用于可再生燃料和化工生产的光催化和热催化一体化光催化

Ebrahim Abbasi
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引用次数: 0

摘要

对可持续能源和生态友好型废物管理日益增长的需求要求创新的可再生资源解决方案。黑兵蝇(Hermetia illucens)生物质因其快速生长和有效的养分循环而成为一种有价值的原料。与其他昆虫来源相比,该物种因其高脂和蛋白质含量而被选中,这使其特别适合生物燃料生产。本研究主要通过热催化和光催化两种途径研究了黄水蛭生物质的催化转化。用有机废物喂养幼虫,将其加工成粉末,进行催化反应。在300-500°C的温度下,热催化热解产生生物油(48.7% wt%)、生物炭(28.4% wt%)和气态产物(22.9% wt%),其中生物油含有一系列碳氢化合物。光催化升级使脂质转化为脂肪酸甲酯的转化率达到63.4%。环境评估表明,与传统方法相比,该方法减少了40%的温室气体排放。本研究主要集中在H. illucens上,建议未来的研究将其与其他昆虫来源或木质纤维素生物质的催化转化效率进行比较。研究结果强调了H. illucens作为可持续能源和废物增值的可再生资源的潜力,展示了有效的催化途径,同时认识到诸如原料可变性和经济可扩展性等挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integrated thermocatalytic and photocatalytic valorization of Hermetia illucens biomass for renewable fuel and chemical production

Integrated thermocatalytic and photocatalytic valorization of Hermetia illucens biomass for renewable fuel and chemical production
The increasing need for sustainable energy and eco-friendly waste management calls for innovative renewable resource solutions. Hermetia illucens (Black Soldier Fly) biomass is highlighted as a valuable feedstock due to its rapid growth and efficient nutrient recycling. This species was selected for its high lipid and protein content compared to other insect sources, which makes it particularly suitable for biofuel production. This study investigates the catalytic conversion of H. illucens biomass through thermocatalysis and photocatalysis. The larvae were fed organic waste, processed into powder, and subjected to catalytic reactions. Thermocatalytic pyrolysis produced bio-oil (48.7 wt%), biochar (28.4 wt%), and gaseous products (22.9 wt%) at 300–500 °C, with the bio-oil containing a range of hydrocarbons. Photocatalytic upgrading achieved a 63.4 % conversion of lipids into fatty acid methyl esters. Environmental assessments indicated a 40 % reduction in greenhouse gas emissions compared to traditional methods. This study focuses exclusively on H. illucens, and future research is recommended to compare its catalytic conversion efficiency with other insect-derived or lignocellulosic biomasses. The findings emphasize the potential of H. illucens as a renewable resource for sustainable energy and waste valorization, showcasing effective catalytic routes while recognizing challenges such as feedstock variability and economic scalability.
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