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Citric acid wastewater as electron donor for biological sulfate reduction

机译:柠檬酸废水作为生物硫酸盐还原的电子给体

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摘要

Citrate-containing wastewater is used as electron donor for sulfate reduction in a biological treatment plant for the removal of sulfate. The pathway of citrate conversion coupled to sulfate reduction and the microorganisms involved were investigated. Citrate was not a direct electron donor for the sulfate-reducing bacteria. Instead, citrate was fermented to mainly acetate and formate. These fermentation products served as electron donors for the sulfate-reducing bacteria. Sulfate reduction activities of the reactor biomass with acetate and formate were sufficiently high to explain the sulfate reduction rates that are required for the process. Two citrate-fermenting bacteria were isolated. Strain R210 was closest related to Trichococcus pasteurii (99.5% ribosomal RNA (rRNA) gene sequence similarity). The closest relative of strain S101 was Veillonella montepellierensis with an rRNA gene sequence similarity of 96.7%. Both strains had a complementary substrate range.
机译:含柠檬酸盐的废水用作生物处理厂中硫酸盐还原的电子供体,以去除硫酸盐。研究了柠檬酸盐转化与硫酸盐还原反应耦合的途径以及所涉及的微生物。柠檬酸盐不是硫酸盐还原菌的直接电子供体。取而代之,将柠檬酸盐发酵成主要是乙酸盐和甲酸。这些发酵产物用作硫酸盐还原细菌的电子供体。反应器生物质用乙酸盐和甲酸盐的硫酸盐还原活性足够高,足以说明该方法所需的硫酸盐还原速率。分离出两种柠檬酸盐发酵细菌。 R210菌株与巴氏球菌(99.5%核糖体RNA(rRNA)基因序列相似性)最接近。菌株S101的最接近亲缘种是Veillonella montepellierensis,其rRNA基因序列相似性为96.7%。两种菌株都具有互补的底物范围。

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