Laboratory of Environmental Bioprocesses, Centre of Biotechnology of Sfax, Sfax, Tunisia.
Center for Sustainable Development, College of Arts and Sciences, Qatar University, Doha, Qatar.
Biotechnol Prog. 2020 Jan;36(1):e2902. doi: 10.1002/btpr.2902. Epub 2019 Oct 1.
The anaerobic digestion of the organic fraction of municipal solid waste (OFMSW) is currently an attractive treatment process with energy production in the form of biogas. Hydrolysis is the rate-limiting step for the anaerobic digestion of solid wastes. Thus, in the present study fungal enzymatic pretreatment of OFMSW was applied to enhance biogas production. Two enzyme cocktails rich on β-glucosidase were produced from submerged fermentation of Aspergillus niger on basal medium using OFMSW as carbon source and urea (Urea cocktail) and Ulva rigida as nitrogen source (Ulva cocktail). Ulva cocktail displayed an important effect on OFMSW solubilization. Therefore, an increase of reducing sugar concentration about 60% was obtained which was in correlation with chemical oxygen demand (COD) increase. The performance of enzymatic pretreatment on anaerobic digestion of OFMSW was studied by conducting biochemical methane potential tests. Results showed that the enzymatic pretreatment improved methane yield of OFMSW even at high solid concentration. High methane yield about 500 ml/g total volatile solid was obtained, which corresponds up to 68% enhancement over the control.
有机垃圾(OFMSW)的厌氧消化目前是一种具有吸引力的处理工艺,可生产沼气形式的能源。水解是固体废物厌氧消化的限速步骤。因此,本研究采用真菌酶预处理 OFMSW 来提高沼气产量。从黑曲霉在基本培养基上利用 OFMSW 作为碳源和尿素(尿素酶)和石莼作为氮源(石莼酶)的发酵液中生产了两种富含β-葡萄糖苷酶的酶混合物。石莼酶对 OFMSW 的溶解有重要作用。因此,获得了约 60%的还原糖浓度增加,这与化学需氧量(COD)的增加相关。通过进行生化甲烷潜能测试研究了酶预处理对 OFMSW 厌氧消化的性能。结果表明,即使在高固体浓度下,酶预处理也能提高 OFMSW 的甲烷产量。获得了约 500ml/g 总挥发性固体的高甲烷产量,与对照相比提高了 68%。