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采用生物精炼方法从木质纤维素生物质中获取可再生高纯度氢气。

Renewable and high-purity hydrogen from lignocellulosic biomass in a biorefinery approach.

作者信息

Elsaddik Majd, Nzihou Ange, Delmas Guo-Hua, Delmas Michel

机构信息

IMT Mines Albi, RAPSODEE CNRS UMR 5302, Université de Toulouse, Campus Jarlard, 81013, Albi Cedex 09, France.

School of Engineering and Applied Science, Princeton University, Princeton, NJ, 08544, USA.

出版信息

Sci Rep. 2024 Jan 2;14(1):150. doi: 10.1038/s41598-023-50611-5.

Abstract

Unprecedented efforts are being deployed to develop hydrogen production from bioresources in a circular economy approach, yet their implementation remains scarce. Today's Challenges are associated with the shortage in the value chain, lack of large-scale production infrastructure, high costs, and low efficiency of current solutions. Herein, we report a hydrogen production route from cellulose pulp, integrating biomass fractionation and gasification in a biorefinery approach. Softwood sawdust undergoes formic acid organosolv treatment to extract cellulose, followed by steam gasification. High-purity hydrogen-rich syngas at a concentration of 56.3 vol% and a yield of 40 g/kg was produced. Char gasification offers the advantage of producing free-tar syngas reducing cleaning costs and mitigating downstream issues. A comprehensive assessment of mass and energy balance along the hydrogen value chain revealed an efficiency of 26.5% for hydrogen production, with an energy requirement of 111.1 kWh/kg. Optimizing solvent recovery and valorization of other constituents as added-value products in a biorefinery approach would further improve the process and entice its industrial takeoff.

摘要

人们正在以前所未有的努力,采用循环经济方法从生物资源中开发制氢技术,但其应用仍然很少。当前的挑战与价值链短缺、缺乏大规模生产基础设施、成本高以及现有解决方案效率低有关。在此,我们报告了一种从纤维素 pulp 制氢的路线,将生物质分级分离和气化整合到生物精炼方法中。软木锯末经过甲酸有机溶剂处理以提取纤维素,然后进行蒸汽气化。产生了浓度为 56.3 vol%、产率为 40 g/kg 的高纯度富氢合成气。焦炭气化具有产生无焦油合成气的优势,可降低清洁成本并减轻下游问题。对氢价值链上的质量和能量平衡进行的综合评估表明,制氢效率为 26.5%,能量需求为每千克 111.1 千瓦时。在生物精炼方法中优化溶剂回收和将其他成分作为增值产品进行增值利用,将进一步改进该工艺并促使其实现工业化应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18bd/10762170/58fb72a4517a/41598_2023_50611_Fig1_HTML.jpg

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