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Revalorization of agro-industrial waste as a catalyst source for production of biofuels

机译:农业工业废物作为生物燃料生产的催化剂源的重新定位

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This work evaluates the bio-waste valorization approach for catalyst development, the use of products derived from biomass as raw material and the production of biofuels. In this research activated carbons were synthesized from orange peel using different synthesis conditions. With the activated carbons obtained with the best structure and texture, PtIr bimetallic catalysts were prepared. Carbon activation was carried out through a chemical process with phosphoric acid as an activating agent, varying acid concentration, substrate/activating agent ratio and time of contact between them. The best support was obtained using carbonization time of 1 h, carbonization temperature of 470 degrees C, phosphoric acid concentration of 50 wt % and with BET area of 1429 m(2)/g. Subsequently, the metallic nanoparticles were deposited in the activated carbon to use the solid as a catalytic material for the hydrogenation of HMF to 2,5-DMF. The catalyst showed excellent performance for the generation of biofuels. (C) 2021 Elsevier Ltd. All rights reserved.
机译:这项工作评估了催化剂开发的生物废物算法方法,使用生物量的产品作为原料和生物燃料的生产。在该研究中,使用不同的合成条件,从橙皮中合成活性炭。通过使用最佳结构和质地获得的活性炭,制备PTIR双金属催化剂。通过用磷酸作为活化剂的化学方法进行碳活化,改变酸浓度,基质/活化剂比和它们之间的接触时间。使用1小时的碳化时间,碳化温度为470℃,磷酸浓度为50wt%,BET面积为1429μm(2)/ g。随后,将金属纳米颗粒沉积在活性炭中,以使用固体作为催化材料,用于将HMF氢化至2,5-DMF。催化剂对生物燃料产生了优异的性能。 (c)2021 elestvier有限公司保留所有权利。

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