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有机负荷对秸秆消化系统性能及可利用态金属浓度的影响
引用本文:邓玉营,施万胜,黄振兴,阮文权.有机负荷对秸秆消化系统性能及可利用态金属浓度的影响[J].农业工程学报,2018,34(5):204-211.
作者姓名:邓玉营  施万胜  黄振兴  阮文权
作者单位:1. 常州工程职业技术学院制药与环境学院,常州 213164; 2. 江南大学环境与土木工程学院,无锡 214122;,2. 江南大学环境与土木工程学院,无锡 214122; 3. 江南大学江苏省厌氧生物技术重点实验室,无锡 214122;,2. 江南大学环境与土木工程学院,无锡 214122; 3. 江南大学江苏省厌氧生物技术重点实验室,无锡 214122;,2. 江南大学环境与土木工程学院,无锡 214122; 3. 江南大学江苏省厌氧生物技术重点实验室,无锡 214122;
基金项目:国家自然科学基金项目(21506076、51678279、51508230);常州工程职业技术学院院级基金项目(111308002216006);江苏大学生创新创业训练计划项目(201713102015Y)
摘    要:利用农作物秸秆为原料,在半连续条件下研究厌氧反应器消化特性及金属浓度的变化。结果表明,当有机负荷(organic loading rate,OLR)为4 g/(L·d),固体停留时间(Solid rentention time,SRT)为66.7 d时,单位挥发性固体(VS)最大甲烷产率为217 m L/g,达到了理论产值的56%~58%。采用修正的Tessier法分析金属形态分布,瘤胃和厌氧污泥共接种物中的金属Zn,Cu,Fe,Ni,Mo等提供了产甲烷过程酶的辅因子,有利于水解和产甲烷活性的提高。当OLR升高到6 g/(L·d),SRT下降为40 d时,溶解性有机物(dissolved organic matter,DOM)浓度显著升高,导致金属浓度发生变化。沼渣中Zn和Fe可利用态质量分数显著下降(P0.05),分别为4.39和5.54 mg/kg,Cu可利用态质量分数下降为0.40 mg/kg。从而导致甲烷产率下降为110 m L/g,体系中挥发性脂肪酸(volatile fatty acids,VFAs)积累。乙酸、丙酸及丁酸质量浓度均值分别达到了2.02、6.54和0.53 g/L,出现酸化现象。

关 键 词:秸秆  发酵  金属  可利用态浓度  酸化
收稿时间:2017/9/27 0:00:00
修稿时间:2018/1/30 0:00:00

Effect of organic load on performance and bioavailable metal concentration of straw anaerobic digestion system
Deng Yuying,Shi Wansheng,Huang Zhenxing and Ruan Wenquan.Effect of organic load on performance and bioavailable metal concentration of straw anaerobic digestion system[J].Transactions of the Chinese Society of Agricultural Engineering,2018,34(5):204-211.
Authors:Deng Yuying  Shi Wansheng  Huang Zhenxing and Ruan Wenquan
Institution:1. School of Pharmaceutical and Environmental Engineering, Changzhou Vocational Institute of Engineering, Changzhou 213164, China; 2. School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China;,2. School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China; 3. Jiangsu Key Laboratory of Anaerobic Biotechnology, Jiangnan University, Wuxi 214122, China,2. School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China; 3. Jiangsu Key Laboratory of Anaerobic Biotechnology, Jiangnan University, Wuxi 214122, China and 2. School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China; 3. Jiangsu Key Laboratory of Anaerobic Biotechnology, Jiangnan University, Wuxi 214122, China
Abstract:Abstract: Although anaerobic digestion is an important way of straw resources utilization, methanogenesis is the rate-limiting step of this process and then metal element could have pivotal importance to methanogens. Rumen fluid and anaerobic sludge were used as inocula, whose content was 25%, and their main components and metal concentration were investigated. Using straw materials, the anaerobic digestion performance and metal concentration change were investigated with 6 organic loading rate (OLR: 1.5, 2, 3, 4, 4, 6 g/(L·d)) and solid retention time (SRT: 100, 100, 100, 100, 66.6, 40 d) in a semi-continuous reactor. Stirring speed was 80 r/min, pH value was controlled at 6.8-7.1. The result indicated that CH4 yield reached 217 mL/g volatile solid (VS) at OLR of 4 g/(L·d) and SRT of 66.7 d, which reached 56%-58% of the theoretical value. The xylanase and cellulase activities in this operating condition were higher than those of other stages, which were 6.45 and 50.06 U/mL respectively. Modified Tessier method was adopted to analyze the distributions of metal speciation in 6 different operational conditions. It was shown that bioavailable metal cofactor was supplied by Zn, Cu, Fe, Ni and Mo in the co-inoculum of rumen fluid and anaerobic sludge during the methanogenesis process, which was indispensable to hydrolytic and methanogenic activities. At the OLR of 1.5-4 g/(L·d) and SRT of 66.6-100 d, bioavailable concentrations of Zn, Cu, Fe, Ni and Mo ranged within 10.20-20.79, 0.53-0.84, 7.77-11.80, 1.15-1.57 and 0.83-1.18 mg/kg respectively. And the anaerobic reactor could run steadily. At the OLR of 6 g/(L·d) and SRT set to 40 d, the concentrations of dissolved organic matter (DOM) increased to 13.67 g/L. And the metal speciation and concentrations changed accordingly. Bioavailable concentrations of Zn and Fe in biogas residues decreased significantly (P<0.05), equal to 4.39 and 5.54 mg/kg respectively. And bioavailable concentration of Cu declined to 0.40 mg/kg. The Ni and Mo in this stage changed slightly because of lower concentrations. As a result, CH4 yield decreased to 110 mL/g and volatile fatty acids (VFAs) accumulated seriously. The concentrations of acetate, propionate and butyrate were 2.02, 6.54 and 0.53 g/L respectively, which indicated the "acidification" in the digestion reactor. This study provides a better understanding for the bioavailable concentrations of metals (especially Zn, Cu and Fe) correlated with digestion performance and methanogenic activities provoked by organic overload in the anaerobic system. Thus, the conclusions are beneficial to enhance biogas production from straw by addition of trace metals.
Keywords:straw  fermentation  metals  bioavailable concentration  acidification
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