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Kinetic Modeling for Enzymatic Hydrolysis of Pretreated Creeping Wild Ryegrass

机译:预处理蠕动野生黑麦草酶水解的动力学建模

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A semimechanistic multi-reaction kinetic model was developed to describe the enzymatic hydrolysis of a lignocellulosic biomass, Creeping Wild Ryegrass (Leymus triticoidesj (CWR). This model incorporated one homogeneous reaction of cellobiose to glucose and two heterogeneous reactions of cellulose to cellobiose and cellulose to glucose. Adsorption of cellulase onto pretreated CWR during enzymatic hydrolysis was modeled via a Langmuir adsorption isotherm. This is the first kinetic model which incorporated the negative role of lignin (nonproductive adsorption) using a Langmuir-type isotherm adsorption of cellulase onto lignin. The model also reflected the competitive inhibitions of cellulase by glucose and cellobiose. The Matlab optimization function of "Isqnonlin" was used to fit the model and estimate kinetic parameters based on experimental data generated under typical conditions (8% solid loading and 15 FPU/g-cellulose enzyme concentration without the addition of background sugars). The model showed high fidelity for predicting cellulose hydrolysis behavior over a broad range of solid loading (4-12%, w/w, dry basis), enzyme concentration (15-150 FPU/g-cellulose), sugar inhibition (glucose of 30 and 60 mg/mL and cellobiose of 10 mg/mL). In addition, sensitivity analysis showed that the incorporation of the nonproductive adsorption of cellulase onto lignin significantly improved the predictability of the kinetic model. Our model can serve as a robust tool for developing kinetic models for system optimization of enzymatic hydrolysis, hydrolysis reactor design, and/or other hydrolysis systems with different type of enzymes and substrates.
机译:开发了一种半充力的多反应动力学模型,描述了木质纤维素生物量的酶水解,蠕动的野生黑麦草(Leymus triticoidesj(CWR)。该模型掺入纤维糖至葡萄糖的均匀反应和纤维素与纤维素的两个非均相反应葡萄糖。通过Langmuir吸附等温线模拟酶水解过程中预处理CWR的纤维素酶的吸附。这是利用Lignin(非生产性吸附)使用肝脏型等温纤维素酶对木质素中的纤维素酶的负作用的第一动力学模型。该模型还反映了葡萄糖和纤维糖纤维素酶的竞争抑制。“ISQNONLIN”的MATLAB优化功能用于符合典型条件下产生的实验数据的模型和估计动力学参数(8%固体载荷和15fpu / g-纤维素没有添加背景糖的酶浓度)。T他的模型显示出高保真度,用于预测纤维素水解行为在宽范围的固体载量(4-12%,W / W,干基),酶浓度(15-150fpu / g-纤维素),糖抑制(葡萄糖为30和60mg / ml和10mg / ml的纤维糖)。此外,敏感性分析表明,将纤维素酶的非培养吸附掺入木质素中显着提高了动力学模型的可预测性。我们的模型可以作为开发酶促水解,水解反应器设计和/或具有不同类型酶和基材的其他水解系统的动力学模型的鲁棒工具。

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