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Titlebook: Application of Microalgae in Wastewater Treatment; Volume 2: Biorefiner Sanjay Kumar Gupta,Faizal Bux Book 2019 Springer Nature Switzerland

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https://doi.org/10.1057/9780230306271nd coal are the major energy sources required for the transport and industries. The burning of fossil fuels not only emits greenhouse gases but also produces some persistent organic matter into the atmosphere such as carcinogenic and mutagenic compounds that creates serious environmental and human h
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Emerging Asian Fixed Income Marketsals, and other toxic chemicals. The methods which are conventionally used for the treatment primarily require huge land and energy and high operating costs. Phycoremediation is an alternative treatment approach which on one hand removes pollutants, like nitrate, phosphate, heavy metals, and other ha
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https://doi.org/10.1007/978-1-349-13633-9industrial development which is a major environment polluter as they discharge their wastes into the nearby waterbodies. Another burning issue for the world is fossil fuel scarcity and increased discharge of greenhouse gases resulting in climate change. Therefore researchers around the world are sea
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A. Cimenoglu,M. Ferrazzi,D. Revoltellaivation of microalgae for the production of biomass and bioproducts, including biofuel, which is one of the burgeoning fields of research in algal biotechnology. Industrial and MWWs are characterized by completely different biological and chemical properties. The production of algal biomass for bypr
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P. Bongini,S. Chiarlone,G. Ferrity for a self-sustained oxygen supply, enhanced assimilatory nutrient removal, and adaptability to treat different types of wastewater. Moreover, algal systems are cost-efficient not only for treatment but also for resource recovery via biomass production and valorization. In this sense, recent stud
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https://doi.org/10.1057/9780230584341astewater. Microbial carbon capture cell (MCC) is an advancement of microbial fuel cell (MFC) in which algal biomass provides the oxygen for cathodic reduction in the cathodic chamber. Proof of concept of ability of MCC for organic matter removal from wastewater in anodic chamber along with simultan
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https://doi.org/10.1007/978-3-031-48359-2ss yield. Microalgae biomass is capable of valorizing organic and inorganic matter in the wastewater for biofuel yield. Microalgae biomass use freely available solar radiation as light energy and organic and inorganic matter from wastewater as a nutrient source. Direct discharge of urinal wastewater
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