作为生物乙醇原料的多倍体芒草株系利用效率评价

R. Blume, O. Melnychuk, S. Ozheredov, D. Rakhmetov, Y. Blume
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引用次数: 0

摘要

的目标。本研究的主要目的是评估六倍体巨型芒草的理论生物乙醇产量(每公顷),并进一步与传统三倍体以及其他生物乙醇作物进行比较。方法。确定了几个描述年产量动态的数学函数和方程,用于理论生物乙醇产量的计算。结果。对不同六倍体芒草品系的理论生物乙醇产量进行了评价。乙醇产量最高的是品系108和品系202,其潜在生物乙醇产量分别比对照品系(6451 L/ha)高10.7%和14.2%,可达7144 L/ha和7684 L/ha。结论。在乌克兰,多倍体芒草的高产品系(108和202品系)能够与其他植物纤维原料竞争第二代生物乙醇的生产。然而,这些品系显示出比甜高粱更高的生物乙醇产量,在甜高粱被加工以获得第一代和第二代生物乙醇的情况下。关键词:生物能源作物,生物燃料,巨型芒草,芒草,多倍体,第二代生物乙醇
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of polyploid miscanthus lines usage efficiency as a feedstock for bioethanol production
Aim. Main aim of this research was the evaluation of theoretical bioethanol yield (per ha) from hexaploid giant miscanthus (Miscanthus х giganteus) and further comparison with conventional triploid form as well as with other bioethanol crops. Methods. Several mathematic functions were determined that describe yearly yield dynamics and equations, which were used in calculations of theoretical bioethanol yield. Results. The theoretical bioethanol yield was evaluated for different hexaploid miscanthus lines. The most productive in terms of ethanol yield were lines 108 and 202, from which potential bioethanol yield was found to be higher than in control line (6451 L/ha) by 10.7 % and 14.2% respectively and can reach 7144 L/ha and 7684 L/ha. Conclusions. It was determined that the most productive lines of polyploid miscanthus (lines 108 and 202) are able to compete with other plant cellulosic feedstocks for second-generation bioethanol production in Ukraine. However, these lines show bioethanol productivity than sweet sorghum, in the case when sweet sorghum is processed for obtainment of both first- and second-generation bioethanol. Keywords: bioenergy crops, biofuels, giant miscanthus, Miscanthus, polyploidy, second-generation bioethanol.
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