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Biomineralisation of 1,2,4-trichlorobenzene in soils by an adapted microbial population

机译:适应性微生物种群对土壤中1,2,4-三氯苯的生物矿化作用

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摘要

In laboratory experiments the mineralisation of ~(14)C-labelled 1,2,4-trichlorobenzene (1,2,4-TCB) in soils was studied by direct measurement of the evolved ~(14)CO_2. The degradation capacity of the indigenous microbial population was investigated in an agricultural soil and in a soil from a contaminated site. Very low mineralisation of 1 % within 23 days was measured in the agricultural soil. Whereas in the soil from the contaminated site the mineralisation occurred very fast and in high rates; up to 62% of the initially applied amount of 1,2,4-TCB were mineralised within 23 days. The transfer of the adapted microbial population into the agricultural soil significantly enhanced the mineralisation of 1,2,4-TCB in this soil, reflecting, that the transferred microbial population survived and maintained its degradation ability in the new microbial ecosystem. Additional nutrition sources ((NH_4)_2HPO_4) increased the mineralisation rates in the first days significantly in the contaminated soil. In the soil from the contaminated site high amounts of non extractable ~(14)C-residues were formed.
机译:在实验室实验中,通过直接测量生成的〜(14)CO_2,研究了〜(14)C标记的1,2,4-三氯苯(1,2,4-TCB)在土壤中的矿化作用。在农业土壤和污染场地的土壤中调查了土著微生物种群的降解能力。在农业土壤中测得的23天内极低的矿化度仅为1%。而在受污染地点的土壤中,矿化发生的速度非常快且发生率很高;在23天内矿化了最初施用的1,2,4-TCB量的62%。适应的微生物种群向农业土壤的转移显着增强了该土壤中1,2,4-TCB的矿化作用,反映出被转移的微生物种群在新的微生物生态系统中得以生存并保持了其降解能力。在被污染的土壤中,其他营养源((NH_4)_2HPO_4)在头几天显着增加了矿化速率。在受污染场地的土壤中,形成了大量不可提取的〜(14)C残留物。

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