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Response Surface Methodology for Optimization of Corn Stover Pretreatment Using an Extruder

机译:用挤压机优化玉米秸秆预处理的响应面方法

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Pretreatment is necessary to open up the biomass structure for increasing access of the hydrolytic enzymes. Extrusion might be a viable continuous pretreatment due to its advantages over other pretreatment methods. The current study was undertaken toinvestigate sugar recovery influenced by extruder factors such as barrel temperature (45°C to 225°C) and screw speed (20 to 200 rpm) and corn stover factors such as moisture content (10% to 50%) and particle size (2 to 10 mm), to optimize the above factors for maximum sugar recovery, and to propose mathematical models for predicting sugar recoveries from corn stover. Statistical analyses confirmed that all the independent factors studied had a significant effect on sugar recoveries. The quadratic polynomial model proposed to predict glucose, xylose, and combined sugar recovery had high F and R2 values along with lowp-value, indicating that the model has the ability to represent the real relationship between independent factors studied. The optimum pretreatment conditions of 180°C barrel temperature, 155 rpm screw speed, 20% w.b. moisture content, and 8 mm particle size resulted in a maximum glucose, xylose, and combined sugar recovery of 85.7%, 87.5%, and 86.3%, respectively. The surface area of the optimally pretreated corn stover almost doubled compared to that of the control sample, which is the main cause for the increase in sugar recovery.
机译:必须进行预处理以打开生物质结构,以增加水解酶的利用率。挤压可能是可行的连续预处理方法,因为它比其他预处理方法更具优势。当前的研究是为了调查受挤出机因素(例如机筒温度(45°C至225°C)和螺杆转速(20至200 rpm))和玉米秸秆因素(例如水分含量(10%至5​​0%))影响的糖回收率。颗粒大小(2到10毫米),以优化上述因素以最大程度地回收糖,并提出数学模型来预测玉米秸秆的糖回收率。统计分析证实,所研究的所有独立因素均对糖的回收率产生重大影响。提出的用于预测葡萄糖,木糖和联合糖回收率的二次多项式模型具有较高的F和R2值以及较低的p值,表明该模型具有表示所研究独立因素之间真实关系的能力。最佳的预处理条件是料筒温度为180°C,螺杆转速为155 rpm,w.b。20%。水分含量和8毫米粒径分别导致最大葡萄糖,木糖和联合糖回收率分别为85.7%,87.5%和86.3%。与对照样品相比,经过最佳预处理的玉米秸秆的表面积几乎翻了一番,这是糖回收率提高的主要原因。

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