首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Vermicomposting of vegetable-market solid waste using Eiseniafetida: Impact of bulking material on earthworm growth and decomposition rate
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Vermicomposting of vegetable-market solid waste using Eiseniafetida: Impact of bulking material on earthworm growth and decomposition rate

机译:使用大叶艾美菊对蔬菜市场固体废物进行mi堆肥:填充材料对worm生长和分解速率的影响

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Vegetable-market solid waste is produced in millions of tones in urban areas and creates a problem of safe disposal. The aim of this study was to convert vegetable solid waste (VW) amended with wheat straw (WS), cow dung (CD), and biogas slurry (BGS) into vermicompost using earthworm Eiseniafetida. VW was mixed in bulky materials (WS, CD, and BGS) in different ratios to produce eight different combinations for laboratory screening of wastes for 15 weeks. The vermicomposting caused a decrease in organic C (12.7-28%) and C:N ratio (42.4-57.8%), while increase in total N (50.6-75.8%), available P (42.5-110.4X), and exchangeable K (36.0-78.4%) contents. Waste mineralization and humification rates were higher in bedding those containing easy digestible bulky agents, i.e., BGS and CD. Worm-processed material obtained from BGS:VW (1:2) vermibed showed the higher total N (31.3g kg~(-1)), available P (8.7gkg-]) and exchangeable K (20.7 gk g~(-1)) contents. The nutrient-rich vermicompost with acceptable C:N ratio ranges (>=1:20) indicates its agronomic potentials. Waste mixtures also supported the earthworm growth and reproduction rates in vermibeds. The results indicated that vermicomposting can be an efficient technology to convert negligible vegetable-market solid wastes into nutrient-rich biofertilizer if mixed with bulking materials in appropriate ratios.
机译:在城市地区,蔬菜市场产生的固体废物成千上万吨,产生了安全处置的问题。这项研究的目的是使用earth Eiseniafetida将经过小麦秸秆(WS),牛粪(CD)和沼液(BGS)修正的蔬菜固体废物(VW)转化为ver堆肥。大众汽车以不同比例混合在大体积材料(WS,CD和BGS)中,以产生八种不同组合,用于实验室废物筛选,历时15周。 com堆肥导致有机碳(12.7-28%)和碳氮比(42.4-57.8%)降低,而总氮(50.6-75.8%),有效磷(42.5-110.4X)和可交换钾含量增加(36.0-78.4%)含量。含有易于消化的膨松剂(即BGS和CD)的床上用品的废物矿化和腐殖化率更高。经蠕虫处理的BGS:VW(1:2)蠕虫处理材料显示出较高的总氮(31.3g kg〜(-1)),有效磷(8.7gkg-])和可交换的K(20.7 gk g〜(-1) ))内容。具有可接受的C:N比范围(> = 1:20)的营养丰富的ver粉表明其农艺潜力。废物混合物还支持ver在蠕虫中的生长和繁殖。结果表明,如果与适当比例的填充材料混合,ver堆肥可以将蔬菜市场上可忽略不计的固体废物转化为营养丰富的生物肥料。

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