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Catalytic Hydrolysis of Fruit Waste Using Magnetic Carbon Acid Catalyst for Bioethanol Production

机译:使用碳酸催化剂进行生物乙醇生产催化水解水果废物

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摘要

The synthesized magnetic carbon acid catalyst was found promising to replace the homogeneous catalyst in biomass hydrolysis. The as-prepared magnetic carbon acid catalyst contains -COOH, -OH, and -SO_3H groups were of importance in the hydrolysis of pomegranate peel waste (Punka granatum). Preliminary experimental results revealing that the temperature, reaction time and catalyst dosage have a great influence on biomass hydrolysis. By optimizing these parameters, 58% of TRS yield was achieved at 140 °C for 2 h reaction time in water medium with the addition of 150 mg of catalyst dosage. The magnetic carbon acid catalyst was regenerated by external magnetic field from the reaction system and reused for up to three consecutive runs with minor loss in activity. Due to some loss of catalyst, the activity of regenerated catalyst in hydrolysis results in reduction of total reducing sugar yield. The hydrolysate from catalytic hydrolysis was fermented into bioethanol with 71.1% of theoretical ethanol yield using baker's yeast (Sacchammyces cerevisiae). Moreover, the mechanism involved in biomass hydrolysis over prepared catalyst was also studied. The synthesized catalyst provides a novel strategy for converting renewable carbon sources into fermentable sugar.
机译:发现合成的磁性碳酸催化剂有望替代生物质水解中的均相催化剂。制备的磁性碳酸催化剂含有-COOH,-OH和-SO_3H基团在石榴剥离废物(PUNKA GANATUM)的水解中具有重要性。初步实验结果表明,温度,反应时间和催化剂剂量对生物质水解有很大影响。通过优化这些参数,通过添加150mg催化剂剂量,在140℃下在140℃下实现58%的TRS产率。通过从反应体系中通过外部磁场再生磁性碳酸催化剂,并在活性轻微损失中重复使用最多三次连续运行。由于催化剂的一些损失,水解中再生催化剂的活性导致总还原糖产率的降低。使用Baker的酵母(Sacchammyces Cerevisiae),将来自催化水解的水解物与71.1%的理论乙醇产率发酵成生物乙醇。此外,还研究了制备催化剂上的生物质水解的机制。合成催化剂提供了一种用于将可再生碳源转化为可发酵糖的新策略。

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