Laboratorio de Futuros en Bioenergía, Centro de Investigación y de Estudios Avanzados del IPN (CINVESTAV) Unidad Guadalajara, Av. del Bosque 1145, Col. El Bajío, Zapopan 45019, JA, Mexico.
Departamento de Ciencias Biotecnológicas y Ambientales, Universidad Autónoma de Guadalajara, Av. Patria 1201, Col. Lomas del Valle, Zapopan 45129, JA, Mexico.
Molecules. 2021 Dec 22;27(1):26. doi: 10.3390/molecules27010026.
Hydrothermal pretreatment (HP) is an eco-friendly process for deconstructing lignocellulosic biomass (LCB) that plays a key role in ensuring the profitability of producing biofuels or bioproducts in a biorefinery. At the laboratory scale, HP is usually carried out under non-isothermal regimes with poor temperature control. In contrast, HP is usually carried out under isothermal conditions at the commercial scale. Consequently, significant discrepancies in the values of polysaccharide releases are found in the literature. Therefore, laboratory-scale HP data are not trustworthy if scale-up or retrofitting of HP at larger scales is required. This contribution presents the results of laboratory-scale batch HP for wheat straw in terms of xylan and glucan release that were obtained with rigorous temperature control under isothermal conditions during the reaction stage. The heating and cooling stages were carried out with fast rates (43 and -40 °C/min, respectively), minimizing non-isothermal reaction periods. Therefore, the polysaccharide release results can be associated exclusively with the isothermic reaction stage and can be considered as a reliable source of information for HP at commercial scales. The highest amount of xylan release was 4.8 g/L or 43% obtained at 180 °C and 20 min, while the glucan release exhibited a maximum of 1.2 g/L or 5.5%. at 160 °C/180 °C and 30 min.
水热预处理 (HP) 是一种环保的方法,用于解构木质纤维素生物质 (LCB),在确保生物炼制厂生产生物燃料或生物产品的盈利性方面起着关键作用。在实验室规模下,HP 通常在非恒温条件下进行,温度控制较差。相比之下,HP 在商业规模下通常在恒温条件下进行。因此,在文献中发现多糖释放值存在显著差异。因此,如果需要在更大规模上进行 HP 的放大或改造,实验室规模的 HP 数据就不可靠。本研究介绍了在恒温条件下通过严格的温度控制在实验室规模下进行的小麦秸秆的间歇式 HP 的结果,以获得木聚糖和葡聚糖的释放。加热和冷却阶段的速率较快(分别为 43 和-40°C/min),最大限度地减少了非恒温反应期。因此,多糖释放结果可以完全与等温反应阶段相关联,并且可以被认为是商业规模上 HP 的可靠信息来源。在 180°C 和 20 分钟下,木聚糖的最大释放量为 4.8 g/L 或 43%,而在 160°C/180°C 和 30 分钟下,葡聚糖的最大释放量为 1.2 g/L 或 5.5%。