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Enhancement of anaerobic digestion of sisal leaf decortication residues by biological pre-treatment

机译:生物预处理增强剑麻叶片去壳残渣的厌氧消化

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In recent years, the use of agro-industrial residues as feedstocks for biogas production has gained great attention worldwide due to limited reserves of fossil fuels. The sisal industry in Tanzania generates large quantities of sisal leaf decortication residues (SLDR) with good potential for biomethane production. However, the process is limited by the lignocellulosic nature of SLDR, making it not effectively degraded under anaerobic conditions. The effects of biological pretreatment of SLDR under solid state fermentation with a ligninolytic CCHT-1 strain and Trichoderma reseei at different inoculation rates and incubation periods to improve methane production were investigated. The methane production potential of the pretreated substrate was determined in batch anaerobic bioreactors. SLDR was pre-treated with CCHT-1 for 4 days at an inoculation rate of 10 % (wet weight inoculant/ SLDR) gave methane yield of 0.203±0.019 m3 CH4/kg VSadded, while pre-treatment of SLDR with T. reseei for 8 days at an inoculation rate of 25 % (wet weight inoculant/SLDR) gave methane yield of 0.192±0.024 m3 CH4/kg VSadded. This was an increment of between 24 to 30% in methane yield, compared to 0.145±0.015 m3 CH4/kg VSadded obtained for the untreated samples. In conclusion, the results demonstrated the suitability of biological pre-treatment method using fungi for enhanced anaerobic digestion of SLDR.
机译:近年来,由于化石燃料的储量有限,将农业工业残余物用作沼气生产的原料已引起全世界的广泛关注。坦桑尼亚的剑麻工业产生大量的剑麻叶去皮残留物(SLDR),具有生产生物甲烷的良好潜力。但是,该过程受到SLDR木质纤维素性质的限制,使其在厌氧条件下无法有效降解。研究了木质素分解CCHT-1菌株和里氏木霉在不同接种率和孵育时间下固态发酵对SLDR进行生物预处理对提高甲烷产量的影响。在分批厌氧生物反应器中确定了预处理底物的甲烷生产潜力。 SLDR用CCHT-1以10%的接种率(湿重接种剂/ SLDR)预处理4天,甲烷产率为0.203±0.019 m 3 CH 4 / kg V​​S添加,同时以25%的接种率(湿重接种剂/ SLDR)用瑞氏梭菌将SLDR预处理8天,甲烷产量为0.192±0.024 m 3 CH < SUB> 4 / kg V​​S已添加。与未经处理的样品中添加的0.145±0.015 m 3 CH4 / kg V​​S相比,甲烷的产率增加了24%至30%。总之,结果证明了使用真菌的生物预处理方法对于增强SLDR厌氧消化的适用性。

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