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Ecological technologies for industrial wastewater management : petrochemicals, metals, semi-conductors, and paper industries / edited by Victor M. Monsalvo, PhD.

Contributor(s): Material type: TextTextPublisher: Oakville, ON : Apple Academic Press, Inc, [2016]Copyright date: ©20Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781771882866
  • 1771882867
Subject(s): Genre/Form: Additional physical formats: Print version:: Ecological Technologies for Industrial Wastewater Management : Petrochemicals, Metals, Semi-Conductors, and Paper Industries.DDC classification:
  • 628.1/683 23
LOC classification:
  • TD220.2
Online resources:
Contents:
FRONT COVER; ABOUT THE EDITOR; CONTENTS; ACKNOWLEDGMENT AND HOW TO CITE; LIST OF CONTRIBUTORS; INTRODUCTION; PART I -- INDUSTRIAL PETROCHEMICALS; CHAPTER 1 -- Anaerobic Treatment of Wastewater from Used Industrial Oil Recovery; CHAPTER 2 -- LDHs as Adsorbents of Phenol and Their Environmental Applications; CHAPTER 3 -- Biodegradability of Oily Wastewater Using Rotating Biological Contactor Combined with an External Membrane; PART II -- METAL INDUSTRIES; CHAPTER 4 -- Removal of Vanadium(III) and Molybdenum(V) from Wastewater Using Posidonia oceanica (Tracheophyta) Biomass.
CHAPTER 5 -- The Effective Electrolytic Recovery of Dilute Copper from Industrial WastewaterCHAPTER 6 -- Intracellular Biosynthesis and Removal of Copper Nanoparticles by Dead Biomass of Yeast Isolated from the Wastewater of a Mine in the Brazilian Amazonia; PART III -- SEMI-CONDUCTOR INDUSTRY; CHAPTER 7 -- Application of Ozone Related Processes to Mineralize Tetramethyl Ammonium Hydroxide in Aqueous Solution; CHAPTER 8 -- Physico-chemical Investigation of Semiconductor Industrial Wastewater.
CHAPTER 9 -- Improving the Efficiency of a Coagulation-Flocculation Wastewater Treatment of the Semiconductor Industry through Zeta Potential MeasurementsPART IV -- PULP AND PAPER INDUSTRIES; CHAPTER 10 -- Improvement of Biodegradability Index through Electrocoagulation and Advanced Oxidation Process; CHAPTER 11 -- Removal of Lignin from Wastewater through Electro-Coagulation; CHAPTER 12 -- Treatment of Wastewater Effluents from Paper-Recycling Plants by Coagulation Process and Optimization of Treatment Conditions with Response Surface Methodology; PART V -- CONCLUSION.
CHAPTER 13 -- Life Cycle Assessment Applications in Wastewater TreatmentAUTHOR NOTES; BACK COVER.
Summary: Water is essential to our planet's life, and protecting our water resources is a prerequisite for building a sustainable future. Since water use is inextricably linked to energy use, however, we face significant challenges. Water plays an essential role in many, if not most, manufacturing facilities. In a world facing a water-scarcity crisis, much research and development currently focuses on decreasing industries' water-use footprint. This compendium volume looks briefly at several select industries and investigates various water treatment processes for each, including microbial biotechnologi.
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FRONT COVER; ABOUT THE EDITOR; CONTENTS; ACKNOWLEDGMENT AND HOW TO CITE; LIST OF CONTRIBUTORS; INTRODUCTION; PART I -- INDUSTRIAL PETROCHEMICALS; CHAPTER 1 -- Anaerobic Treatment of Wastewater from Used Industrial Oil Recovery; CHAPTER 2 -- LDHs as Adsorbents of Phenol and Their Environmental Applications; CHAPTER 3 -- Biodegradability of Oily Wastewater Using Rotating Biological Contactor Combined with an External Membrane; PART II -- METAL INDUSTRIES; CHAPTER 4 -- Removal of Vanadium(III) and Molybdenum(V) from Wastewater Using Posidonia oceanica (Tracheophyta) Biomass.

CHAPTER 5 -- The Effective Electrolytic Recovery of Dilute Copper from Industrial WastewaterCHAPTER 6 -- Intracellular Biosynthesis and Removal of Copper Nanoparticles by Dead Biomass of Yeast Isolated from the Wastewater of a Mine in the Brazilian Amazonia; PART III -- SEMI-CONDUCTOR INDUSTRY; CHAPTER 7 -- Application of Ozone Related Processes to Mineralize Tetramethyl Ammonium Hydroxide in Aqueous Solution; CHAPTER 8 -- Physico-chemical Investigation of Semiconductor Industrial Wastewater.

CHAPTER 9 -- Improving the Efficiency of a Coagulation-Flocculation Wastewater Treatment of the Semiconductor Industry through Zeta Potential MeasurementsPART IV -- PULP AND PAPER INDUSTRIES; CHAPTER 10 -- Improvement of Biodegradability Index through Electrocoagulation and Advanced Oxidation Process; CHAPTER 11 -- Removal of Lignin from Wastewater through Electro-Coagulation; CHAPTER 12 -- Treatment of Wastewater Effluents from Paper-Recycling Plants by Coagulation Process and Optimization of Treatment Conditions with Response Surface Methodology; PART V -- CONCLUSION.

CHAPTER 13 -- Life Cycle Assessment Applications in Wastewater TreatmentAUTHOR NOTES; BACK COVER.

Water is essential to our planet's life, and protecting our water resources is a prerequisite for building a sustainable future. Since water use is inextricably linked to energy use, however, we face significant challenges. Water plays an essential role in many, if not most, manufacturing facilities. In a world facing a water-scarcity crisis, much research and development currently focuses on decreasing industries' water-use footprint. This compendium volume looks briefly at several select industries and investigates various water treatment processes for each, including microbial biotechnologi.

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