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Impact of various storage conditions on enzymatic activity, biomass components and conversion to ethanol yields from sorghum biomass used as a bioenergy crop

机译:各种储存条件对酶活性,生物量成分以及用作生物能源作物的高粱生物质转化为乙醇产量的影响

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摘要

With increased mandates for biofuel production in the US, ethanol production from lignocellulosic substrates is burgeoning, highlighting the need for thorough examination of the biofuel production supply chain. This research focused on the impact storage has on biomass, particularly photoperiod‐sensitive sorghum biomass. Biomass quality parameters were monitored and included biomass components, cellulose, hemicellulose and lignin, along with extra‐cellular enzymatic activity (EEA) responsible for cellulose and hemicellulose degradation and conversion to ethanol yields. Analyses revealed dramatic decreases in uncovered treatments, specifically reduced dry matter content from 88% to 59.9%, cellulose content from 35.3% to 25%, hemicellulose content from 23.7% to 16.0% and ethanol production of 0.20 g Lˉ¹ to 0.02 g Lˉ¹ after 6 months storage along with almost double EEA activities. In contrast, biomass components, EEA and ethanol yields remained relatively stable in covered treatments, indicating covering of biomass during storage is essential for optimal substrate retention and ethanol yields.
机译:随着美国对生物燃料生产的要求增加,木质纤维素底物的乙醇生产正在迅速发展,这突出表明需要对生物燃料生产供应链进行彻底检查。这项研究的重点是对生物量,特别是对光周期敏感的高粱生物量的影响。监测生物质质量参数,包括生物质成分,纤维素,半纤维素和木质素,以及负责纤维素和半纤维素降解以及转化为乙醇产量的细胞外酶活性(EEA)。分析表明,未覆盖的处理方法显着减少,特别是在6次处理后,干物质含量从88%降低到59.9%,纤维素含量从35.3%降低到25%,半纤维素含量从23.7%降低到16.0%,乙醇产量从0.20 g L¹降低到0.02 g L¹几个月的存储量以及几乎两倍的EEA活动。相反,在覆盖处理中,生物质成分,EEA和乙醇产量保持相对稳定,这表明在存储过程中覆盖生物质对于最佳的底物保留和乙醇产量至关重要。

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