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Anaerobic treatment of sulfate-rich wastewater in an anaerobic sequential batch reactor (AnSBR) using butanol as the carbon source

机译:使用丁醇作为碳源的厌氧顺序分批反应器(AnSBR)中厌氧处理富硫酸盐废水

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摘要

Biological sulfate reduction was studied in a laboratory-scale anaerobic sequential batch reactor (14 L) containing mineral coal for biomass attachment. The reactor was fed industrial wastewater with increasingly high sulfate concentrations to establish its application limits. Special attention was paid to the use of butanol in the sulfate reduction that originated from melamine resin production. This product was used as the main organic amendment to support the biological process. The reactor was operated for 65 cycles (48 h each) at sulfate loading rates ranging from 2.2 to 23.8 g SO(4)(2-)/cycle, which corresponds to sulfate concentrations of 0.25, 0.5,1.0, 2.0 and 3.0 g SW(4)(2-)L(-1). The sulfate removal efficiency reached 99% at concentrations of 0.25, 0.5 and 1.0 g SO(4)(2-)L(-1). At higher sulfate concentrations (2.0 and 3.0 g SO(4)(2-)L(-1)), the sulfate conversion remained in the range of 71-95%. The results demonstrate the potential applicability of butanol as the carbon source for the biological treatment of sulfate in an anaerobic batch reactor. (C) 2011 Elsevier Ltd. All rights reserved.
机译:在实验室规模的厌氧顺序分批反应器(14 L)中研究了生物硫酸盐的还原,该反应器包含用于生物质附着的矿物煤。向反应器中添加了硫酸盐浓度越来越高的工业废水,以确定其应用范围。应特别注意丁醇在三聚氰胺树脂生产中所产生的硫酸盐还原中的使用。该产品用作支持生物过程的主要有机修饰剂。反应器以2.2至23.8 g SO(4)(2-)/循环的硫酸盐上样速率运行65个循环(每个48小时),这对应于0.25、0.5、1.0、2.0和3.0 g SW的硫酸盐浓度(4)(2-)L(-1)。在0.25、0.5和1.0 g SO(4)(2-)L(-1)的浓度下,硫酸盐去除效率达到99%。在较高的硫酸盐浓度(2.0和3.0 g SO(4)(2-)L(-1))下,硫酸盐转化率保持在71-95%的范围内。结果证明了丁醇作为碳源在厌氧间歇反应器中生物处理硫酸盐的潜在适用性。 (C)2011 Elsevier Ltd.保留所有权利。

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