利用低成本改性白云石和商用沸石催化剂,通过催化脱氧 (CDO) 技术生产大豆油基绿色柴油

IF 7.1 Q1 ENERGY & FUELS
R.S.R.M. Hafriz , S.H. Habib , N.A. Raof , M.Y. Ong , C.C. Seah , S.Z. Razali , R. Yunus , N.M. Razali , A. Salmiaton
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引用次数: 0

摘要

从可持续生物质中提取的绿色柴油是一种替代石油化石燃料的潜在能源,以减少碳足迹和实现循环经济,这引发了公众对推进可再生能源发展的兴趣和关注。催化脱氧(CDO)是一种前景广阔的方法,因为它可以处理多种原料,生产出多种燃料。大豆油(SO)的催化脱氧使用了一种改性的低成本白云石催化剂(NiO-CD 催化剂),并将其性能与 ZSM-5、HY-沸石和催化裂化等商用沸石异质基催化剂进行了比较。NiO-CD 催化剂表现出卓越的脱氧能力,含氧化合物的去除率达到 88.6%,明显超过了所有市售沸石催化剂。通过脱羧/脱羰基(deCOx)反应,SO 的脱氧程度最高,这归功于 NiO-CaO/MgO 催化剂粒度的改善、介孔结构的改善以及改性双功能酸碱特性的协同效应。为了研究 NiO-CD 催化剂负载量(1-7 wt%)的影响,进行了一次一因素(OFAT)优化研究。目前的研究发现,优化后的 NiO-CD 催化剂装填量为 5 wt%,产生的绿色柴油(50.5 wt%)最高,碳氢化合物含量为 88.63%。在使用 NiO-CD 催化剂生产绿色柴油的过程中,催化剂装填量对脱氧活性的影响非常显著。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Soybean oil-based green diesel production via catalytic deoxygenation (CDO) technology using low-cost modified dolomite and commercial zeolite-based catalyst

Soybean oil-based green diesel production via catalytic deoxygenation (CDO) technology using low-cost modified dolomite and commercial zeolite-based catalyst
Green diesel derived from sustainable biomass is an alternative and potential energy source to petroleum fossil fuel replacement in response to reducing carbon footprint and achieving a circular economy, which has sparked public interest and concern in advancing renewable energy development. Catalytic deoxygenation (CDO) is a promising method because it can process a wide variety of feedstocks and produce a diverse range of fuels. The CDO of soybean oil (SO) was executed using a modified low-cost dolomite catalyst denoted as NiO-CD catalyst and its performance has been compared with commercial zeolite heterogeneous-based catalysts such as ZSM-5, HY-zeolite and FCC. The NiO-CD catalyst exhibited exceptional deoxygenation ability, attaining an 88.6 % removal efficiency of oxygenated compounds, markedly surpassing all commercially available zeolite catalysts. The highest degree of CDO of SO via decarboxylation/decarbonylation (deCOx) reaction was achieved due to improvement in particle size, mesoporous structure and the presence of the synergistic effect of modified bi-functional acid-base properties of NiO-CaO/MgO catalyst. To investigate the effect of NiO-CD catalyst loading ranging from 1 to 7 wt%, a One Factor At a Time (OFAT) optimisation study was performed. The current study found that an optimised NiO-CD catalyst loading of 5 wt% yielded the highest green diesel (50.5 wt%) with an 88.63 % hydrocarbon composition. The influence of catalyst loading on deoxygenation activity is significant in green diesel production using NiO-CD catalyst.
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来源期刊
CiteScore
8.80
自引率
3.20%
发文量
180
审稿时长
58 days
期刊介绍: Energy Conversion and Management: X is the open access extension of the reputable journal Energy Conversion and Management, serving as a platform for interdisciplinary research on a wide array of critical energy subjects. The journal is dedicated to publishing original contributions and in-depth technical review articles that present groundbreaking research on topics spanning energy generation, utilization, conversion, storage, transmission, conservation, management, and sustainability. The scope of Energy Conversion and Management: X encompasses various forms of energy, including mechanical, thermal, nuclear, chemical, electromagnetic, magnetic, and electric energy. It addresses all known energy resources, highlighting both conventional sources like fossil fuels and nuclear power, as well as renewable resources such as solar, biomass, hydro, wind, geothermal, and ocean energy.
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