Pretreatment of Rice Straw by Inorganic Salts and 1-Ethyl-3-methylimdazolium Acetate for Biofuel Production

Pichayanan Suwannabun, K. Cheenkachorn, Methinee Prongjit, A. Tawai, M. Sriariyanun
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引用次数: 6

Abstract

Ionic liquid (IL) pretreatment is an efficient method to improve the enzymatic hydrolysis. The limitation of using IL is its high cost, thus there is a need for improvement to make it feasible for industrial applications. In this research, IL, 1-ethyl-3-methyl-acetate (Emim-AC), pretreatment of rice straw was conducted by mixing with inorganic salts to reduce the load of IL in the reaction, i.e. reduce the cost of the process. The aqueous mixtures of Emim-AC and 6 types of inorganic salts, including NaCl, KCl, MgCl2, NaNO3, KNO3 and Mg(NO3)2 were individually prepared and were tested at the same condition to pretreat rice straw. Among these salt mixtures, a combination between Emim-AC and NaCl was the best method providing the highest reducing sugar at 3.099 mg/ml. Then, the simplex lattice design was applied to find the optimum proportion of Emim-Ac, NaCl and water in the pretreatment mixture. The experimental data obtained from the design were analyzed with ANOVA and the mathematical model of mixture formulation was constructed with high correlation coefficient (R2). The highest yield of reducing sugar at 16.5967 mg/ml was obtained in the formulated mixture containing 0.9% of NaCl, 71.856% of Emim-AC and 9% of water. This work suggested the possibility to reduce the IL cost by reducing load of IL for bioconversion process of lignocellulosic biomass to value-added chemicals and biofuels.
无机盐和1-乙基-3-甲基咪唑醋酸盐预处理水稻秸秆用于生物燃料生产
离子液体预处理是改善酶解的一种有效方法。使用IL的限制是其成本高,因此需要改进以使其在工业应用中可行。本研究以1-乙基-3-甲基乙酸酯(Emim-AC)为原料,通过与无机盐混合对稻草进行预处理,以减少反应中IL的负荷,即降低工艺成本。分别制备了Emim-AC与NaCl、KCl、MgCl2、NaNO3、KNO3、Mg(NO3)2等6种无机盐的混合水溶液,并在相同条件下对稻草进行了预处理试验。其中,Emim-AC与NaCl配盐效果最好,还原糖最高,为3.099 mg/ml。然后,采用单纯形点阵设计确定预处理混合物中Emim-Ac、NaCl和水的最佳配比。对试验数据进行方差分析,建立高相关系数(R2)的混合配方数学模型。在NaCl用量为0.9%、Emim-AC用量为71.856%、水用量为9%的条件下,还原糖得率最高,为16.5967 mg/ml。这项工作表明,通过减少木质纤维素生物质转化为增值化学品和生物燃料过程中IL的负荷,可以降低IL成本。
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