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Development Of Bioreactor System For Treatment Of Dioxin-contaminated soil Using Pseudallescheria Boydii

机译:博伊氏假单胞菌处理二恶英污染土壤的生物反应器系统的开发

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We developed a conceptual feasible design of bioreactor system for treatment of dioxin-contaminated soils that uses the dioxin-degrading fungus Pseudallescheria boydii (P. boydii) we had isolated. The dioxin-degradation conditions in bioreactor treatment was established by clarifying the inhibiting factors for the growth of P. boydii using both real contaminated and laboratory prepared soils mixed with fly ash. In addition, ethanol extraction process as post-treatment methods for the remaining dioxins, and the sterilization conditions of P. boydii, i.e., a weakly pathogenic fungus, in the residue was investigated. The better growth conditions of P. boydii were found to be chloride ion concentration of less than 10 g/L and a pH of less than 9. Under these conditions, 7310pg-TEQ/g of the soil was treated to 2860pg-TEQ/g by the bioreactor process, and the dioxin concentration was further decreased to 580pg-TEQ/g by ethanol extraction, resulting to total removal ratio of 92%. Furthermore, development of an effective sterilization method for living P. boydii in the residue increased the applicability of our bioreactor system for practical use in dioxin-contaminated sites.
机译:我们开发了一种概念上可行的生物反应器系统设计,该系统用于处理被二恶英污染的真菌Pseudallescheria boydii(P. boydii)所污染的二恶英污染土壤。通过澄清使用实际污染的土壤和实验室制备的土壤与粉煤灰混合来澄清博伊氏假单胞菌生长的抑制因素,从而建立了生物反应器处理中的二恶英降解条件。此外,还研究了乙醇提取工艺作为残留二恶英的后处理方法,并研究了残留物中博伊氏假单胞菌(即弱病原性真菌)的灭菌条件。发现博伊氏假单胞菌更好的生长条件是氯离子浓度小于10 g / L,pH小于9。在这些条件下,将7310pg-TEQ / g的土壤处理为2860pg-TEQ / g通过生物反应器工艺,乙醇萃取将二恶英浓度进一步降低至580pg-TEQ / g,总去除率为92%。此外,开发出一种有效的杀菌方法,以使残留的波氏疟原虫活着,这增加了我们的生物反应器系统在二恶英污染场所中实际应用的适用性。

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