王海候, 何胥, 陶玥玥, 金梅娟, 陆长婴, 施林林, 周新伟, 沈明星. 添加不同粒径炭基辅料改善猪粪好氧堆肥质量的效果[J]. 农业工程学报, 2018, 34(9): 224-232. DOI: 10.11975/j.issn.1002-6819.2018.09.028
    引用本文: 王海候, 何胥, 陶玥玥, 金梅娟, 陆长婴, 施林林, 周新伟, 沈明星. 添加不同粒径炭基辅料改善猪粪好氧堆肥质量的效果[J]. 农业工程学报, 2018, 34(9): 224-232. DOI: 10.11975/j.issn.1002-6819.2018.09.028
    Wang Haihou, He Xu, Tao Yueyue, Jin Meijuan, Lu Changying, Shi Linlin, Zhou Xinwei, Shen Mingxing. Improving pig manure aerobic composting quality by using carbonaceous amendment with different particle sizes[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(9): 224-232. DOI: 10.11975/j.issn.1002-6819.2018.09.028
    Citation: Wang Haihou, He Xu, Tao Yueyue, Jin Meijuan, Lu Changying, Shi Linlin, Zhou Xinwei, Shen Mingxing. Improving pig manure aerobic composting quality by using carbonaceous amendment with different particle sizes[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2018, 34(9): 224-232. DOI: 10.11975/j.issn.1002-6819.2018.09.028

    添加不同粒径炭基辅料改善猪粪好氧堆肥质量的效果

    Improving pig manure aerobic composting quality by using carbonaceous amendment with different particle sizes

    • 摘要: 为提高畜禽粪便堆肥质量和改善堆肥工艺,创制了一种炭基辅料,与猪粪、食用菌渣混合,进行了30 d的堆肥试验。设置了3个处理,即:猪粪与食用菌渣高温好氧堆肥(CK)、1~2 cm粒径炭基辅料替代CK处理中60%(体积比)的食用菌渣(B1)、6~7 cm粒径炭基辅料替代CK处理中60%的食用菌渣(B2)。监测了堆肥体的温度、氨挥发、氧化亚氮排放、pH值、EC值等参数变化情况,并以堆肥初次升温至55 ℃所需时间、氮素损失率、C/N比变化率、种子发芽指数、辅料回收率为指标,采用模糊评价法,分析了不同粒径炭基辅料在堆肥中的应用效果。结果表明,与CK相比,炭基辅料可以显著促进堆温快速上升、提高堆肥积温(P<0.05),B1、B2处理的堆肥体初次升温至55 ℃所需时间分别较CK减少了4、11 d,堆肥积温显著大于CK,B2处理的促升温、增温效应优于B1处理;堆肥30 d后,CK、B1与B2处理的氨挥发累积量分别为605.41,374.94,303.68 mg/kg,氧化亚氮排放累积量分别为35.80,49.53,74.94 mg/kg,B1、B2处理的堆肥体氮素损失率为43.10%,39.67%,分别较CK降低了16.13%,22.81%,堆肥体氮素损失的降低主要是NH3挥发的有效控制;炭基辅料降低了堆肥体的EC值,显著提高了种子发芽指数(P<0.05);根据模糊评价结果,B2处理的堆肥效果优于B1处理,炭基辅料应用于高温好氧堆肥工艺的适宜粒径为6~7 cm。

       

      Abstract: Abstract: Aerobic composting is an important technical approach to the harmless and resource utilization of livestock and poultry waste. In actual composting, a certain amount of auxiliary materials should be added to promote the effective operation of aerobic composting. At present, the auxiliary materials are divided into activity and inertia from the angle of participating in the fermentation process, while the effect of active auxiliary materials on improving the structure of the reactor is not obvious, and the disadvantage of inert auxiliary material was that it could not regulate the carbon nitrogen ratio of the material. In order to realize the auxiliary material with diversity of function such as regulating the chemical properties of compost material, improving the heap structure, etc. Woodland waste such as branches, were used in this study, and non-sufficiently carbonized by biomass carbonization equipment, which was used as carbonaceous amendment (CA) to improve the quality and technology of manure aerobic composting. The granule surface of CA material was carbon, and the interior was still wood structure. The feedstocks for composting were mainly pig manure and edible fungus residues. Three treatments included the CK (pig manure and edible fungus residue compost), B1 and B2 (60% of edible fungus residue (volume ratio) in the CK treatment was replaced by the CA with particle size of 1-2 and 6-7 cm, respectively). The composting treatments were in triplicate and lasted for 30 days. The changes of parameters such as temperature, ammonia volatilization, nitrous oxide emission, pH value and EC value were monitored. Days heating up to 55 ℃ for the first time, nitrogen loss rate, C/N change rate, seed germination index and the recovery rate of auxiliary materials were selected as the evaluation indexes, the application effect of CA in composting was analyzed by the fuzzy evaluation method. The results showed that, compared with control, CA could obviously promote the rapid increase of the heap temperature, reduce the days heating up to 55℃ for the first time by 4 to 11 days, significantly raise compost accumulated temperature. The heating and warming effect of B2 treatment was better than that of B1 treatment. After 30 days of composting, the total ammonia volatilization amount of three treatments (CK, B1, B2) were 605.41, 374.94, 303.68 mg/kg, and the accumulated amount of nitrous oxide emission was 35.80, 49.53, 74.94 mg/kg, respectively. The nitrogen loss rates of B1 and B2 treatments were decreased by 16.13% and 22.81%. The decrease of nitrogen loss in composting was mainly due to the effective control of NH3 volatilization. The CA auxiliary materials reduced the EC value of the compost, significantly improved the C/N change rate and the seed germination index. By the comprehensive comparison of various parameters and fuzzy evaluation results, the composting effect of B2 treatment was better than that of B1 treatment. CA could effectively promote the decomposition of pig manure and improve the quality of compost products, the suitable particle size for aerobic composting process with high temperature was 6-7 cm.

       

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