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Biochar Preparation from Simulated Municipal Solid Waste Employing Low Temperature Carbonization Process

机译:生物炭制备从采用低温碳化过程的模拟城市固体废物制备

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This paper presents an investigation on carbonization process of simulated municipal solid waste (MSW). Simulated MSW consists of a representative of food residue (68%), plastic waste (20%), paper (8%), and textile (4%). Laboratory-scale carbonization was performed in this study using a vertical-type pyrolyzer varying carbonization temperature (300, 350, 400, and 450 °C) and heating rate (5, 10, 15, and 20 °C/min). Appearance of the biochar product was in black and the volume was significantly reduced. Low carbonization temperature (300 °C) might not completely decompose plastic materials in MSW. Results showed that the carbonization at the temperature of 400 °C with the heating rate of 5 °C/min was the optimal condition. The yield of biochar from the optimal process was 50.6% with the heating value of 26.85 MJ/kg. Energy input of the process was attributed to water evaporation and the decomposition of plastics and paper. Energy output of the process was highest at the optimal condition. Energy output and input ratio was around 1.3-1.7 showing the feasibility of the carbonization process in all heating rate condition.
机译:本文提出了模拟城市固体废物(MSW)碳化过程的调查。模拟MSW由食物残留物(68%),塑料废物(20%),纸(8%)和纺织品(4%)组成。使用垂直型热解器改变碳化温度(300,350,400和450℃)和加热速率(5,10,15和20℃/ min),在该研究中进行实验室规模碳化。 Biochar产品的外观是黑色的,并且体积显着降低。低碳化温度(300°C)可能不会在MSW中完全分解塑料材料。结果表明,温度为400℃的温度为5°C / min的碳化是最佳状态。来自最佳过程的生物炭的产量为50.6%,加热值为26.85mJ / kg。该过程的能量输入归因于水蒸发和塑料和纸的分解。该过程的能量输出在最佳条件下最高。能量输出和输入比率约为1.3-1.7,显示所有加热速率条件下碳化过程的可行性。

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