Guo Zhengqi, Xu Xianqing, Zhu Deqing, Pan Jian, Yang Congcong, Li Siwei
School of Mineral Processing and Bioengineering, Central South University, Changsha 410083, Hunan, China.
ACS Omega. 2023 Jul 17;8(30):27398-27409. doi: 10.1021/acsomega.3c02519. eCollection 2023 Aug 1.
In order to address the low thermal efficiency of low-rank coal combustion and the accompanying serious environmental issues, formed coke was prepared using a carbonization consolidation method with low-rank coal semi-coke. The test for briquetting and carbonation consolidation conditions revealed that the optimal parameters were a briquetting pressure of 93.63 MPa, moisture content of 16%, Ca(OH) binder amount of 10%, and a CO concentration of 30% at 20 °C. Under these conditions and a carbonation consolidation time of 60 min, high-quality formed coke was produced, exhibiting a compressive strength of 1256.2 N/a, redrying strength of 286.2 N/a, and a dropping strength of 10.6 number/a. The combustion characteristics of the prepared formed coke were investigated, revealing that ignition temperatures (345.39 °C), burnout temperatures (495.57 °C), and peak of the maximum weight loss rate temperatures (437.93 °C) are slightly higher than those of bituminous coal. The low calorific value of the briquette was 20.4 MJ/kg. During the combustion process, the emission concentrations of SO, NO, and solid particles from the formed coke were significantly lower than those of bituminous coal, indicating that it is a cleaner energy source. Moreover, adding Ca(OH) effectively reduced SO emissions and achieved sulfur fixation and emission reduction.
为了解决低阶煤燃烧热效率低以及随之而来的严重环境问题,采用低阶煤半焦碳化固结法制备型焦。型煤成型及碳化固结条件试验表明,最佳参数为成型压力93.63MPa、水分含量16%、Ca(OH)粘结剂用量10%、20℃时CO浓度30%。在此条件下,碳化固结时间为60min,制备出了高质量型焦,其抗压强度为1256.2N/a,再干燥强度为286.2N/a,转鼓强度为10.6次/a。对制备的型焦燃烧特性进行了研究,结果表明其着火温度(345.39℃)、 burnout温度(495.57℃)和最大失重率温度峰值(437.93℃)略高于烟煤。型煤的低热值为20.4MJ/kg。在燃烧过程中,型焦的SO、NO和固体颗粒排放浓度显著低于烟煤,表明它是一种更清洁的能源。此外,添加Ca(OH)有效地降低了SO排放,实现了固硫减排。