Waste Algae for Bioenergy Generation to Mitigate Eutrophication and Greenhouse Emissions in Water Bodies

IF 1.4 4区 工程技术 Q3 ENGINEERING, CHEMICAL Periodica Polytechnica Chemical Engineering Pub Date : 2023-06-02 DOI:10.3311/ppch.22005
Amit Singh, V. Anand, Attila Bai, Zoltán Gabnai, Sanjeev Kumar Prajapati
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Abstract

Eutrophication has a significant negative impact on the ecosystem since it depletes the planet's biological resources and is further responsible for climate change. It is caused by both endogenous and exogenous nutrient enrichment. This phenomenon degrades the water quality and simultaneously increases the greenhouse gases emission from waterbodies resulting in climate change Inland waterbodies contain enormous amounts of nutrients such as phosphorous, nitrogen, and carbon. Thus, it becomes essential to restore these nutrients using proper sustainable approaches. Algae-based technologies have received a lot of attention these days because of environmentally friendly and inexpensive treatment. About 70% of the nutrient load from wastewater can be removed using such technology. The recovered algal biomass after wastewater treatment contains various biomolecules which can be used for the producing of value-added products such as bioenergy in the form of biomethane and biodiesel, cosmetics and pharmaceuticals along with the synthesis of nanoparticles. Therefore, the primary goal of this review is to inform readers about the possibilities of a low-cost integrated biorefinery based on microalgae for resource recovery and to mitigate eutrophication and greenhouse gas emission from water bodies.
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用于生物能源生产的废藻缓解水体富营养化和温室气体排放
富营养化对生态系统产生了重大的负面影响,因为它耗尽了地球上的生物资源,并进一步导致了气候变化。它是由内源性和外源性营养物质富集引起的。这种现象使水质恶化,同时增加了水体的温室气体排放,导致气候变化。内陆水体含有大量的磷、氮、碳等营养物质。因此,使用适当的可持续方法恢复这些营养变得至关重要。基于藻类的技术由于环保和廉价的处理方法而受到了很多关注。该技术可去除废水中约70%的养分负荷。废水处理后回收的藻类生物质含有多种生物分子,可用于生产生物甲烷和生物柴油形式的生物能源、化妆品和药品等增值产品,以及纳米颗粒的合成。因此,本文的主要目的是向读者介绍基于微藻的低成本综合生物精炼厂的可能性,以回收资源并减轻水体的富营养化和温室气体排放。
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来源期刊
CiteScore
3.10
自引率
7.70%
发文量
44
审稿时长
>12 weeks
期刊介绍: The main scope of the journal is to publish original research articles in the wide field of chemical engineering including environmental and bioengineering.
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