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Anhydrous Ammonia Pretreatment of Corn Stover and Enzymatic Hydrolysis of Glucan from Pretreated Corn Stover

机译:玉米秸秆的无水氨预处理和玉米秸秆预处理葡聚糖的酶解

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As a promising alternative of fossil fuel, ethanol has been widely used. In recent years, much attention has been devoted to bioethanol production from lignocellulosic biomass. In previous research, it is found that the pretreatment method named low-moisture anhydrous ammonia (LMAA) has the advantage of high conversion efficiency and less washing requirements. The purpose of this study was to explore the optimal conditions by employing the LMAA pretreatment method. Corn stover was treated under three levels of moisture content: 20, 50, 80 w.b.% (wet basis), and three levels of particle size: 2 mm; it was also ammoniated with a loading rate of 0.1g NH 3 /g biomass (dry matter). Ammoniated corn stover was then subjected to different pretreatment times (24, 96, 168 h) and temperatures (20, 75, 130 °C). After pretreatment, compositional analysis and enzymatic digestibility were conducted to determine the highest glucose yield. As a result, the highest glucose yield was obtained under the condition of 96 h and 75 °C with 50 w.b.% and 0.09–2 mm of corn stover. The main findings of this study could improve the efficiency of bioethanol production processing in the near future.
机译:作为有前途的化石燃料替代品,乙醇已被广泛使用。近年来,人们对木质纤维素生物质生产生物乙醇投入了很多关注。在先前的研究中,发现称为低水分无水氨(LMAA)的预处理方法具有转换效率高和洗涤需求少的优点。本研究的目的是通过采用LMAA预处理方法探索最佳条件。玉米秸秆的水分含量分为三个等级:20、50、80 w.b。%(湿基)和三个等级的颗粒大小:2 mm;它还以0.1 g NH 3 / g生物质(干物质)的加载速率进行氨化。然后对氨化玉米秸秆进行不同的预处理时间(24、96、168小时)和温度(20、75、130°C)。预处理后,进行组成分析和酶消化率以确定最高的葡萄糖产量。结果,在96 h和75°C,50 w.b.%和0.09–2 mm玉米秸秆的条件下可获得最高的葡萄糖产量。这项研究的主要发现可以在不久的将来提高生物乙醇生产加工的效率。

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