Han Hui-Long, Tang Jing, Jiang Hao, Zhang Min-Lian, Liu Zheng
Department of Chemical Engineering, Tsinghua University, Beijing 100084, China.
Huan Jing Ke Xue. 2008 Jan;29(1):189-95.
A new bioaugmentation technique for petroleum contaminated soil utilizing the synergistic function between bacteria and fungi in both growth and metabolism of petroleum was proposed and investigated using E. cloacae and Cun. echinulata, both of which were isolated from Zhongyuan Oil Field, Henan, China. The maximum biomass of E. cloacae and Cun. echinulata obtained in the mixed slurry culture were 3- and 20-fold as much as their respective counterpart obtained in the pure cultures. The decrease of cell activity was considerably postponed, as compared to the pure cultures. The removal of total petroleum hydrocarbon (TPH) by the mixture was higher than the sum of the individual removal obtained in the pure culture, which could be further enhanced by repeated inoculation of fresh fungal and bacterial inocula. The optimal parameters of the in situ bioremediation of crude oil-contaminated soil sampled in Zhongyuan Oil Field were determined as follows: 25% (m/m) soil humidity, 6% (m/m) of wood scraps, 2.5 x 10(4) CFU/g of E. cloacae and 2.5 x 10(7) CFU/g dry soil of Cun. echinulata. It was demonstrated that the growth behavior of the inocula and the degradation of TPH were not inhibited by the indigenous microorganisms. The in situ remediation via inoculating the fungal-bacterial consortia removed 65% of TPH in 40 days while the control experiment with the indigenous microorganisms removed 16%.
提出了一种利用细菌和真菌在石油生长和代谢中的协同作用对石油污染土壤进行生物强化的新技术,并使用从中国河南中原油田分离出的阴沟肠杆菌和刺孢小克银汉霉进行了研究。在混合泥浆培养中获得的阴沟肠杆菌和刺孢小克银汉霉的最大生物量分别是其在纯培养中获得的相应生物量的3倍和20倍。与纯培养相比,细胞活性的下降被显著推迟。混合物对总石油烃(TPH)的去除率高于纯培养中各自去除率的总和,通过重复接种新鲜的真菌和细菌接种物可进一步提高去除率。确定了中原油田原油污染土壤原位生物修复的最佳参数如下:土壤湿度25%(m/m)、木屑6%(m/m)、阴沟肠杆菌2.5×10⁴CFU/g和刺孢小克银汉霉2.5×10⁷CFU/g干土。结果表明,接种物的生长行为和TPH的降解不受土著微生物的抑制。通过接种真菌 - 细菌联合体进行原位修复在40天内去除了65%的TPH,而土著微生物的对照实验去除了16%。