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Static, dynamic and inoculum augmented respiration based test assessment for determining in-vessel compost stability

机译:基于静态,动态和接种物增强呼吸作用的测试评估,以确定容器中堆肥的稳定性

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The purpose of this work was to evaluate compost (and related industry) stability tests given recent large-scale changes to feedstock, processing techniques and compost market requirements. Five stability tests (ORG0020, DR4, Dewar self-heating, oxygen update rate (OUR) and static respiration) were evaluated on composts from ten in-vessel composting sites. Spearman rank correlation coefficients were strong for the ORG0020, OUR and DR4 (both CO_2 and O_2 measurement), however, OUR results required data extrapolation for highly active compost samples. By comparison the Dewar self-heating and static respiration tests had weaker correlations, in part the result of under reporting highly active, low pH samples. The findings suggest that despite differences in pre-incubation period both dynamic respiration tests (ORG0020 and DR4) are best suited to deal with the wide range of compost stabilities found.
机译:鉴于最近对原料,加工技术和堆肥市场的要求进行了大规模变更,这项工作的目的是评估堆肥(及相关行业)的稳定性测试。对来自十个船上堆肥场的堆肥进行了五项稳定性测试(ORG0020,DR4,杜瓦瓶自热,氧气更新率(OUR)和静态呼吸)。对于ORG0020,OUR和DR4(CO_2和O_2均测量),Spearman等级相关系数很强,但是,我们的结果需要对高活性堆肥样品进行数据推断。相比之下,杜瓦瓶的自热和静态呼吸测试的相关性较弱,部分原因是未报告高活性,低pH的样品。研究结果表明,尽管潜伏期不同,两种动态呼吸测试(ORG0020和DR4)都最适合处理各种堆肥稳定性。

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