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Interaction Effects of Metals and Salinity on Biodegradation of a Complex Hydrocarbon Waste

机译:金属和盐分的相互作用对复杂烃类废物生物降解的影响

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摘要

The presence of high levels of salts because of produced brine water disposal at flare pits and the presence of metals at sufficient concentrations to impact microbial activity are of concern to bioremediation of flare pit waste in the upstream oil and gas industry. Two slurry-phase biotreatment experiments based on three-level factorial statistical experimental design were conducted with a flare pit waste. The experiments separately studied the primary effect of cadmium [Cd(Ⅱ)] and interaction effect between Cd(Ⅱ) and salinity and the primary effect of zinc [Zn(Ⅱ)] and interaction effect between Zn(Ⅱ) and salinity on hydrocarbon biodegradation. The results showed 42-52.5% hydrocarbon removal in slurries spiked with Cd and 47-62.5% in the slurries spiked with Zn. The analysis of variance showed that the primary effects of Cd and Cd-salinity interaction were statistically significant on hydrocarbon degradation. The primary effects of Zn and the Zn-salinity interaction were statistically insignificant, whereas the quadratic effect of Zn was highly significant on hydrocarbon degradation. The study on effects of metallic chloro-complexes showed that the total aqueous concentration of Cd or Zn does not give a reliable indication of overall toxicity to the microbial activity in the presence of high salinity levels.
机译:高浓度盐的存在是由于在火炬坑中产生了盐水,而金属的浓度足以影响微生物的活性,这是上游石油和天然气工业中火炬坑废物的生物修复所关注的问题。基于火炬坑废物,进行了基于三级因子统计实验设计的两个浆料相生物处理实验。实验分别研究了镉[Cd(Ⅱ)]的主要作用以及Cd(Ⅱ)与盐度的相互作用,锌[Zn(Ⅱ)]的主要作用以及Zn(Ⅱ)与盐度的相互作用对烃类生物降解的影响。 。结果表明,掺Cd的浆液中烃的去除率为42-52.5%,掺Zn的浆液中烃的去除率为47-62.5%。方差分析表明,Cd和Cd-盐度相互作用的主要影响对烃降解具有统计学意义。 Zn的主要作用和Zn-盐度的相互作用在统计学上不显着,而Zn的二次作用在烃降解方面具有显着意义。对金属氯配合物影响的研究表明,在高盐度条件下,Cd或Zn的总水溶液浓度不能可靠地表明其对微生物活性的总体毒性。

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