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

作者信息

Aspray Thomas J, Dimambro Mary E, Wallace Phil, Howell Graham, Frederickson James

机构信息

School of Life Sciences, Heriot Watt University, Edinburgh EH14 4AS, Scotland, UK.

Cambridge Eco Ltd, 75 Derwent Close, Cambridge CB1 8DY, UK.

出版信息

Waste Manag. 2015 Aug;42:3-9. doi: 10.1016/j.wasman.2015.04.027. Epub 2015 May 16.

Abstract

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 CO2 and O2 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.

摘要

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