首页> 外文期刊>Journal of Agricultural and Food Chemistry >Distinct Roles of Residual Xylan and Lignin in Limiting Enzymatic Hydrolysis of Organosolv Pretreated Loblolly Pine and Sweetgum
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Distinct Roles of Residual Xylan and Lignin in Limiting Enzymatic Hydrolysis of Organosolv Pretreated Loblolly Pine and Sweetgum

机译:残留木聚糖和木质素在限制有机溶剂预处理火炬松和甜木糖酶解中的不同作用。

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The interactions between xylan/lignin and cellulase enzymes play a key role in the effective hydrolysis of lignocellulosic biomass. Organosolv pretreated loblolly pine (OPLP) and sweetgum (OPSG) were used to quantitatively elucidate the distinct roles of residual xylan and lignin on enzymatic hydrolysis, based on the initial hydrolysis rates and the final hydrolysis yields. The initial hydrolysis rates of OPLP and OPSG were 1.45 (glucose) and 1.19 g/L/h (glucose), respectively, under the enzyme loading of 20 FPU/g glucan. The final glucan hydrolysis yields of OPLP and OPSG at 72 h were 76.4 and 98.9%, respectively. By correlating the amount of residual lignin and xylan to the initial hydrolysis rate and the final hydrolysis yield in OPLP and OPSG, a more accurate fundamental understanding of the roles of xylan and lignin in limiting the enzymatic hydrolysis has been developed. The higher amount of residual xylan (9.7%) in OPSG resulted in lower initial hydrolysis rate (1.19 g/L/h). The higher amount of residual lignin in OPLP (18.6%) resulted in lower final hydrolysis yield of glucan (76.4%). In addition, we observed in the simultaneous saccharification and fermentation (SSF) that ethyl xyloside was produced by the enzymatic catalysis of xylose/xylan and ethanol.
机译:木聚糖/木质素与纤维素酶之间的相互作用在木质纤维素生物质的有效水解中起关键作用。基于初始水解速率和最终水解收率,使用了有机溶剂预处理的火炬松(OPLP)和糖(OPSG)来定量阐明残留的木聚糖和木质素在酶促水解中的独特作用。在20 FPU / g葡聚糖的酶负载下,OPLP和OPSG的初始水解速率分别为1.45(葡萄糖)和1.19 g / L / h(葡萄糖)。 OPLP和OPSG在72小时的最终葡聚糖水解产率分别为76.4%和98.9%。通过将残留的木质素和木聚糖的量与OPLP和OPSG中的初始水解速率和最终水解产率相关联,对木聚糖和木质素在限制酶水解中的作用有了更准确的基本了解。 OPSG中较高的残留木聚糖含量(9.7%)导致较低的初始水解速率(1.19 g / L / h)。 OPLP中残留的木质素含量较高(18.6%),导致葡聚糖的最终水解产率较低(76.4%)。此外,我们在同时糖化和发酵(SSF)中观察到木糖/木聚糖和乙醇的酶催化产生了木糖苷乙基。

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