSMENT Chapter 29. Field Applications of Electrokinetic Remediation of Soils Contaminated with Heavy Metals Anshy Oonnittan, Mika Sillanpaa, Claudio Cameselle, Krishna R. Reddy Chapter 30. Field Studies: Organics-Contaminated Soil Remediation with Lasagna Technology Christopher J. Athmer, Sa V. Ho Chapter 31. Coupled electrokinetic-PRB for remediation of metals in groundwater Ha Ik Chung, MyungHo Lee Chapter 32. Field Studies on Sediment Remediation J. Kenneth Wittle, Sibel Pamukcu, Dave Bowman, Lawrence M. Zanko, Falk Doering Chapter 33. Experiences with Field Applications of Electrokinetic Remediation Reinout Lageman, Wiebe Pool