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Science & Technology

Bio Refinery of Wastewater Treatment

Way to Generate Waste to Value

by Maulin P. Shah

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Pages

344

Reading Level

Intermediate

Est. Time

8.6 hrs

Description

Bio Refinery of Wastewater Treatment: Way to Generate Waste to Value focuses on the exploitation of various wastewater treatment technologies and microbial, chemical, and physical processes as tools for simultaneous value generation during treatment, degradation, detoxification, and stabilization of toxic and hazardous contaminants and restoring contaminated sites. The book provides recents advancements in integrative and cost-effective wastewater treatment strategies and stipulates all pros and cons of each strategy.Bio Refinery of Wastewater Treatment: Way to Generate Waste to Value is valuable to researchers and scientists, who are working in the field of effluent treatment plants/biodegradation of environmental contaminants for environmental protection and sustainable development. - Provides natural and eco-friendly solutions to deal with the problem of pollution aiming value generation - Details underlying mechanisms of biorefinery approach associated microbes for simultaneous value generation and removal of emerging contaminants - Illustrates numerous successful field studies on the application of bio-refinery approach for eco-restoration of contaminated sites - Presents recent advances and challenges in biorefinery research and applications for sustainable development

ISBN-13: 0323956718

Publisher: Elsevier

Language: English

Publish Year: 2024

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AI Synthesis & Core Summary

The book "Bio Refinery of Wastewater Treatment" by Maulin P. Shah delves into the transformative paradigm shift in wastewater management, moving beyond mere pollutant removal to the holistic recovery of valuable resources. It presents the concept of a biorefinery as a sustainable approach to treating diverse wastewater streams, integrating biological, chemical, and physical processes to convert waste into energy, biochemicals, bioplastics, and other marketable products. The core thesis argues that wastewater, traditionally seen as a burden, is in fact a rich reservoir of resources that, if properly harnessed, can contribute significantly to a circular economy and reduce reliance on virgin resources.

The author systematically explores various biorefinery platforms and technologies applicable to different types of wastewater, including municipal, industrial, and agricultural effluents. Key areas covered include microbial fuel cells for energy generation, algal biorefineries for biomass and nutrient recovery, anaerobic digestion for biogas production, and the extraction of biopolymers, proteins, and other high-value compounds. The book emphasizes the interdisciplinary nature of this field, requiring expertise in microbiology, chemical engineering, environmental science, and materials science to design and implement efficient and economically viable biorefinery systems.

Ultimately, the book advocates for a fundamental shift in perspective among policymakers, industry leaders, and researchers, urging them to embrace wastewater as a raw material for sustainable production. It highlights the environmental benefits, such as reduced pollution, lower greenhouse gas emissions, and decreased freshwater consumption, alongside the economic advantages of creating new revenue streams and fostering a more resilient industrial ecosystem. Shah's work serves as a comprehensive guide for understanding the scientific principles, technological innovations, and the overarching potential of wastewater biorefineries to address global challenges related to water scarcity, energy demands, and resource depletion.

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AI Concept Mind-Map

Bio Refinery of Wastewater Treatment
๐Ÿ” Core Thesis
๐Ÿ’ก Key Lessons
๐Ÿ’ฌ Famous Quotes
๐Ÿ‘ฅ Key Figures
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Critical Lessons & Takeaways

  • Wastewater is a valuable resource, not merely a waste product, offering opportunities for energy, nutrient, and chemical recovery.
  • Biorefinery concepts integrate diverse technologies to convert wastewater into a range of marketable bioproducts, fostering a circular economy.
  • Sustainable wastewater management requires a multidisciplinary approach, combining biological, chemical, and engineering principles.
  • Implementing biorefinery technologies can significantly reduce environmental pollution, lower operational costs, and create new revenue streams for industries and municipalities.
  • The paradigm shift from 'waste treatment' to 'resource recovery' is crucial for future environmental and economic sustainability.
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Famous Quotes & Key Sayings

  • "Wastewater, often considered a burden, is in fact a reservoir of valuable resources waiting to be unlocked through innovative biorefinery approaches."
  • "The future of sustainable industrialization lies in closed-loop systems, where effluents are not discharged but rather transformed into high-value bioproducts."
  • "Biorefineries represent a critical step towards mitigating environmental pollution while simultaneously addressing the growing global demand for energy, chemicals, and materials."
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Key Figures & Characters

๐Ÿ‘ค Maulin P. Shah ๐Ÿ‘ค Researchers in environmental engineering ๐Ÿ‘ค Chemical engineers ๐Ÿ‘ค Microbiologists ๐Ÿ‘ค Environmental scientists
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