有机废物与工业废物和污水的生物降解性实验研究:通过蚯蚓堆肥技术进行比较

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摘要

蚯蚓堆肥是有机材料的一种中温生物氧化和稳定过程,涉及蚯蚓和微生物的共同作用。研究人员进行了一项实验,利用部分分解的有机废物(如都市固体废弃物、水果废物、蔬菜废物和庭院废物),通过本地蚯蚓物种制备蚯蚓堆肥。这项研究通过利用蚯蚓将固体废物和工业废物(即废水和污泥)转化为堆肥,成功而经济地减少了固体废物和工业废物造成的环境问题和污染问题。无毒的有机工业废物可以成为蚯蚓堆肥的潜在原料。在过去几年中,蚯蚓堆肥被用于管理工业废物和污泥,并将其转化为蚯蚓堆肥用于土地恢复实践。使用的蚯蚓是 Eudrillus euginea。在这项研究中,来自乳品业的工业污泥和污水与有机废物以不同比例混合。这一过程是在 pH 值、含水量和温度受控的条件下进行的。在这一过程中,部分分解的有机废物被蚯蚓迅速分解和破碎,从而产生了一种结构良好的稳定无毒材料,作为植物生长的土壤改良剂具有潜在的高经济价值。研究结果表明,按照奶制品废料与有机废料的顺序排列,废料的养分含量增加了,蚯蚓数量增加了,处理天数减少了。这项研究的主要目标包括找到可行的有机废物和工业废物管理技术,通过观察温度、pH 值、EC、COD、TS、VS、AC 和 C/N 等指标对稳定化途径进行详细分析,并生产出具有营养价值的优质生物肥料。
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Experimental study of biodegradability of organic waste with industrial waste combined with effluents: a comparison by vermicomposting technology
Vermicomposting is a mesophilic biooxidation and stabilization process of organic materials that involves the joint action of earthworm and microorganism. An experiment was conducted to prepare vermicompost using partially decomposed organic waste such as MSW, fruit waste, vegetable waste and yard waste by employing indigenous earthworm species. This research has been done for reducing the environmental issues, pollution problems due to solid waste and industrial waste i.e., wastewater and sludge by converting it into compost by using earthworms very successfully and economically. Non-toxic and organic industrial wastes could be potential raw material for vermicomposting. In the past few years, vermicomposting has been used for the management of industrial wastes and sludges and to convert them into vermicompost for land restoration practices. The earthworms used were Eudrillus euginea. In this study the industrial sludge and effluent from dairy industry was mixed with organic waste with different ratio. This process was done under the controlled conditions of pH, moisture content and temperature. In this process partially decomposed organic waste were broken down and fragmented rapidly by earthworms resulting in a stable non-toxic material with good structure which has a potentially high economic value as soil conditioner for plant growth. The results reveal the increased nutrient content, increased worm population and decreased processing days of the waste in the order of dairy waste with organic waste. The main objectives of this study include to find viable management techniques for organic as well as industrial waste and to make a detailed analysis of the route of stabilization with observations such as temperature, pH, EC, COD, TS, VS, AC and C/N. and to produce good quality biofertilizer fixed by nutritive values.
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