利用有机酸和无机酸作为催化剂,通过水热法对咖啡樱桃废料进行增值的方法。

IF 2.3 Q3 BIOCHEMICAL RESEARCH METHODS
Alejandra Sophia Lozano Pérez, Valentina Romero Mahecha, Carlos Alberto Guerrero Fajardo
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引用次数: 0

摘要

研究人员使用各种有机和无机酸催化剂,通过水热碳化(HTC)对咖啡樱桃废料进行了价值评估,以生产平台化学品。本研究旨在评估这些催化剂在提高反应速率、增加产量和促进选择性方面的有效性。结果表明,硫酸和己二酸最为有效,每种催化剂都能使总产率提高 20%,这证明了有机酸作为高效催化剂在 HTC 中的潜力。苯甲酸和苯乙酸等其他催化剂也显示出良好的效果,而丁酸则显著降低了总产率。产生最多的平台化学品是糖,其次是甲酸、乙酰丙酸、HMF 和糠醛。这些发现凸显了咖啡樱桃废料作为生产关键化学品的宝贵资源的潜力,以及水热碳化作为生物质价值化的可持续方法的可行性。这项研究强调了选择适当催化剂的重要性,以优化转化过程并最大限度地提取有价值的化学品。这些发现对环境和经济具有重要意义,因为它们有助于开发可持续和高效的生物质利用技术,在减少废物和促进循环经济的同时,将农业废物转化为高价值产品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for Valorization of Coffee Cherry Waste via Hydrothermal Valorization Using Organic and Inorganic Acids as Catalysts.

The valorization of coffee cherry waste through hydrothermal carbonization (HTC) was investigated using various organic and inorganic acid catalysts to produce platform chemicals. This study aimed to evaluate the effectiveness of these catalysts for enhancing reaction rates, improving yields, and promoting selectivity. The results showed that sulfuric acid and adipic acid were the most effective, each resulting in a 20% increase in the total yield, demonstrating the potential of organic acids as efficient catalysts in HTC. Other catalysts, such as benzoic acid and phenylacetic acid, also showed promising results, while butyric acid significantly decreased the total yield. The most abundantly produced platform chemicals were sugars, followed by formic acid, levulinic acid, HMF, and furfural. These findings highlight the potential of coffee cherry waste as a valuable resource for producing key chemicals, and the feasibility of hydrothermal carbonization as a sustainable approach for biomass valorization. This study emphasizes the importance of selecting the appropriate catalysts to optimize the conversion process and maximize the extraction of valuable chemicals. The environmental and economic implications of these findings are significant, as they can contribute to the development of sustainable and efficient biomass utilization technologies that could transform agricultural waste into high-value products while reducing waste and promoting a circular economy.

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来源期刊
Methods and Protocols
Methods and Protocols Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
3.60
自引率
0.00%
发文量
85
审稿时长
8 weeks
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