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高水分蔬菜废物和花卉、鸡舍废物联合堆肥的中试研究
引用本文:张相锋,王洪涛,聂永丰,邱向阳.高水分蔬菜废物和花卉、鸡舍废物联合堆肥的中试研究[J].环境科学,2003,24(2):147-151.
作者姓名:张相锋  王洪涛  聂永丰  邱向阳
作者单位:清华大学环境科学与工程系,北京,100084
基金项目:国家重大科技攻关专项(K99-05-35-02)
摘    要:以滇池流域的典型农业废物蔬菜、花卉废物和鸡舍废物为原料,进行了不同配比的联合堆肥中试研究.一次发酵采用温度反馈通气量控制的静态好氧堆肥系统,二次发酵采用周期性翻堆自然腐熟.在一次发酵阶段,堆体温度在55℃以上保持至少3d,最高温度达73.3℃,可有效杀灭致病菌;堆体含水率从75%降低到56%,多余水分得到快速去除;有机质从65%降低到50%,pH值稳定在8.二次发酵后堆肥产物的腐熟度和养分分析结果表明,产物稳定性好,养分含量高.通过堆肥工艺的优化控制,蔬菜废物、花卉废物和鸡舍废物联合堆肥可以获得高质量的堆肥产品,废物还田能有效减少固体废物非点源污染、提高土壤肥力.

关 键 词:高水分蔬菜废物  花卉废物  鸡舍废物  联合堆肥  非点源污染
文章编号:0250-3301(2003)02-05-0147
收稿时间:2002/4/15 0:00:00
修稿时间:2002年4月15日

Co-composting of High Moisture Vegetable Waste, Flower Waste and Chicken Litter in Pilot Scale
Zhang Xiangfeng,Wang Hongtao,Nie Yongfeng and Qiu Xiangyang.Co-composting of High Moisture Vegetable Waste, Flower Waste and Chicken Litter in Pilot Scale[J].Chinese Journal of Environmental Science,2003,24(2):147-151.
Authors:Zhang Xiangfeng  Wang Hongtao  Nie Yongfeng and Qiu Xiangyang
Institution:Dept. of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China.
Abstract:Co-composting of different mixture made of vegetable waste, flower waste and chicken litter were studied. The first stage of composting was aerobic static bed based temperature feedback and control via aeration rate regulation. The second stage was window composting. At first stage, the pile was insulated and temperatures of at least 55 degrees C were maintained for a minimum of 3 days. The highest temperature was up to 73.3 degrees C. This is enough to kill pathogens. Moisture of pile decreased from 75% to 56% and organic matter was degraded from 65% to 50% during composting. The value of pH was stable at 8. Analysis of maturity and nutrition of compost showed that end-products of composting ware bio-stable and had abundant nutrition. This shows that co-composting of vegetable waste, flower waste and chicken litter can get high quality compost by optimizing composting process during 45 days. Composting can decrease nonpoint resource of organic solid waste by recycling nutrition to soil and improve fertility of soil.
Keywords:high moisture vegetable waste  flower waste  chicken litter  co composting  non point resource pollution
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