相关实验视频
Updated: May 30, 2025

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Electrochemically and Bioelectrochemically Induced Ammonium Recovery
Published on: January 22, 2015
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在温暖的气候条件下,通过主流anammox从多电解质盐废水中去除
Carolina Tavares Paula1, Paula Yumi Takeda1, Guilherme Lelis Giglio1
1Biological Processes Laboratory (LPB), São Carlos School of Engineering (EESC), University of São Paulo (USP), Av. João Dagnone, 1100, Santa Angelina, São Carlos, São Paulo, 13563-120, Brazil.
Journal of environmental management
|January 26, 2025
概括
这项研究表明,淡水anammox细菌可以处理多电解质盐水废水. 细菌适应了0.72%重量%的盐度,实现了84%的去除,但残留的有机物导致了微生物群落的变化.
科学领域:
- 环境微生物学 环境微生物学
- 废水处理技术 废水处理技术
- 生物反应器工程 生物反应器工程
背景情况:
- 废水中的高盐度抑制了生物处理过程.
- 多电解质盐度对淡水菌的影响尚不清楚.
- 氧化 (无氧氨氧化) 是生物去除的一个关键过程.
研究的目的:
- 评估anammox工艺处理多电解质盐水废水的性能.
- 确定淡水菌对盐度的耐受性和适应性极限.
- 研究盐度和残留有机物对微生物群落结构和功能的影响.
主要方法:
- 在三个运行阶段下对一个anammox反应堆进行长期 (684天) 评估.
- 在合成废水中盐度 (NaCl,MgCl2,CaCl2) 的逐渐增加.
- 无氧预处理的盐废水与残留有机物质的应用.
主要成果:
- 亚纳莫克斯细菌成功适应了0.72重量%的总盐度,实现了84.3%的去除.
- 盐度有利于加拿大. 杰特尼亚属超过卡. 在长期暴露下布罗卡迪亚.
- 盐水废水中的残留有机物导致了代谢转向酸盐异型脱,改变了微生物对的支配地位. 布罗卡迪亚 (Brocadia) 是一种植物.
结论:
- 淡水亚纳莫克斯细菌可以适应处理多电解质盐水废水.
- 盐度会影响在anammox过程中的微生物社区结构.
- 盐度和有机物质的存在需要谨慎管理,以优化去除效率.
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