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Titlebook: Combined Application of Physico-Chemical & Microbiological Processes for Industrial Effluent Treatme; Maulin Shah,Aditi Banerjee Book 2020

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發(fā)表于 2025-3-21 19:22:53 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Combined Application of Physico-Chemical & Microbiological Processes for Industrial Effluent Treatme
編輯Maulin Shah,Aditi Banerjee
視頻videohttp://file.papertrans.cn/231/230065/230065.mp4
概述Illustrates the importance of various physico-chemical processes along with biological & oxidation processes in effluent treatment plant.Introduces new trends in environmental bioremediation of efflue
圖書封面Titlebook: Combined Application of Physico-Chemical & Microbiological Processes for Industrial Effluent Treatme;  Maulin Shah,Aditi Banerjee Book 2020
描述.In recent decades, scientific insight into the chemistry of water has increased enormously, leading to the development of advanced wastewater and water purification technologies. However, the quality of freshwater resources has continually deteriorated worldwide, both in industrialized and developing countries. Although traditional wastewater technologies focus on the removal of suspended solids, nutrients and bacteria, hundreds of organic pollutants occur in wastewater and urban surface waters. These new pollutants are synthetic or naturally occurring chemicals that are not often monitored in the environment but have the potential to enter the environment and cause known or suspected adverse ecological and / or human health effects.?.Collectively referred to as the "emerging contaminants," they are mostly derived from domestic use and occur in trace concentrations ranging from pico to micrograms per liter. Environmental contaminants are resistant to conventional wastewater treatment processes and most of them remain unaffected, leading to the contamination of the receiving water. As such, there is a need for advanced wastewater treatment process that is capable of removing enviro
出版日期Book 2020
關(guān)鍵詞Bioremediation; Biodegradation; Advanced Oxidation Processes; Wastewater Treatment; Phytoremediation; Nan
版次1
doihttps://doi.org/10.1007/978-981-15-0497-6
isbn_softcover978-981-15-0499-0
isbn_ebook978-981-15-0497-6
copyrightSpringer Nature Singapore Pte Ltd. 2020
The information of publication is updating

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Treatment Technologies for Addressing the Removal of Industrial Effluents Affecting the Quality of fusion of technologies for elevating the upcoming manufacturing techniques. Industrialization has helped India to flourish and grow economically among the other developing countries. With all the advantages of increase in industries and production, there comes up the problem of increase in pollutant
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,Role of Interspecies Electron Transfer for Boosting Methane Production by?Anaerobic Digestion in Sysence of direct interspecies electron transfer (DIET) in microbial communities is commonly used to improve methane production, while the underlying mechanisms remain under debate. Though DIET has distinct advantages, the interspecies H./formate transfer in syntrophic metabolism is believed to be the
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Recent Advances in Physicochemical and Biological Treatment Approaches for Distillery Wastewater,wastewater, enriched with toxic androgenic and carcinogenic pollutants including melanoidins, phenolics, endocrine disrupting chemicals, organic acids, heavy metals and other recalcitrant hazardous compounds, into the environment without adequate treatment posing a risk to human, animals, microorgan
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Integrated Approach for the Treatment of Industrial Effluent by Physico-chemical and Microbiologica increase in population and its demands, the past decade has observed an explosion of industrialisation in all the sectors. This has led to huge waste being generated and disposed of in the environment, e.g. heavy metals and effluents from distillery, paper and pulp and dye industries. Thus, various
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Treatment Options for Acid Mine Drainage: Remedial Achievements Through Microbial-Mediated Processe on the ecosystem. Generation of million tons of mine wastes like tailings, slags, waste rocks/ore bodies, etc. are the major sources of AMD generation in metalliferous/coal mine, due to the biologically mediated oxidation of sulfidic waste. Low pH and high heavy metal and sulfate concentration are
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