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Conditions and Mechanisms in Thiocyanate Biodegradation

机译:硫氰酸盐生物降解的条件和机理

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Presence of thiocyanate (SCN–) is a problem of considerable interest in many industrial wastewaters, where this contaminant often appears accompanied by secondary sources of carbon, nitrogen and/or sulphur. In order to understand the effect of these compounds on the biodegradability of SCN–, this work investigates how the bacterium Pararacoccus thiocyanatus utilises the three elements that form the molecule of thiocyanate and compare this behaviour with those obtained in presence of other sources of N, S and C. Result showed that the bacterium was capable of utilizing thiocyanate as the sole substrate, achieving specific biodegradation rates of approximate 1.20 mg SCN– (mg cell·h)–1 and eliminating initial thiocyanate concentrations up to 5,000 mg L–1. Experimental data were successfully fitted to a Teisser model, assuming the existence of substrate inhibition obtaining values of μmax of 0.059 h–1, Ks of 790 mg L–1 and Ki of 6,520 mg L–1 for free mineral medium. Presence of additional carbon and nitrogen sources implied catabolic repression of the biodegradation of thiocyanate. In this case, only concentrations lower than 3,500 mg L–1 could be treated, obtaining specific degradation rates of around 0.70 mg SCN–·(h·mg cell)–1. Tessier model values showed a higher maximum specific growth rate (0.344 h–1), changing also the values for affinity and inhibition constants (1,150 mg L–1 and 1,730 mg L–1, respectively).
机译:硫氰酸盐(SCN–)的存在是许多工业废水中备受关注的问题,在这些工业废水中,这种污染物经常伴有碳,氮和/或硫的二次来源。为了了解这些化合物对SCN–的生物降解性的影响,本研究调查了硫氰酸副球菌如何利用形成硫氰酸盐分子的三种元素,并将这种行为与在其他N,S来源下获得的行为进行了比较。结果表明,该细菌能够利用硫氰酸盐作为唯一底物,达到约1.20 mg SCN–(mg细胞·h)–1的特定生物降解率,并消除了高达5,000 mg L–1的初始硫氰酸盐浓度。假设存在底物抑制,游离矿物质的μmax为0.059 h-1,Ks为790 mg L-1,Ki为6,520 mg L-1,实验数据已成功拟合到Teisser模型。额外的碳和氮源的存在暗示了硫氰酸盐生物降解的分解代谢抑制。在这种情况下,只能处理低于3500 mg L–1的浓度,获得约0.70 mg SCN–·(h·mg细胞)–1的特定降解率。 Tessier模型值显示出更高的最大比生长速率(0.344 h-1),也改变了亲和力和抑制常数(分别为1,150 mg L-1和1,730 mg L-1)。

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