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Enhancement of anaerobic batch digestion of sisal pulp waste by mesophilic aerobic pre-treatment

机译:中温好氧预处理增强剑麻废料的厌氧分批消化

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Pre-treatment of sisal pulp prior to its anaerobic digestion was investigated using an activated sludge mixed culture under aerobic conditions in batch bioreactors at 37℃. The progression of aerobic pre-treatment of the residue in relation to the activities of some extracellular hydrolytic enzymes in the slurry was monitored. The highest activity of hydrolytic enzymes was obtained at 9 h of pre-treatment. Filter paper cellulase had a maximum activity of 0.90 IU/ml, while carboxymethyl cellulase, amylase and xylanase were produced to a maximum of about 0.40 IU/ml. The methane yield obtained after anaerobic digestion of the pre-treated pulp ranged between 0.12 and 0.24 m~3 CH_4/kg VS added. The highest and lowest values were obtained for 9 and 72 h of pre-treatment, respectively. Nine hours of pre-treatment of sisal pulp prior to anaerobic digestion demonstrated a 26% higher methane yield when compared to the sisal pulp without pre-treatment. The consortia of microorganisms in activated sludge demonstrated a useful potential in the production of hydrolases acting on major macromolecules of sisal pulp. The fact that a correlation was observed between high enzyme activity and high methane yield at 9 h of aerobic pre-treatment suggests that such a short pre-treatment period could be an alternative option for increasing solubilization of sisal pulp and promoting methane productivity.
机译:在活性厌氧条件下,在37℃的间歇式生物反应器中,使用活性污泥混合培养物对剑麻浆进行厌氧消化之前进行了预处理。监测残留物中需氧预处理与浆液中某些细胞外水解酶活性的关系。在预处理9小时后,水解酶的活性最高。滤纸纤维素酶的最大活性为0.90 IU / ml,而羧甲基纤维素酶,淀粉酶和木聚糖酶的最大活性为约0.40 IU / ml。厌氧消化预处理的纸浆后获得的甲烷产率在0.12至0.24 m〜3 CH_4 / kg V​​S之间。分别在9和72小时的预处理中获得了最高和最低值。与无预处理的剑麻浆相比,厌氧消化前的九小时剑麻浆预处理显示出更高的甲烷产率26%。活性污泥中的微生物群落显示出在生产作用于剑麻浆主要大分子的水解酶方面的潜在潜力。在需氧预处理9小时后观察到高酶活性与高甲烷产量之间存在相关性的事实表明,如此短的预处理时间可能是增加剑麻浆增溶和提高甲烷生产率的替代选择。

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