使用 ZSM-5 和 Amberlyst-15 催化剂催化热解 Padina sp.

Q1 Environmental Science
Apip Amrullah , Obie Farobie , Herry Irawansyah , Ismadi , Lusi Ernawati , Muhammad Aziz , Widya Fatriasari
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引用次数: 0

摘要

由于对可再生能源的需求不断增长,人们对从生物质中生产生物油的兴趣日益浓厚,特别是通过催化协同热解。然而,对 Padina sp.等海洋生物质的研究还很有限。本研究采用 ZSM-5 和 Amberlyst-15 催化剂对 Padina sp.进行催化共热解,以提高富含芳香烃的生物油产量。在不同的催化剂负载量(1%、2% 和 3%)和温度(400 °C、500 °C 和 600 °C)下进行了系统实验。GC/MS 分析表明,Amberlyst-15 在 600 °C 和 3% 负载条件下的芳香烃产量达到 65%,超过了 ZSM-5 的 50%。此外,Amberlyst-15 在 500 °C 和 3% 负载条件下的转化效率最高,达到 50%。这些发现突显了 Padina sp.作为可再生生物燃料来源的可行性,并强调了催化剂选择和工艺优化在完善生物油生产技术中的重要性,表明进一步改进催化剂成分和参数可促进可再生能源的可持续生物油生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Catalytic pyrolysis of Padina sp. with ZSM-5 and Amberlyst-15 catalysts to produce aromatic-rich bio-oil

Catalytic pyrolysis of Padina sp. with ZSM-5 and Amberlyst-15 catalysts to produce aromatic-rich bio-oil
The growing demand for renewable energy has increased interest in bio-oil production from biomass, particularly through catalytic co-pyrolysis. However, research on marine biomass like Padina sp. is limited. This study investigates the catalytic co-pyrolysis of Padina sp. using ZSM-5 and Amberlyst-15 catalysts to enhance aromatic-rich bio-oil production. Systematic experiments were conducted with varying catalyst loadings (1 %, 2 %, and 3 %) and temperatures (400 °C, 500 °C, and 600 °C). GC/MS analysis revealed that Amberlyst-15 at 600 °C and 3 % loading achieved a 65 % aromatic hydrocarbon yield, surpassing ZSM-5, which reached 50 %. Additionally, the highest conversion efficiency, 50 %, was attained with Amberlyst-15 at 500 °C and 3 % loading. These findings highlight the viability of Padina sp. as a renewable biofuel source and emphasize the importance of catalyst selection and process optimization in refining bio-oil production techniques, suggesting that further improvements in catalyst compositions and parameters could advance sustainable bio-oil production for renewable energy.
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来源期刊
Bioresource Technology Reports
Bioresource Technology Reports Environmental Science-Environmental Engineering
CiteScore
7.20
自引率
0.00%
发文量
390
审稿时长
28 days
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