中国沼气2026,Vol.44Issue(3):26-35,10.DOI:10.20022/j.cnki.1000-1166.20260410
双源生物炭耦合复合菌剂协同预处理玉米秸秆研究
Study on the Synergistic Pretreatment of Corn Straw by Dual-Source Biochar Coupled with Compound Microbial Inoculant
摘要
Abstract
To enhance the anaerobic digestion efficiency of corn stalks,a dual-source biochar coupled with a composite mi-crobial agent was developed for a synergistic pretreatment system.Through single-factor experiments,the effects of biochar addition(5%~15%)and the ratio of dual-source biochar(corn stalk biochar∶hemp stalk biochar=1∶0,1∶1,1∶2,2∶1,0∶1)on the degradation of lignocellulose,the activity of key enzymes,and the generation of reducing sugars during the pretreatment process were systematically studied.The results indicated that the addition of dual-source biochar could signif-icantly improve the pretreatment efficiency of the composite microbial agent(Trichoderma reesei∶Trichoderma viride∶Phan-erochaete chrysosporium=1∶1∶2).The optimal parameters were a biochar addition of 12.5%(based on the dry weight of the stalks)and a dual-source biochar ratio of 1∶1.Under these conditions,after 15 days of pretreatment,the degradation rates of cellulose,hemicellulose and lignin reached 43.31%,41.05%and 25.82%respectively.Compared with the blank control group CK,they increased by 200.0%,216.8%and 370.3%respectively.Compared with the single com-pound bacteria group M,they increased by 70.1%,101.5%and 161.2%respectively.The peak activities of cellulase,xylanase,and laccase reached 158.7 U·mnL-1,142.2 U·mL-1,and 118.7 U·mnL-1,respectively,and the stability of en-zyme activity was enhanced.The peak accumulation of reducing sugars reached 16.8 mg·g-1.Structural characterization(SEM,FTIR,XRD)indicated that the synergistic pretreatment effectively disrupted the dense structure of the stalks,and the crystallinity of cellulose decreased from 35.2%to 22.6%.Biochar,through multiple mechanisms such as adsorbing microorganisms and enzymes,regulating the microenvironment of the system,and serving as an electron shuttle,produced a synergistic effect with the composite microbial agent,providing high-quality substrates for subsequent anaerobic digestion and offering technical references for the efficient energy utilization of corn stalks.关键词
玉米秸秆/生物炭/复合菌剂/预处理/木质纤维素降解Key words
corn straw/biochar/complex microbial inoculant/pretreatment/lignocellulose degradation分类
农业科技引用本文复制引用
张思雨,王欣,张慧琳,常虹,刘伟,苏小红,赵新月,穆泽彦..双源生物炭耦合复合菌剂协同预处理玉米秸秆研究[J].中国沼气,2026,44(3):26-35,10.基金项目
黑龙江省重点研发计划(2023ZX02C05) (2023ZX02C05)
黑龙江省科学院重大攻关项目(ZDGG2024NY01) (ZDGG2024NY01)
黑龙江省科学院青年创新基金(CXMS2024NY02). (CXMS2024NY02)