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海泡石添加对猪粪堆肥腐熟和水溶性有机质的影响
引用本文:郑威,周红,杨航波,黄磊,陈玉成,彭莉,杨志敏.海泡石添加对猪粪堆肥腐熟和水溶性有机质的影响[J].农业工程学报,2021,37(1):259-266.
作者姓名:郑威  周红  杨航波  黄磊  陈玉成  彭莉  杨志敏
作者单位:1. 西南大学资源环境学院,重庆 400716;;1. 西南大学资源环境学院,重庆 400716; 2. 农村清洁工程重庆市工程研究中心,重庆市生态环境农用地土壤污染风险管控重点实验室,重庆 400716;;3. 重庆市市政环卫监测中心,重庆 401121;
基金项目:重庆市社会事业与民生保障科技创新专项重点研发项目(CSTC2017SHMS-ZDYFX0030);重庆市城市管理局项目(城管科字2018第05号);西南山地生态循环农业国家级培育基地项目(5330200076)
摘    要:为明确黏土矿物的投加对畜禽粪便堆肥腐熟和稳定化的影响,该研究以猪粪和杨木木屑为原料,探究添加海泡石对堆肥基本理化性质、不同成分有机质含量以及溶解性有机质(Dissolved Organic Matter,DOM)结构的影响。结果表明,添加海泡石后堆体最高温度比对照有所下降且电导率上升9.69%,而C/N则降低2.81%,同时种子发芽指数提高11.96%,显示腐熟状况更好;DOM含量降低7.84%而胡敏酸占比提高9.71%,使得堆体有机质更加稳定。荧光光谱分析表明,添加海泡石堆体DOM的荧光谱图中,长波长的峰强在较短时间内出现了明显增加;三维荧光光谱-平行因子分析显示,添加海泡石增加了堆体中高芳香性组分的占比。相关性分析结果表明,添加海泡石后,高芳香性组分与总有机碳之间相关性更为显著,说明海泡石在碳素分解的同时促进了其聚合,从而出现了胡敏酸与高芳香性荧光组分的增长。添加海泡石既能促进堆体腐熟,又可转化调控碳素进而提高堆体稳定性,有利于堆肥的后续农田施用。

关 键 词:堆肥    海泡石  堆肥稳定性  DOM  三维荧光-平行因子分析
收稿时间:2020/10/26 0:00:00
修稿时间:2020/12/15 0:00:00

Effects of sepiolite addition on pig manure compost maturity and dissolved organic matter
Zheng Wei,Zhou Hong,Yang Hangbo,Huang Lei,Chen Yucheng,Peng Li,Yang Zhimin.Effects of sepiolite addition on pig manure compost maturity and dissolved organic matter[J].Transactions of the Chinese Society of Agricultural Engineering,2021,37(1):259-266.
Authors:Zheng Wei  Zhou Hong  Yang Hangbo  Huang Lei  Chen Yucheng  Peng Li  Yang Zhimin
Affiliation:1. College of Resources and Environmental Sciences, Southwest University, Chongqing 400716, China;;1. College of Resources and Environmental Sciences, Southwest University, Chongqing 400716, China; 2. Chongqing Engineering Research Center of Rural Cleaner Production/Key Laboratory of Agricultural Soil Pollution Risk Management and Control for Ecological Environment in Chongqing, Chongqing 400716, China;;3. Chongqing Municipal Environmental Sanitation Monitoring Center, Chongqing 401121, China;
Abstract:Pig manure has caused the most serious environmental pollution among various animal manure, where estimated approximately 776 million tons in each year in China. Aerobic composting can be expected as an effective technique to treat the solid organic wastes, thereby to decompose inconstant and hazardous organic matter, and futher to quickly reduce the total amount and inactivate biotoxicity of wastes. Previous reports indicated that clay minerals have observably influence on the decomposition of organic matter (OM) in soil system. However, the research is still lacking on the intermolecular interactions between clay minerals and OM in the composting, even though the OM was more simple and active. Taking the pig manure and poplar sawdust as raw materials, and sepiolite as a conditioner, this study aims to explore the influence of sepiolite on the stability of aerobic composting. An investigation was made on the variation in the maturity index of compost, organic matter in the different components of compost, and structure of water-soluble organic matter (DOM). The results showed that after sepiolite added, the maximum temperature of compost decreased obviously, and the EC value increased by 9.69%, compared to control. However, the lower C/N (decreased by 2.81%) and higher seed germination index (increased by 11.96%) were observed with the addition of sepiolite without the negative impact of finial production, while showing better maturity. These indicators suggested that the organic fertilizers with the sepiolite addition were beneficial to the application for the farmland. Most previous studies focused on the content of DOM and humic acid, representing the stable and unstable components of OM in the compost production. Compared with the control, DOM content of compost with the addition of sepiolite was reduced by 7.84%, while the percentage of humic acid increased by 9.71%, indicating that the sepiolite can influence on the content of different components of OM, and thereby make the compost more stable. In this study, fluorescence spectra were used to represent the fluorescence characteristics of DOM, further to clarify the interactions between clay minerals and OM. An excitation-emission matrices-parallel factor analysis (EEM-PAFARAC) was used to quantify the proportion of DOM components. The results demonstrated that the sepiolite significantly increased the fluorescence intensity of long-wavelength peak in the fluorescence spectrum in a relatively short period, meaning that the more stable OM was produced more quickly. After the DOM components were distinguished by EEM-PAFARAC, the proportion of highly aromatic components increased significantly in the begining phase of compost with the addition of sepiolite, indicating more higher proportion in the final production. In order to explore the causes of OM transformation in composting, the correlation analysis showed that there was a more significant negative relationship between the highly aromatic component of DOM and total organic matter, compared with the control, indicating that the OM cannot decomposed, but converted into more stable OM in the sepiolite treatment. Therefore, the sepiolite as an additive can be used to reduce the biotoxicity of composting products, while to increase the degree of maturity, and the stability of compost via impacting on the structure of organic matter.
Keywords:compost  manure  sepiolite  compost stability  DOM  EEM-PAFARAC
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