Maximizing the value of liquid products and minimizing carbon loss in hydrothermal processing of biomass: an evolution from carbonization to humification

IF 13.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Biochar Pub Date : 2024-05-09 DOI:10.1007/s42773-024-00334-1
Nader Marzban, Judy A. Libra, Vera Susanne Rotter, Christiane Herrmann, Kyoung S. Ro, Svitlana Filonenko, Thomas Hoffmann, Markus Antonietti
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Abstract

Hydrothermal carbonization (HTC) converts wet biomass into hydrochar and a process liquid, but aromatic compounds in the products have been reported as a roadblock for soil applications as they can inhibit germination, plant growth, and soil microbial activity. Here, we compared HTC and hydrothermal humification (HTH) of cow manure digestate while varying the initial alkaline content by adding KOH. HTH converted 37.5 wt% of the feedstock to artificial humic acids (A-HAs) found in both solid and liquid, twice that of HTC. HTH reduced phenolic and furanic aromatic compounds by over 70% in solids and 90% in liquids. The A-HAs in HTH resemble natural humic acids (N-HA), based on FTIR, UV–vis spectra, and CHN and XRD analysis. The HTH liquid possesses 60% higher total organic carbon (TOC) than HTC. Although one-third of TOC can be precipitated as A-HA, a high TOC concentration remains in the liquid, which is shown to be mainly organic acids. Therefore, we also evaluated the HTC and HTH liquids for anaerobic biomethane production, and found that compared to the original cow manure digestate, the HTH liquids increased methane yield by 110.3 to 158.6%, a significant enhancement relative to the 17.2% increase seen with HTC liquid. The strong reduction in organic acids during biogas production from HTH liquid indicates the potential for converting soluble byproducts into methane, while maintaining high A-HAs levels in the solid product.

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在生物质水热处理过程中最大限度地提高液体产品的价值和减少碳损失:从碳化到腐殖化的演变
水热碳化(HTC)可将湿生物质转化为水炭和加工液,但据报道,产品中的芳香族化合物会抑制发芽、植物生长和土壤微生物活动,是土壤应用的障碍。在此,我们比较了牛粪沼渣的 HTC 和水热腐殖化 (HTH),同时通过添加 KOH 改变初始碱性含量。HTH 将 37.5% 的原料转化为固体和液体中的人工腐植酸(A-HAs),是 HTC 的两倍。HTH 在固体中减少了 70% 以上的酚类和呋喃芳香化合物,在液体中减少了 90%。根据傅立叶变换红外光谱、紫外-可见光谱、碳氮化合物和 XRD 分析,HTH 中的 A-HAs 与天然腐植酸(N-HA)相似。HTH 液体的总有机碳(TOC)比 HTC 高 60%。虽然三分之一的 TOC 可以沉淀为 A-HA,但液体中仍残留有较高浓度的 TOC,其中主要是有机酸。因此,我们还评估了 HTC 和 HTH 液体的厌氧生物甲烷产量,结果发现,与原始牛粪沼渣相比,HTH 液体的甲烷产量提高了 110.3% 到 158.6%,与 HTC 液体的 17.2% 相比,有了显著提高。在使用 HTH 液体生产沼气的过程中,有机酸大量减少,这表明在将可溶性副产品转化为甲烷的同时,还能在固体产品中保持较高的 A-HAs 水平。
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来源期刊
Biochar
Biochar Multiple-
CiteScore
18.60
自引率
10.20%
发文量
61
期刊介绍: Biochar stands as a distinguished academic journal delving into multidisciplinary subjects such as agronomy, environmental science, and materials science. Its pages showcase innovative articles spanning the preparation and processing of biochar, exploring its diverse applications, including but not limited to bioenergy production, biochar-based materials for environmental use, soil enhancement, climate change mitigation, contaminated-environment remediation, water purification, new analytical techniques, life cycle assessment, and crucially, rural and regional development. Biochar publishes various article types, including reviews, original research, rapid reports, commentaries, and perspectives, with the overarching goal of reporting significant research achievements, critical reviews fostering a deeper mechanistic understanding of the science, and facilitating academic exchange to drive scientific and technological development.
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