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Effect of Concentration of Organic Chemicals on Their Biodegradation by Natural Microbial Communities

机译:浓度的有机物对其天然微生物群落降解的影响

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摘要

The effect of concentration on the biodegradation of synthetic organic chemicals by natural microbial communities was investigated by adding individual 14C-labeled organic compounds to stream water at various initial concentrations and measuring the formation of 14CO2. The rate of degradation of p-chlorobenzoate and chloroacetate at initial concentrations of 47 pg/ml to 47 μg/ml fell markedly with lower initial concentrations, although half or more of the compound was converted to CO2 in 8 days or less. On the other hand, little mineralization of 2,4-dichlorophenoxyacetate and 1-naphthyl-N-methylcarbamate, or the naphthol formed from the latter, occurred when these compounds were present at initial concentrations of 2 to 3 ng/ml or less, although 60% or more of the chemical initially present at higher concentrations was converted to CO2 in 6 days. It is concluded that laboratory tests of biodegradation involving chemical concentrations greater than those in nature may not correctly assess the rate of biodegradation in natural ecosystems and that low substrate concentration may be important in limiting biodegradation in natural waters.
机译:通过向各个初始浓度下添加 14 C标记的有机化合物流入水中并测量 14 <的形成,研究了浓度对天然微生物群落对合成有机化学品生物降解的影响。 / sup> CO2。在初始浓度为47 pg / ml到47μg/ ml的情况下,对氯苯甲酸酯和氯乙酸酯的降解速率随着初始浓度的降低而显着下降,尽管一半或更多的化合物在8天或更短的时间内转化为CO2。另一方面,当这些化合物以2至3 ng / ml或以下的初始浓度存在时,几乎没有矿化2,4-二氯苯氧基乙酸盐和1-萘基-N-甲基氨基甲酸酯或由后者形成的萘酚。最初以较高浓度存在的60%或更多的化学品在6天内转化为CO2。结论是,涉及化学浓度大于自然浓度的生物降解的实验室测试可能无法正确评估自然生态系统中生物降解的速率,低底物浓度对于限制天然水域的生物降解可能很重要。

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