通过厌氧协同消化麦芽废水和微藻生物质回收能量和营养物质

IF 3 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
A. Rubert, C. Kaminski, M. T. Nazari, D. D. C. Krein, L. M. Colla, J. A. V. Costa, M. Hemkemeier
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引用次数: 0

摘要

本研究旨在利用上流式厌氧污泥毯中试规模反应器,研究最大螺旋藻生物量与接种物的比例对厌氧协同消化麦芽废水的影响。厌氧发酵过程在中嗜酸条件下进行,持续 369 小时。实验条件包括三组:(1) 麦芽废水(对照组);(2) 接种物/最大螺旋藻比例为 80:20 的麦芽废水;(3) 接种物/最大螺旋藻比例为 60:40 的麦芽废水。接种物/最大螺旋藻比例为 60:40 的发芽废水表现优异,产生的生物甲烷是对照组和接种物/最大螺旋藻比例为 80:20 的发芽废水的 6.7 倍。这种条件下的化学需氧量去除效率达到 76%。此外,产生的沼渣对莴苣和大麦没有植物毒性。因此,共消化沼渣可以有效地用于农业。研究还发现,在同时处理联合消化、产生生物甲烷和生产生物肥料方面,联合消化也很有效。这项工作强调了一种有前途的、可持续的废物和污水处理方法,对生物能源生产和粮食生产具有积极影响。它促进了循环经济和农业可持续发展的原则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Energy and nutrient recovery from anaerobic co-digestion of malting wastewater and microalgae biomass

Energy and nutrient recovery from anaerobic co-digestion of malting wastewater and microalgae biomass

This study aimed to investigate the impact of the ratio of Spirulina maxima biomass to inoculum on the anaerobic co-digestion of malting wastewater using upflow anaerobic sludge blanket pilot-scale reactors. The AD process occurred in mesophilic conditions, lasting for 369 h. The experimental conditions included three groups: (1) malting wastewater (control); (2) malting wastewater with an 80:20 inoculum/Spirulina maxima ratio; (3) malting wastewater with a 60:40 inoculum/Spirulina maxima ratio. The 60:40 inoculum/Spirulina maxima ratio demonstrated superior performance, generating 6.7 times more biomethane compared to both the control and the 80:20 inoculum/Spirulina maxima ratio. This condition achieved a chemical oxygen demand removal efficiency of 76%. Furthermore, the digestate generated did not exhibit phytotoxicity towards lettuce and barley. Therefore, co-digestion digestates can be effectively utilized in agriculture. Co-digestion was also found to be efficient in simultaneously treating co-digestion, generating biomethane, and producing biofertilizer. This work emphasizes a promising and sustainable approach to valorizing waste and effluents, which has positive impacts on bioenergy generation and food production. It promotes the principles of the circular economy and sustainability in agriculture.

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来源期刊
CiteScore
5.60
自引率
6.50%
发文量
806
审稿时长
10.8 months
期刊介绍: International Journal of Environmental Science and Technology (IJEST) is an international scholarly refereed research journal which aims to promote the theory and practice of environmental science and technology, innovation, engineering and management. A broad outline of the journal''s scope includes: peer reviewed original research articles, case and technical reports, reviews and analyses papers, short communications and notes to the editor, in interdisciplinary information on the practice and status of research in environmental science and technology, both natural and man made. The main aspects of research areas include, but are not exclusive to; environmental chemistry and biology, environments pollution control and abatement technology, transport and fate of pollutants in the environment, concentrations and dispersion of wastes in air, water, and soil, point and non-point sources pollution, heavy metals and organic compounds in the environment, atmospheric pollutants and trace gases, solid and hazardous waste management; soil biodegradation and bioremediation of contaminated sites; environmental impact assessment, industrial ecology, ecological and human risk assessment; improved energy management and auditing efficiency and environmental standards and criteria.
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