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水热碳化、热解和微波诱导热解食物垃圾产生的炭的物理化学性质的对比研究

Comparative Investigation of the Physicochemical Properties of Chars Produced by Hydrothermal Carbonization, Pyrolysis, and Microwave-Induced Pyrolysis of Food Waste.

作者信息

Khan Moonis Ali, Hameed Bassim H, Siddiqui Masoom Raza, Alothman Zeid A, Alsohaimi Ibrahim H

机构信息

Chemistry Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

Department of Chemical Engineering, College of Engineering, Qatar University, Doha P.O. Box 2713, Qatar.

出版信息

Polymers (Basel). 2022 Feb 20;14(4):821. doi: 10.3390/polym14040821.

DOI:10.3390/polym14040821
PMID:35215734
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8878147/
Abstract

This work presents a comparative study of the physicochemical properties of chars derived by three thermochemical pathways, namely: hydrothermal carbonization, HTC (at 180, 200 and 220 °C), pyrolysis, PY, (at 500, 600 and 700 °C) and microwave assisted pyrolysis, MW (at 300, 450 and 600 W). The mass yield of HTC samples showed a decrease (78.7 to 26.7%) as the HTC temperature increased from 180 to 220 °C. A similar decreasing trend in the mass yield was also observed after PY (28.45 to 26.67%) and MW (56.45 to 22.44%) of the food waste mixture from 500 to 700 °C and 300 to 600 W, respectively. The calorific value analysis shows that the best among the chars prepared by three different heating methods may be ranked according to the decreasing value of the heating value as: PY500, MW300, and HTC180. Similarly, a decreasing trend in H/C values was observed as: PY500 (0.887), MW300 (0.306), and HTC180 (0.013). The scanning electron microscope (SEM) analyses revealed that the structure of the three chars was distinct due to the different temperature gradients provided by the thermochemical processes. The results clearly show that the suitable temperature for the HTC and PY of food waste was 180 °C and 500 °C, respectively, while the suitable power for the MW of food waste was 300 W.

摘要

本研究对通过三种热化学途径制备的炭的物理化学性质进行了比较研究,这三种途径分别是:水热碳化(HTC,在180、200和220°C下)、热解(PY,在500、600和700°C下)以及微波辅助热解(MW,在300、450和600W下)。随着HTC温度从180°C升高到220°C,HTC样品的质量产率呈现下降趋势(从78.7%降至26.7%)。分别在500至700°C以及300至600W条件下对食物垃圾混合物进行PY(从28.45%降至26.67%)和MW(从56.45%降至22.44%)处理后,也观察到了质量产率的类似下降趋势。热值分析表明,通过三种不同加热方法制备的炭中,按热值递减顺序排列,最佳的可能是:PY500、MW300和HTC180。同样,观察到H/C值的下降趋势为:PY500(0.887)、MW300(0.306)和HTC180(0.013)。扫描电子显微镜(SEM)分析显示,由于热化学过程提供的不同温度梯度,三种炭的结构各不相同。结果清楚地表明,食物垃圾进行HTC和PY处理的适宜温度分别为180°C和500°C,而食物垃圾进行MW处理的适宜功率为300W。

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