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Two-Stage Fungal Pre-Treatment for Improved Biogas Production from Sisal Leaf Decortication Residues

机译:两阶段真菌预处理,以改善剑麻叶片脱皮残留物中沼气的产生

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Sisal leaf decortications residue (SLDR) is amongst the most abundant agro-industrial residues in Tanzania and is a good feedstock for biogas production. Pre-treatment of the residue prior to its anaerobic digestion (AD) was investigated using a two-stage pre-treatment approach with two fungal strains, CCHT-1 and Trichoderma reesei in succession in anaerobic batch bioreactors. AD of the pre-treated residue with CCTH-1 at 10% (wet weight inoculum/SLDR) inoculum concentration incubated for four days followed by incubation for eight days with 25% (wet weight inoculum/SLDR) of T. reesei gave a methane yield of 0.292 ± 0.04 m3 CH4/kg volatile solids (VS)added. On reversing the pre-treatment succession of the fungal inocula using the same parameters followed by AD, methane yield decreased by about 55%. Generally, an increment in the range of 30–101% in methane yield in comparison to the un-treated SLDR was obtained. The results confirmed the potential of CCHT-1 followed by Trichoderma reesei fungi pre-treatment prior to AD to achieve significant improvement in biogas production from SLDR.
机译:剑麻叶片去皮残留物(SLDR)是坦桑尼亚最丰富的农业工业残留物之一,是生产沼气的良好原料。使用两阶段预处理方法,在厌氧分批生物反应器中连续使用两种真菌菌株CCHT-1和里氏木霉,对残留物进行厌氧消化(AD)之前进行了预处理。将经过预处理的残留物与浓度为10%(湿重接种物/ SLDR)接种物的CCTH-1孵育4天,然后与25%(湿重接种物/ SLDR)里氏木霉孵育8天,得到甲烷添加量为0.292±0.04 m 3 CH 4 / kg挥发性固体(VS) 。使用相同的参数和AD逆转真菌接种的预处理顺序后,甲烷产率降低了约55%。通常,与未处理的SLDR相比,甲烷的收率增加了30-101%。该结果证实了CCHT-1在AD之前进行里氏木霉真菌预处理的潜力,从而可以显着改善SLDR产生的沼气。

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