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Effects of different lipid contents on growth of earthworms and the products during vermicomposting

机译:不同脂质含量对ver堆肥过程中worm及其产品生长的影响

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In China, the production of kitchen waste was more than 97 million tons per year in 2016. The high lipid content of kitchen waste makes it hard to degrade. Vermicomposting is a kind of low-cost biotechnology through the combination of earthworms and microbes, which could be considered in converting kitchen waste to valuable products. However, the effect of the lipid in kitchen waste on earthworms and composting is not known yet. The objective of this study was to analyze the effects of lipid on vermicomposting and to derive the most suitable lipid content in vermicomposting. In our study, kitchen waste with four different lipid contents was prepared: 0% (A), 5% (B), 10% (C) and 15% (D). The earthworm growth and chemical characters of substrates were measured at the interim (14 days) and the end (28 days) of vermicomposting. Our results showed that the high content of lipid had negative effects on growth of earthworms and products in vermicomposting. The kitchen waste with lower lipid content could be better composted by earthworms. The average body weight of the earthworm increased by 9% in treatment A. Total nitrogen, available phosphorus, available potassium and nitrate nitrogen of treatment A with 0% (measured value: 5%) lipid content were significantly higher than those in other treatments. Meanwhile, treatment A had the lowest carbonitrogen ratio which might be due to hindrances in the breathing and activities of earthworms. The high content of lipid makes growth of aerobic bacteria such as nitrifying bacteria difficult.
机译:在中国,2016年厨房垃圾的年产量超过9700万吨。厨房垃圾的高脂质含量使其难以降解。 com堆肥是through和微生物相结合的一种低成本生物技术,可以考虑将厨余垃圾转化为有价值的产品。但是,厨余中的脂质对earth和堆肥的影响尚不清楚。这项研究的目的是分析脂质对ver堆肥的影响,并得出最合适的脂质含量。在我们的研究中,准备了具有四种不同脂质含量的厨余垃圾:0%(A),5%(B),10%(C)和15%(D)。在ver堆肥的中期(14天)和结束(28天)测量)的生长和底物的化学特性。我们的结果表明,高脂质含量对ver堆肥中worm和产品的生长具有负面影响。 lipid含量较低的厨房垃圾可以用by更好地堆肥。 treatment在处理A中的平均体重增加了9%。脂质A为0%(测量值:5%)的处理A中的总氮,有效磷,有效钾和硝酸盐氮显着高于其他处理。同时,处理A具有最低的碳/氮比,这可能是由于worm的呼吸和活动障碍所致。脂质的高含量使需氧细菌例如硝化细菌的生长变得困难。

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