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Application of rotary in-vessel composting and analytical hierarchy process for the selection of a suitable combination of flower waste

机译:旋转式堆肥和层次分析法在选择花卉废弃物组合中的应用

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摘要

The flower waste generated from different sources is either mixed with municipal solid waste or thrown into the river in India. Flower waste is rich in organic contents and can be converted into nutrient-enriched compost. The aim of the present study was to determine the changes in physico-chemical and biological changes during the composting of flower waste by using rotary drum technique. For composting the flower, waste was mixed with cow dung, sawdust, and wheat bran. Four different trials were performed, in which 0.5?wt% of sawdust and wheat bran was added in each trial. From the series of trials 1–4, the different proportions of flower waste and cow dung were 5:4, 6:3, 7:2 and 8:1, respectively. Finally, the compost produced by all the trials were found to have pH?7.23–7.51, electrical conductivity 5.5–6.12?mS/cm, reduction in the percentage of total organic carbon 22–33%, the percentage increase in total nitrogen 2.17–2.66%, C:N ratio 13–17, sodium 2.14–2.60?g/kg and calcium 13.35–15.58?g/kg. The analytical hierarchy process was used for the ranking of the trials to find the best proportions from the different combinations performed in this study.
机译:来自不同来源的花朵废料要么与城市固体废料混合,要么被扔到印度的河流中。花卉废料含有丰富的有机成分,可以转化为营养丰富的堆肥。本研究的目的是通过旋转鼓技术确定花废料堆肥过程中的理化和生物学变化。为了使花朵堆肥,将废物与牛粪,木屑和麦麸混合。进行了四个不同的试验,每个试验中添加了0.5wt%的木屑和麦麸。从一系列试验1-4中,花废物和牛粪的不同比例分别为5:4、6:3、7:2和8:1。最后,所有试验产生的堆肥的pH值在7.23–7.51,电导率在5.5–6.12?mS / cm,有机碳总量的百分比降低了22–33%,总氮的百分比提高了2.17– 2.66%,碳氮比13–17,钠2.14–2.60?g / kg,钙13.35–15.58?g / kg。使用分析层次结构过程对试验进行排名,以从本研究中进行的不同组合中找到最佳比例。

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