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[不同生物固体废物高温堆肥过程中的物理化学和微生物特性]

[Physico-chemical and microbial properties in thermophilic composting processes of different biological solid wastes].

作者信息

Tang Jing-chun, Zhou Qi-xing, Zhang Guan-hui

机构信息

College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China.

出版信息

Huan Jing Ke Xue. 2007 May;28(5):1158-64.

Abstract

Characterization on the physico-chemical and microbial properties were carried out in thermophilic composting processes of 3 different biological solid wastes: manure, garbage and sludge. pH increased to above 8 and C/N ratio decreased during the process. The effect of different bulking agents on the composting process is smaller compared to different raw materials. Among the 3 different materials, garbage composting shows highest composting activity, and the mass reduction rate is 47.2%-56.8% after 14 days. Quinone content, representative of microbial biomass, increases to 359.7-472.3 mol x kg(-1) at the late composting period. However quinone diversity index only increases to 6.1-6.7, suggesting lower microbial diversity. The composting activity of cattle manure is only high at initial period and then decreases. The quinone content is high at middle period of cattle manure composting with the value of 36.3-117.0 molx kg(-1). DQ is 10.3-12.8 at initial, and increases to 18.1-22.7 during cattle manure composting. The properties of sludge composting fall in the range between cattle manure and garbage. It is suggested that the differences of the composting processes are mainly caused by organic component level in different raw materials. Suggestions on the control of composting process are also proposed based on this study.

摘要

对三种不同生物固体废物(粪便、垃圾和污泥)的嗜热堆肥过程进行了物理化学和微生物特性表征。在此过程中,pH值升高至8以上,碳氮比降低。与不同的原材料相比,不同的膨松剂对堆肥过程的影响较小。在这三种不同的材料中,垃圾堆肥表现出最高的堆肥活性,14天后质量减少率为47.2%-56.8%。作为微生物生物量代表的醌含量在堆肥后期增加到359.7-472.3 mol·kg⁻¹。然而,醌多样性指数仅增加到6.1-6.7,表明微生物多样性较低。牛粪的堆肥活性仅在初期较高,然后下降。牛粪堆肥中期的醌含量较高,为36.3-117.0 mol·kg⁻¹。初期的DQ为10.3-12.8,在牛粪堆肥过程中增加到18.1-22.7。污泥堆肥的特性介于牛粪和垃圾之间。研究表明,堆肥过程的差异主要是由不同原材料中的有机成分水平引起的。基于本研究还提出了堆肥过程控制的建议。

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