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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Integrated composting-vermicomposting process for stabilization of human faecal slurry
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Integrated composting-vermicomposting process for stabilization of human faecal slurry

机译:堆肥-堆肥-一体化堆肥工艺可稳定人粪便

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In the present study, feasibility of an integrated composting-vermicomposting process is assessed for stabilization of human faecal slurry using matured vermicompost as bulking material and Eisenia fetida as earthworm species. A preliminary study showed the dominant role of relative humidity over temperature on the water loss from the slurry-vermicompost mixture. The composting stage, spanning 5 months, produced sufficient enrichment of bulking material with organic matter after 20 cycles of recycling and mixing with faecal slurry, and produced materials acceptable for vermicomposting under ambient conditions. Vermicomposting of composted material was conducted for a duration of six months with a stocking density of 3.0kg/m~2. Vermicomposting resulted in significant reduction in volatile solids (from 527 to 340mg/g dry weight), oxygen uptake rate (from 29.40 to 0.82 mg-02/g/h), total carbon (43%), total organic carbon (41%), and significant increase in total phosphorus (from 14.0 to 20.5 mg/g dry weight) and potassium (24.8-54.3 mg/g dry weight). No total coliforms, faecal coliforms, Salmonella and viable helminth ova were detected in the processed vermicompost. The results of the study indicated the potential of the integrated composting-vermicomposting system for converting human faecal slurry into organic manure.
机译:在本研究中,使用成熟的ver堆肥作为填充材料,将and子作为as种,评估了综合堆肥ver堆肥工艺对人粪便稳定的可行性。初步研究表明,相对湿度相对于温度的主要作用是浆液-ver石混合料的水分流失。堆肥阶段为期5个月,经过20次循环并与粪便混合后,产生了充实的散装物质和有机物,并在环境条件下产生了可堆肥的材料。堆肥物料的mi堆肥进行了六个月,堆放密度为3.0kg / m〜2。 com堆肥可显着减少挥发性固体(从527减少到340mg / g干重),吸氧率(从29.40减少到0.82 mg-02 / g / h),总碳(43%),总有机碳(41%) ,总磷(从14.0毫克/克干重至20.5毫克/克干重)和钾(24.8-54.3毫克/克干重)显着增加。在经过处理的com虫中未检测到总大肠菌,粪便大肠菌,沙门氏菌和蠕虫卵。研究结果表明,该综合堆肥-粪便堆肥系统具有将人粪便转化为有机肥料的潜力。

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