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初始物料堆积密度和易降解有机物含量对黄瓜秸秆堆肥过程中温度变化的影响。

Effect of initial material bulk density and easily-degraded organic matter content on temperature changes during composting of cucumber stalk.

机构信息

College of Resource and Environmental Science, China Agricultural University, Beijing 100094, China.

College of Resource and Environmental Science, China Agricultural University, Beijing 100094, China.

出版信息

J Environ Sci (China). 2019 Jun;80:306-315. doi: 10.1016/j.jes.2017.10.004. Epub 2017 Oct 18.

Abstract

To inactivate the potentially pathogenic microorganisms and safely utilize vegetable waste compost, ultra-high temperatures (>70°C) should be maintained during the composting without having an inhibitory effect on maturity. This study investigated the influence of bulk density (part 1) and easily-degraded organic matter content (EDOMC, part 2) on temperature evolution during vegetable waste composting: Part 1: corn straw with different particle sizes was used to achieve different bulk densities in the composting material (BD1-BD3); Part 2: partial or total substitution of the corn straw by corn starch was carried out to obtain different EDOMC (ED1-ED4). The composting experiments were conducted in a lab-scale reactor (1.75kg material) and lasted for 30d. Temperature and CO emission were recorded daily, and the organic matter, lignocellulose, microbial activity, germination index (GI) and C/N of the samples were measured at different stages. The highest temperature (65.7°C) in part 1 occurred in the treatment with the bulk density of 0.35g/cm, which also had the longest thermophilic phase. Bulk density was found to seriously influence the utilization efficiency of O and heat transfer through materials, rather than heat production from organic matter degradation. In experiment part 2, the highest temperature was obtained with EDOMC of 45% (71.4°C). Therefore, adjusting the bulk density to 0.35g/cm and the easily-degraded organic matter content of the initial material to 45% was the best combination for reaching temperatures above 70°C during composting, with no inhibitory effect on the maturity of the compost product.

摘要

为了灭活潜在的致病微生物并安全利用蔬菜废物堆肥,在堆肥过程中应保持超高温度(>70°C),而不会对成熟度产生抑制作用。本研究调查了堆肥过程中容积密度(第 1 部分)和易降解有机物含量(EDOMC,第 2 部分)对温度演变的影响:第 1 部分:使用不同粒径的玉米秸秆来实现堆肥材料中的不同容积密度(BD1-BD3);第 2 部分:通过部分或全部用玉米淀粉替代玉米秸秆来获得不同的 EDOMC(ED1-ED4)。堆肥实验在实验室规模的反应器(1.75kg 材料)中进行,持续 30d。每天记录温度和 CO 排放,在不同阶段测量样品中的有机物、木质纤维素、微生物活性、发芽指数(GI)和 C/N。第 1 部分中容积密度为 0.35g/cm 的处理达到了最高温度(65.7°C),并且具有最长的嗜热期。发现容积密度严重影响了通过材料的 O 和热量传递的利用效率,而不是有机物质降解产生的热量。在第 2 部分实验中,EDOMC 为 45%(71.4°C)时达到了最高温度。因此,将容积密度调整为 0.35g/cm 并将初始材料中的易降解有机物含量调整为 45%是在堆肥过程中达到 70°C 以上温度的最佳组合,对堆肥产品的成熟度没有抑制作用。

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