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首页> 外文期刊>Biomass Conversion and Biorefinery >Acid pretreatment optimization for xylose production from Agave tequilana Weber var. azul, Agave americana var. oaxacensis, Agave karwinskii, and Agave potatorum bagasses using a Box-Behnken design
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Acid pretreatment optimization for xylose production from Agave tequilana Weber var. azul, Agave americana var. oaxacensis, Agave karwinskii, and Agave potatorum bagasses using a Box-Behnken design

机译:从龙舌兰龙舌兰韦伯瓦斯的木糖生产酸预处理优化。 Azul,龙舌兰美洲武器。 Oaxacensis,Agave Karwinskii和Agave Potatorum Bagasses使用Box-Behnken设计

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摘要

There is a growing interest in the use of lignocellulosic biomass for biofuel production leading to by-products with high added value such as xylitol, a sweetener obtained from chemical synthesis or fermentative pathways, characterized by high degree of sweetness, recommended for people with diabetes, making it a product of great interest in the industrial market. The objective of this study was to use the bagasse of four agave plants from Mexico: Agave tequilana Weber var. azul (AT), Agave Americana var. oaxacensis (AA), Agave karwinskii (AK), and Agave potatorum (AP) to obtain xylose as an alternative for xylitol or ethanol production. The dilute acid pretreatment was optimized to obtain the maximum concentration of xylose and the minimum concentration of acetic acid, using a Box-Behnken design, where H2SO4 concentration, hydrolysis time, and liquid-to-solid ratio were evaluated. Xylose concentrations of 23.18 g/L (AT), 27.63 g/L (AA), 31.8 g/L (AK), and 24.42 g/L (AP) were achieved. It was also observed that by using more concentrated H2SO4 solutions, higher concentrations of xylosewere obtained, but also high concentrations of acetic acid (1.02 g/L in AT, 2.3 g/L in AA, 3.46 g/L in AK, and 2.01 g/L in AP). This study shows that AT, AA, AK, and AP are a promising alternative feedstock for bioethanol or xylitol production using xylose as substrate.
机译:对使用木质纤维素生物量的生物燃料生物量产生较大的兴趣,该生物燃料生产导致具有高附加值的副产物,如木糖醇,一种从化学合成或发酵途径获得的甜味剂,其特征在于高度甜味,推荐用于糖尿病的人,使其成为在工业市场兴趣的产品。本研究的目的是使用来自墨西哥的四个龙舌兰植物的甘蔗渣:龙舌兰龙舌兰果蝇。 Azul(at),龙舌兰americana var。 Oaxacensis(AA),龙舌兰karwinskii(ak)和龙舌兰 - 作为木糖醇或乙醇生产的替代品。优化稀酸预处理以获得使用Box-Behnken设计的木糖和最小浓度的乙酸的最大浓度,其中评价H2SO4浓度,水解时间和液体与固体比。实现了23.18g / L(AT),27.63g / L(AA),31.8g / L(AK)和24.42g / L(AP)的木糖浓度。还观察到,通过使用更浓缩的H 2 SO 4溶液,获得的较高浓度的木糖酮,还具有高浓度的乙酸(1.02g / L,在AA,3.46g / L中,3.46g / L和2.01g。 / l在ap中)。该研究表明,AT,AA,AK和AP是使用木糖作为基质的生物乙醇或木糖醇产生的有希望的替代原料。

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