Marzban Nader, Libra Judy A, Rotter Vera Susanne, Ro Kyoung S, Moloeznik Paniagua Daniela, Filonenko Svitlana
Leibniz Institute of Agricultural Engineering and Bio-economy e.V. (ATB), Max-Eyth-Allee 100, 14469 Potsdam, Germany.
Department of Environmental Technology, Chair of Circular Economy and Recycling Technology, Technische Universität Berlin, 10623 Berlin, Germany.
ACS Omega. 2023 Jan 19;8(4):4234-4243. doi: 10.1021/acsomega.2c07419. eCollection 2023 Jan 31.
Although many studies have investigated the hydrothermal transformation of feedstock biomass, little is known about the stability of the compounds present in the process liquid after the carbonization process is completed. The physicochemical characteristics of hydrothermal carbonization (HTC) liquid products may change over storage time, diminishing the amount of desired products or producing unwanted contaminants. These changes may restrict the use of HTC liquid products. Here, we investigate the effect of storage temperature (20, 4, and -18 °C) and time (weeks 1-12) on structural and compositional changes of selected organic compounds and physicochemical characteristics of the process liquid from the HTC of digested cow manure. ANOVA showed that the storage time has a significant effect on the concentrations of almost all of the selected organic compounds, except acetic acid. Considerable changes in the composition of the process liquid took place at all studied temperatures, including deep freezing at -18 °C. Prominent is the polymerization of aromatic compounds with the formation of precipitates, which settle over time. This, in turn, influences the inorganic compounds present in the liquid phase by chelating or selectively adsorbing them. The implications of these results on the further processing of the process liquid for various applications are discussed.
尽管许多研究已经对原料生物质的水热转化进行了调查,但对于碳化过程完成后工艺液体中所含化合物的稳定性却知之甚少。水热碳化(HTC)液体产物的物理化学特性可能会随储存时间而变化,从而减少所需产物的量或产生不需要的污染物。这些变化可能会限制HTC液体产物的使用。在此,我们研究了储存温度(20、4和-18°C)和时间(第1-12周)对消化牛粪HTC工艺液体中选定有机化合物的结构和组成变化以及物理化学特性的影响。方差分析表明,储存时间对几乎所有选定的有机化合物的浓度都有显著影响,乙酸除外。在所有研究温度下,包括在-18°C深度冷冻,工艺液体的组成都发生了相当大的变化。突出的是芳香族化合物的聚合并形成沉淀,这些沉淀会随着时间的推移而沉降。这反过来又通过螯合或选择性吸附影响液相中存在的无机化合物。讨论了这些结果对工艺液体用于各种应用的进一步加工的影响。