Antizar-Ladislao Blanca, Lopez-Real Joseph, Beck Angus J
Department of Agricultural Sciences, Imperial College London, High Street, Wye campus, Wye, Ashford, Kent TN25 5AH, UK.
Waste Manag. 2005;25(3):281-9. doi: 10.1016/j.wasman.2005.01.009.
The biodegradation of 16 polycyclic aromatic hydrocarbons (PAHs), listed as priority pollutants by the USEPA, present in a coal-tar-contaminated soil from a former manufactured gas plant site was investigated using laboratory-scale in-vessel composting reactors to determine the suitability of this approach as a bioremediation technology. Preliminary investigations were conducted over 16 weeks to determine the optimum soil composting temperature (38, 55 and 70 degrees C). Three tests were performed; firstly, soil was composted with green-waste, with a moisture content of 60%. Secondly, microbial activity was HgCl2-inhibited in the soil green-waste mixture with a moisture content of 60%, to evaluate abiotic losses, while in the third experiment only soil was incubated at the three different temperatures. PAHs and microbial populations were monitored. PAHs were lost from all treatments with 38 degrees C being the optimum temperature for both PAH removal and microbial activity. Calculated activation energy values (E(a)) for total PAHs suggested that the main loss mechanism in the soil-green waste reactors was biological, whereas in the soil reactors it was chemical. Total PAH losses in the soil-green waste composting mixtures were by pseudo-first order kinetics at 38 degrees C (k = 0.013 day(-1), R2 = 0.95), 55 degrees C (k = 0.010 day(-1), R2 = 0.76) and at 70 degrees C (k = 0.009 day(-1), R2 = 0.73).
美国环境保护局(USEPA)将16种多环芳烃(PAHs)列为优先污染物,本研究利用实验室规模的容器内堆肥反应器,对来自某前制气厂场地的煤焦油污染土壤中这些多环芳烃的生物降解情况进行了调查,以确定这种方法作为生物修复技术的适用性。进行了为期16周的初步调查,以确定土壤堆肥的最佳温度(38、55和70摄氏度)。进行了三项试验:首先,将土壤与含水量为60%的绿色废物进行堆肥。其次,在含水量为60%的土壤-绿色废物混合物中加入HgCl2抑制微生物活性,以评估非生物损失,而在第三个实验中,仅将土壤在三种不同温度下进行培养。对多环芳烃和微生物种群进行了监测。所有处理中的多环芳烃均有损失,38摄氏度是多环芳烃去除和微生物活性的最佳温度。计算得出的总多环芳烃的活化能值(E(a))表明,土壤-绿色废物反应器中的主要损失机制是生物作用,而在土壤反应器中则是化学作用。在38摄氏度(k = 0.013天-1,R2 = 0.95)、55摄氏度(k = 0.010天-1,R2 = 0.76)和70摄氏度(k = 0.009天-1,R2 = 0.73)下,土壤-绿色废物堆肥混合物中总多环芳烃的损失符合准一级动力学。