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Using Enhanced Landfarming System to RemediateDiesel Oil-contaminated Soils

机译:使用增强的耕种系统修复柴油污染的土壤

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The objective of this study was to assess the potential of applying enhanced landfarming system on the treatment of diesel-oil contaminated soils.Laboratory reactors were conducted to determine the optimal operational conditions of the modified landfarming.Except of frequent soil tilling for air replacement,different additive was added in each reactor enhance the removal efficiency of total petroleum hydrocarbon (TPH).The additives used in this study included kitchen waste compost,petroleum-hydrocarbon (PH) degrading bacteria,rice husks,and activated sludge.PH-degrading bacteria were isolated from PH contaminated soils and activated sludge was collected from a wastewater treatment plant containing PH in the influent.PH-degrading bacteria and sludge were added to increase the microbial population and diversity.Rice husk was used as the bulking agent (soil to bulking agent volume ratio =3:1) to increase the soil permeability.The compost (soil to compost volume ratio =3∶1) was used as organic amendment to increase both the microbial population and soil permeability.Results indicate that the highest first-order TPH decay rate and removal ratio were approximately 0.1 dayt and 92.4%,respectively,observed in reactor containing compost.In the compost reactor,TPH dropped from 5,900 to 450 mg/kg and total viable bacterial counts increased from 9.4×l05 to 7.2x 108 cfu/g of soil within 25 days of incubation.This indicates that the kitchen waste compost contained high microbial population and organic content,which could cause the rapid bacterial growth and enhance the TPH degradation.The TPH removal ratios for sludge,PH-degrading bacteria,rice husks,and control reactors were 86.9,83.1,79.7,and 54%,respectively.This indicates that the soil tilling played an important role in the landfarming system,and significant amount of TPH removal was due to the volatilization mechanism.Adding sludge or PH-degrading bacteria could cause the increase in both the total microbial population and specific PH-degrading microbial consortia,which caused the increased TPH removal efficiency.
机译:这项研究的目的是评估将改良的耕种系统应用于处理柴油污染的土壤的潜力。进行了实验室反应堆以确定改良的耕种的最佳运行条件。在每个反应器中添加添加剂可提高总石油烃(TPH)的去除效率。本研究中使用的添加剂包括厨余垃圾,石油-烃(PH)降解细菌,稻壳和活性污泥。从PH污染的土壤中分离出活性污泥,并从废水中含有PH的污水处理厂收集活性污泥,加入降解PH的细菌和污泥以增加微生物的数量和多样性。体积比= 3:1)以提高土壤渗透性。堆肥(土壤与堆肥的体积比= 31:1)用作组织结果表明,在含有堆肥的反应堆中,最高一级TPH衰减速率和去除率分别约为0.1天和92.4%。在堆肥反应堆中,TPH从孵化后25天内,土壤的含量从5,900增加到450 mg / kg,总活细菌数量从9.4×l05增加到7.2x 108 cfu / g土壤,这表明厨房垃圾堆肥中微生物含量高且有机物含量高,可能导致细菌快速生长并促进TPH降解。污泥,PH降解细菌,稻壳和控制反应器的TPH去除率分别为86.9、83.1、79.7和54%。这表明土壤耕作起了重要作用。在耕作系统中,大量的TPH去除是由于其挥发机制。添加污泥或降解PH的细菌可能会导致总微生物种群和微生物数量的增加。特定的PH降解微生物菌群,从而提高了TPH去除效率。

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