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Bioremediation of chlorpyrifos contaminated soil by two phase bioslurry reactor: Processes evaluation and optimization by Taguchi's design of experimental (DOE) methodology

机译:两相生物泥浆反应器对毒死rif污染土壤的生物修复:田口实验设计方法的评估和优化

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摘要

Two phase bioreactor was constructed, designed and developed to evaluate the chlorpyrifos remediation. Six biotic and abiotic factors (substrate-loading rate, slurry phase pH, slurry phase dissolved oxygen (DO), soil water ratio, temperature and soil micro flora load) were evaluated by design of experimental (DOE) methodology employing Taguchi's orthogonal array (OA). The selected six factors were considered at two levels L-8 array (2(boolean AND)7, 15 experiments) in the experimental design. The optimum operating conditions obtained from the methodology showed enhanced chlorpyrifos degradation from 283.86 mu g/g to 955.364 mu g/g by overall 70.34% of enhancement. In the present study, with the help of few well defined experimental parameters a mathematical model was constructed to understand the complex bioremediation process and optimize the approximate parameters upto great accuracy.
机译:构造,设计和开发了两相生物反应器,以评估毒死rif的修复。通过使用田口氏正交阵列(OA)设计的实验(DOE)方法设计,评估了六个生物和非生物因素(底物加载速率,浆相pH,浆相溶解氧(DO),土壤水比,温度和土壤微生物区系负载)。 )。在实验设计中,在两个级别的L-8数组(2(布尔AND)7,15个实验)中考虑了所选的六个因子。从该方法获得的最佳操作条件显示毒死rif降解能力从283.86μg / g提高到955.364μg / g,提高了70.34%。在本研究中,借助几个定义明确的实验参数,构建了一个数学模型来理解复杂的生物修复过程并优化近似参数,以达到最高的准确性。

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