Ma Y, Zhang J Y, Wong M H
Department of Biology, Institute for Natural Resources and Environmental Management, Hong Kong Baptist University, Kowloon Tong, Hong Kong.
Chemosphere. 2003 Sep;52(9):1505-13. doi: 10.1016/S0045-6535(03)00489-2.
Microbial activity of an anthracene-spiked soil mixed with kitchen waste during laboratory composting at 56-59 degrees C was studied using an in-vessel technology. The effect of old compost containing acclimated microorganisms on the composting efficiency was also investigated. Microbial succession, microbial enzyme activity, microbial diversity and anthracene removal rate were analyzed during 42 days of composting. The results demonstrated that inoculating with old compost increased the amounts of thermophilic microorganisms, but did not significantly increase anthracene removal. A microbial succession from mesophilic bacteria to thermophilic bacteria and thermophilic actinomycetes was observed during composting. Polyphenol oxidase activity decreased while catalase activity varied irregularly. Microbial diversity increased drastically when temperature elevated from 35 to 56 degrees C, but decreased when temperature maintained at 56-59 degrees C.
采用室内堆肥技术,研究了在56 - 59摄氏度下实验室堆肥过程中,添加蒽的土壤与厨余垃圾混合后的微生物活性。还研究了含有驯化微生物的旧堆肥对堆肥效率的影响。在42天的堆肥过程中,分析了微生物演替、微生物酶活性、微生物多样性和蒽去除率。结果表明,接种旧堆肥增加了嗜热微生物的数量,但并未显著提高蒽的去除率。堆肥过程中观察到从嗜温细菌到嗜热细菌和嗜热放线菌的微生物演替。多酚氧化酶活性下降,而过氧化氢酶活性变化不规则。当温度从35摄氏度升高到56摄氏度时,微生物多样性急剧增加,但当温度保持在56 - 59摄氏度时,微生物多样性下降。