高水分蔬菜和花卉废物序批式进料联合堆肥的中试 |
摘要点击 1842 全文点击 1727 投稿时间:2002-09-24 修订日期:2002-11-29 |
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中文关键词 高水分蔬菜废物 花卉废物 联合堆肥 温度反馈通气量控制 序批式进料 |
英文关键词 high-moisture vegetable wastes flower wastes co-composting temperature feedback and control via aeration rate regulation sequential fed |
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中文摘要 |
以滇池流域典型蔬菜废物(西芹、白菜)和花卉废物(石竹)为原料,进行了序批式联合堆肥的试验研究.以西芹和石竹作为初始物料,控制初始混合物料的含水率在60%~70%,每隔4d添加一次白菜;采用温度反馈通气量控制的好氧静态堆肥技术,在堆体温度40℃左右时停止通风.试验分析了堆肥过程中堆体温度、通风速率、水分、pH值、有机质、灰分、体积、NH4+-N,NO3--N等指标随时间的变化特征.结果表明:采用序批式进料、温度反馈通气量控制的静态好氧堆肥技术进行蔬菜和花卉废物联合堆肥可以有效控制堆肥过程,实现有机物料的快速稳定和去除水分,解决了滇池流域蔬菜废物量远大于花卉废物量时堆肥难以有效进行的技术难题. |
英文摘要 |
Co-composting of high moisture vegetable wastes (celery and cabbage) and flower wastes (carnation) were studied in a sequential fed bed. The preliminary materials of composting were celery and carnation wastes. The sequential fed materials of composting were cabbage wastes and were fed every 4 days. Moisture content of mixture materials was between 60% and 70%. Composting was done in an aerobic static bed of composting based temperature feedback and control via aeration rate regulation. Aeration was ended when temperature of the pile was about 40℃. Changes of composting of temperature, aeration rate, water content, organic matter, ash, pH, volume, NH4+-N, and NO3--N were studied. Results show that co-composting of high moisture vegetable wastes and flower wastes, in a sequential fed aerobic static bed based temperature feedback and control via aeration rate regulation, can stabilize organic matter and removal water rapidly. The sequential fed operation are effective to overcome the difficult which traditional composting cannot applied successfully where high moisture vegetable wastes in more excess of flower wastes, such as Dianchi coastal. |
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