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Citric waste saccharification under different chemical treatments

机译:不同化学处理下的柠檬水酸糖

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Second generation ethanol from lignocellulose materials has been used in applications for food processing wastes. Since Brazil has a leading position in orange juice exports, the influence of acid and alkali pretreatments on liquor saccharification, solubilization of solid fraction and mass yield was evaluated. Time and C acid or C alkaline at different concentrations of solids (low to moderate, 1 to 9%) and high catalyst concentrations were analyzed. A hydrothermal pretre atment was conducted under the same conditions of acid and alkaline treatments to investigate the relative selectivity increase in using the catalysts. The chemical analyses of wastes indicated a 70% total carb ohydrate level denoting a promising raw material for bioethanol production. Pretreatment caused acid saccharifications between 25 and 65% in total reducing sugars (TRS) and mass yields (MY) between 30 and 40% . In alkaline pretreatment, these rates ranged between 2 and 22.5% and between 30 and 80, respective ly. In hydrothermal pretreatment, solubilized TRS varied between 3 and 37%, whereas MY rema ined between 45 and 60%, respectively. C biomass strongly influenced the three variables; in the same way, time affected MY.
机译:来自木质纤维素材料的第二代乙醇已用于食品加工废物的应用中。由于巴西在橙汁出口中具有领先地位,评价酸和碱预处理对液体糖化,固体级分的溶解和质量产量的影响。分析了不同浓度固体的时间和C酸或C碱性(低至中等,1至9%)和高催化剂浓度。在与酸和碱性处理的相同条件下进行水热量预选,以研究使用催化剂的相对选择性。废物的化学分析表明了70%总碳酸欧水合物水平,表示有希望的生物乙醇生产原料。预处理在总还原糖(TRS)和70%之间的质量产量(TRS)中引起25%至65%的酸糖化。在碱性预处理中,这些速率范围为2至22.5%,30至80之间,相应的LY。在水热预处理中,溶解的TRS在3至37%之间变化,而我的Rema分别为45%和60%。 C生物质强烈影响三个变量;以同样的方式,时间影响了我的。

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