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Increasing the Greenness of Lignocellulosic Biomass Biorefining Processes by Means of Biocompatible Separation Strategies

机译:通过生物相容性分离策略增加木质纤维素生物量生物量生物质过程的绿色

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摘要

The extraction of phenolic acids from wheat straw (WS) using more environmentally friendly and competitive means is targeted in the present work. The ability of Tween 20 (polyoxyethylene (20) sorbitan monolaurate) as a phenolics extractant in aqueous solutions of a biocompatible ionic liquid (choline dihydrogencitrate) obtained after biomass hydrolysis has been demonstrated. To accomplish the extraction as required, the existence of biphasic areas in model aqueous ternary systems from 20 to 60 degrees C was ensured as a prior step to evaluate the extraction yields and partition coefficients of ferulic and p-coumaric acids at different Tween 20 concentrations. It was observed that the surfactant content turned out to be a key parameter to attain high extraction levels of phenolic acids (up to 97% of total phenols, 89% of ferulic acid, and 93% of p-coumaric acid at the greatest surfactant concentration). Furthermore, at this surfactant concentration, the total phenols content (TPY) after extraction was 4.51 mg of gallic acid equivalent (GAE)/g of WS dry basis (d.b.), antioxidant activity TEAC (Trolox equivalent antioxidant capacity) was 4.26 mu mol equivalents of Trolox (TRE)/g WS d.b., and antioxidant activity for DPPH (2,2-diphenyl-1picrylhydrazyl) was 0.458 mu mol TRE/g WS d.b. The proposed extraction method did not entail bioactivity impairment, as reflected the analysis of free radical scavenging capacity and trolox equivalents antioxidant capacity.
机译:使用更环保和竞争手段的小麦秸秆(WS)的酚酸的提取是针对目前的工作。已经证明了在生物质水解后获得的生物相容性离子液体(胆碱二氢核酸胆碱)的酚类萃取剂的吐温20(聚氧乙烯(20)山梨糖醇单酯)的能力。为了根据需要完成提取,确保了20至60℃的模型水性三元体系中的双相区域的存在作为评估不同吐温20浓度的萃取产率和分配系数的萃取产率和分配系数。观察到表面活性剂含量原来是达到酚醛酸的高萃取水平的关键参数(最多97%的总酚,89%的阿魏酸,以及93%的P-香豆酸在最大的表面活性剂浓度)。此外,在这种表面活性剂浓度下,萃取后的总酚含量(TPY)为4.51mg无碱(GAE)/ g Ws干基(DB),抗氧化活性TeaC(Troolox当量抗氧化能力)为4.26μmol等同物用于DPPH(2,2-二苯基-1Picrylafdrydr)的滴油(TRE)/ G WS DB和抗氧化活性为0.458μmoltre / g ws db所提出的提取方法并未加以生物活性损害,反映了自由基清除能力和滴水型抗氧化能力的分析。

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