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利用氧气吸收量测定法评估牛粪与垫料混合物堆肥的最佳含水量

Evaluation of Optimum Moisture Content for Composting of Beef Manure and Bedding Material Mixtures Using Oxygen Uptake Measurement.

作者信息

Kim Eunjong, Lee Dong-Hyun, Won Seunggun, Ahn Heekwon

机构信息

Department of Animal Biosystems Science, Chungnam National University, Daejeon 305-764, Korea.

Animal Environment Division, National Institute of Animal Science, Jeonju 55365, Korea.

出版信息

Asian-Australas J Anim Sci. 2016 May;29(5):753-8. doi: 10.5713/ajas.15.0875. Epub 2015 Nov 23.

Abstract

Moisture content influences physiological characteristics of microbes and physical structure of solid matrices during composting of animal manure. If moisture content is maintained at a proper level, aerobic microorganisms show more active oxygen consumption during composting due to increased microbial activity. In this study, optimum moisture levels for composting of two bedding materials (sawdust, rice hull) and two different mixtures of bedding and beef manure (BS, Beef cattle manure+sawdust; BR, Beef cattle manure+rice hull) were determined based on oxygen uptake rate measured by a pressure sensor method. A broad range of oxygen uptake rates (0.3 to 33.3 mg O2/g VS d) were monitored as a function of moisture level and composting feedstock type. The maximum oxygen consumption of each material was observed near the saturated condition, which ranged from 75% to 98% of water holding capacity. The optimum moisture content of BS and BR were 70% and 57% on a wet basis, respectively. Although BS's optimum moisture content was near saturated state, its free air space kept a favorable level (above 30%) for aerobic composting due to the sawdust's coarse particle size and bulking effect.

摘要

在动物粪便堆肥过程中,水分含量会影响微生物的生理特性以及固体基质的物理结构。如果将水分含量维持在适当水平,由于微生物活性增强,好氧微生物在堆肥过程中会表现出更活跃的耗氧情况。在本研究中,基于通过压力传感器法测得的氧气吸收率,确定了两种垫料(锯末、稻壳)以及两种垫料与牛粪的不同混合物(BS,肉牛粪便 + 锯末;BR,肉牛粪便 + 稻壳)堆肥的最佳水分水平。监测了作为水分水平和堆肥原料类型函数的广泛氧气吸收率范围(0.3至33.3毫克O₂/克挥发性固体·天)。每种物料的最大耗氧量在接近饱和条件时观察到,该饱和条件范围为持水量的75%至98%。以湿基计,BS和BR的最佳水分含量分别为70%和57%。尽管BS的最佳水分含量接近饱和状态,但由于锯末的粗粒度和膨胀效应,其自由空气空间保持了有利于好氧堆肥的水平(高于30%)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a64/4852240/a73c91616ec5/ajas-29-5-753f1.jpg

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