Water Quality Engineering and Wastewater Treatment

Clean water is one of the most important natural resources on earth. Wastewater, which is spent water, is also a valuable natural resource. However, wastewater may contain many contaminants and cannot be released back into the environment until the contaminants are removed. Untreated wastewater and...

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Other Authors: Hung, Yung-Tse (Editor), Aziz, Hamidi Abdul (Editor), Al-Khatib, Issam A. (Editor), Rahman, Rehab O. Abdel (Editor), Cora-Hernandez, Mario GR (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
Subjects:
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DOAB: description of the publication
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700 1 |a Al-Khatib, Issam A.  |4 oth 
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520 |a Clean water is one of the most important natural resources on earth. Wastewater, which is spent water, is also a valuable natural resource. However, wastewater may contain many contaminants and cannot be released back into the environment until the contaminants are removed. Untreated wastewater and inadequately treated wastewater may have a detrimental effect on the environment and has a harmful effect on human health. Water quality engineering addresses the sources, transport and treatment of chemical and microbiological contaminants that affect water. Objectives for the treatment of wastewater are that the treated wastewater can meet national effluent standards for the protection of the environment and the protection of public health. This book, which is based on the Special Issue, includes contributions on advanced technologies applied to the treatment of municipal and industrial wastewater and sludge. The book deals with recent advances in municipal wastewater, industrial wastewater, and sludge treatment technologies, health effects of municipal wastewater, risk management, energy efficient wastewater treatment, water sustainability, water reuse and resource recovery. 
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653 |a leachate treatment 
653 |a coagulant-flocculation 
653 |a polyaluminium chloride 
653 |a enteric virus 
653 |a remediation technology 
653 |a water quality 
653 |a chitosan 
653 |a diclofenac 
653 |a ibuprofen 
653 |a magnetic biochar 
653 |a naproxen 
653 |a aerobic-MOB-anoxic process 
653 |a biogas 
653 |a denitrification 
653 |a mixed methanotroph culture 
653 |a WWTP 
653 |a ionizing radiation 
653 |a agricultural effluents 
653 |a dye treatment 
653 |a pharmaceutical effluents 
653 |a disinfection 
653 |a ammonia 
653 |a zeolite 
653 |a electrocoagulation 
653 |a response surface methodology 
653 |a stabilized 
653 |a leachate 
653 |a adsorption capacity 
653 |a decentralized water supply 
653 |a electrochemical reaction 
653 |a inconsistent view 
653 |a sand filtration 
653 |a wastewater treatment 
653 |a zero-valent iron 
653 |a submergence 
653 |a eutrophication 
653 |a invasive-native competition 
653 |a growth rate 
653 |a morphological traits 
653 |a polluted urban river 
653 |a sequential constructed wetlands 
653 |a purification effect 
653 |a water restoration 
653 |a Yitong River 
653 |a air gap membrane distillation 
653 |a heavy metal removal 
653 |a industrial wastewater 
653 |a greywater treatment 
653 |a house onsite 
653 |a reuse 
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653 |a heavy metals determination 
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653 |a adsorption 
653 |a separation 
653 |a inductively coupled plasma mass spectroscopy 
653 |a natural and modified polymer 
653 |a biodegradability 
653 |a toxicant dyes 
653 |a industrial wastewater treatment 
653 |a kinetic studies 
653 |a Moringa oleifera 
653 |a plant seed biomass 
653 |a prediction modeling 
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653 |a pH-dependent degradation mechanism 
653 |a reactive site 
653 |a tunnel-structured manganese oxide 
653 |a γ-MnO2 
653 |a Lemna minor bioassay 
653 |a visual system 
653 |a computer vision 
653 |a water pollution assessment 
653 |a bioindicators 
653 |a synthetic nanoparticles 
653 |a nTiO2 and nCeO2 
653 |a waste water treatment 
653 |a sp-ICP-MS nanoparticle tracking 
653 |a acid mine drainage 
653 |a sulphate reduction 
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653 |a n/a 
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