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Titlebook: Applied Environmental Biotechnology: Present Scenario and Future Trends; Garima Kaushik Book 2015 Springer India 2015 Bioremediation.Carbo

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發(fā)表于 2025-3-21 19:53:21 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Applied Environmental Biotechnology: Present Scenario and Future Trends
影響因子2023Garima Kaushik
視頻videohttp://file.papertrans.cn/160/159803/159803.mp4
發(fā)行地址Written by a distinguished panel of experts in the field of biotechnology.Offers theories and principles that are crucial for solving pollution problems in the modern era.Emphasizes theories and princ
圖書(shū)封面Titlebook: Applied Environmental Biotechnology: Present Scenario and Future Trends;  Garima Kaushik Book 2015 Springer India 2015 Bioremediation.Carbo
影響因子.Applied Environmental Biotechnology: Present Scenario and Future Trends .is designed to serve as a reference book for students and researchers working in the area of applied environmental science. It presents various applications of environmental studies that involve the use of living organisms, bioprocesses engineering technology, and other fields in solving environmental problems like waste and waste waters. It includes not only the pure biological sciences such as genetics, microbiology, biochemistry and chemistry but also from outside the sphere of biology such as chemical engineering, bioprocess engineering, information technology, and biophysics..Starting with the fundamentals of bioremediation, the book introduces various environmental applications such as bioremediation, phytoremediation, microbial diversity in conservation and exploration, in-silico approach to study the regulatory mechanisms and pathways of industrially important microorganisms biological phosphorous removal, ameliorative approaches for management of chromium phytotoxicity, sustainable production of biofuels from microalgae using a biorefinery approach, bioelectrochemical systems (BES) for microbial elec
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In Silico Approach to Study the Regulatory Mechanisms and Pathways of Microorganisms,and engineered biological systems. This is the time when conventional methods of studying microorganisms are no longer practiced because of their limited productivity and higher time consumption. Bioinformatics has fulfilled the need for high-throughput experimental technologies, which are reliable
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Microbial Diversity: Its Exploration and Need of Conservation,e microbial diversity, not only to sustain human health, but also to enhance the human condition globally through sensible use and conservation of genetic resources of the microbial world. The microbial world is the largest unexplored reservoir of biodiversity on the earth. The exploration of microb
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Phytoremediation: A Biotechnological Intervention, systems and to aerate the soil, allowing different microorganisms to grow. Phytoremediation has many advantages over other existing technologies in terms of safe and nondisturbing natural surroundings of contaminated sites. The modification in technology leads to different methods of phytoremediati
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Ameliorative Approaches for Management of Chromium Phytotoxicity: Current Promises and Future Direcelopment. Considering limited agricultural land for such a large population and increasing heavy metal pollution in soil, there is an immense need of strategies for alleviation of phytotoxic effects of chromium and its removal from soil. Several studies have been carried out in relation to the afore
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Management of Environmental Phosphorus Pollution Using Phytases: Current Challenges and Future Prosfferent organic and inorganic sources rich in phosphorus. Inorganic sources are most commonly used for development of phosphorus fertilisers while organic sources like phytic acid phosphorus of plant origin is a major source of phosphorus in animal nutrition. Excessive application of phosphorus fert
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Bioelectrochemical Systems (BES) for Microbial Electroremediation: An Advanced Wastewater Treatmentosynthesis and desalination. The present chapter emphasizes the advantages and potential applications of BES for the remediation of recalcitrant pollutants present in various types of wastewaters. Bioelectricity generated from the treatment of these wastewaters is an additional energy output from th
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