Advancing hydrothermal liquefaction of Canadian forestry biomass for sustainable biocrude production: co-solvent integration, co-liquefaction, and process optimization†

IF 4.1 3区 材料科学 Q2 CHEMISTRY, PHYSICAL Sustainable Energy & Fuels Pub Date : 2025-01-28 DOI:10.1039/D4SE01347F
Sreenavya Awadakkam, Vasu Chaudhary, Ramesh Kalagnanam, Venu Babu Borugadda and Ajay K. Dalai
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Abstract

Canadian hardwood and softwood species were screened for hydrothermal liquefaction to produce sustainable biocrude. Based on the availability of the feedstock, their biocrude yield, and oxygen content, spruce (softwood) and poplar (hardwood) species were found to be promising and selected for the optimization of process parameters to maximize biocrude yield while minimizing the oxygen content. Solvent (ethanol) assisted hydrothermal liquefaction was performed to evaluate the effect of process parameters such as temperature, retention time, catalyst loading, and different ethanol concentrations. The highest yield of biocrude obtained from spruce and poplar was ∼36 wt% with an HHV of ∼27 MJ kg−1 under the optimized HTL conditions. HTL experiments were conducted to study the effect of recycling the hydrothermal liquefaction aqueous phase and co-liquefaction of hardwood and softwood species. The HTL aqueous phase recycling improved the quantity (47 wt%) and quality (HHV of 29.9 MJ kg−1) of the biocrude obtained from spruce liquefaction. The co-liquefaction of spruce and poplar (50 : 50 wt%) showed a potential synergistic effect on biocrude yield and quality at a lower reaction temperature (260 °C). The GC-MS analysis of spruce and poplar wood biocrude indicated that the majority of the compounds were phenolic in nature. BET results confirmed the high surface area of spruce and poplar wood-derived hydrochar. The gaseous products formed during HTL were mainly composed of CO2, CO, H2, O2, CH4, and C2H2.

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推进加拿大林业生物质水热液化用于可持续生物原油生产:共溶剂整合,共液化和工艺优化
对加拿大硬木和软木进行了水热液化筛选,以生产可持续的生物原油。根据原料的可用性、生物原油产量和氧含量,发现云杉(软木)和杨树(硬木)有前景,并选择了工艺参数优化,以最大化生物原油产量,同时最小化氧含量。采用溶剂(乙醇)辅助水热液化,考察了温度、保留时间、催化剂负载和不同乙醇浓度等工艺参数对液化效果的影响。在优化的HTL条件下,从云杉和杨树中获得的生物原油最高产量为~ 36 wt%, HHV为~ 27 MJ kg−1。通过HTL实验研究了水热液化水相的循环利用以及硬木和软木的共液化效果。HTL水相回收提高了云杉液化所得生物原油的数量(47.wt %)和质量(HHV为29.9 MJ kg−1)。在较低的反应温度(260°C)下,云杉和杨树(50:50 wt%)的共液化对生物原油的产量和质量有潜在的协同效应。云杉和杨木生物原油的GC-MS分析表明,其中大部分化合物为酚类化合物。BET结果证实了云杉和杨木衍生碳氢化合物的高表面积。HTL过程中生成的气态产物主要由CO2、CO、H2、O2、CH4和C2H2组成。
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来源期刊
Sustainable Energy & Fuels
Sustainable Energy & Fuels Energy-Energy Engineering and Power Technology
CiteScore
10.00
自引率
3.60%
发文量
394
期刊介绍: Sustainable Energy & Fuels will publish research that contributes to the development of sustainable energy technologies with a particular emphasis on new and next-generation technologies.
期刊最新文献
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