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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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发表于 2025-3-21 18:20:02 | 显示全部楼层 |阅读模式
期刊全称Application of Microalgae in Wastewater Treatment
期刊简称Volume 2: Biorefiner
影响因子2023Sanjay Kumar Gupta,Faizal Bux
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发行地址Discusses the biorefinery aspects of algal-based wastewater treatment.Addresses the potential of microalgae for biomass production with various applications in treating industrial and municipal wastew
图书封面Titlebook: Application of Microalgae in Wastewater Treatment; Volume 2: Biorefiner Sanjay Kumar Gupta,Faizal Bux Book 2019 Springer Nature Switzerland
影响因子This two-volume work presents comprehensive, accurate information on the present status and contemporary development in phycoremediation of various types of domestic and industrial wastewaters. The volume covers a mechanistic understanding of microalgae based treatment of wastewaters, including current challenges in the treatment of various organic and inorganic pollutants, and future opportunities of bioremediation of wastewater and industrial effluents on an algal platform. The editors compile the work of authors from around the globe, providing insight on key issues and state-of-the-art developments in algal bioremediation that is missing from the currently available body of literature. The volume hopes to serve as a much needed resource for professors, researchers and scientists interested in microalgae applications for wastewater treatment. .Volume 2 addresses the various biorefinery aspects and applications of algal-based wastewater treatment in industrialand domestic contexts. The analyses are approached from multiple perspectives, including biotechnology, commercial, economic, and sustainability. The authors discuss the potential of microalgae for integrated biomass product
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Level Spacings for Cayley Graphs, be used for the production of biofuels, pharmaceuticals, and feed grade products. The use of wastewater with co-utilization of CO. for microalgae cultivation is beneficial since it reduces the requirements of freshwater and essential nutrients (N, P, and K). Wastewater generated from domestic, agri
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https://doi.org/10.1007/978-94-010-0277-6er has several advantages. The nutrient removal efficiency and the production of biomass and various metabolites (proteins, lipids, and carbohydrates) have strain specific and adaptability towards aquaculture wastewater. To utilize this integrated process, not only close the loop in the aquaculture
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https://doi.org/10.1057/9780230306271in the biorefinery while addressing challenges about the upstream and downstream processes. This chapter also provides an outline of the techno-economical assessment of . spp.-based biorefineries in a wastewater system.
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Capital Controls: No Longer Unorthodox content in ammoniacal nitrogen, suspended solids, and several inhibitors that might limit growth, and therefore pretreatment of digestates is likely to have a positive effect on biomass production. Microalgal cultivation is proven as an efficient technology for the removal of nitrogen, phosphorus,
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P. Bongini,S. Chiarlone,G. Ferriof microalgae biotechnology for wastewater treatment with a special focus on its potential for carbon valorization into PHAs. The recent advances of microalgae-bacteria systems for wastewater treatment combined with biogas upgrading will be also reviewed.
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