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神木低变质粉煤加入量对型煤型焦性能的影响
引用本文:陈娟,刘皓,张智芳,李健,亢玉红,郝华睿.神木低变质粉煤加入量对型煤型焦性能的影响[J].当代化工,2018(1):13-16.
作者姓名:陈娟  刘皓  张智芳  李健  亢玉红  郝华睿
作者单位:榆林学院 化学与化工学院,陕西 榆林 719000;陕西省低变质煤洁净利用重点实验室,陕西 榆林 719000
基金项目:榆林学院高层次人才科研启动资金资助项目;,陕西省工业攻关项目;,榆林市工业攻关项目;,陕西省教育厅项目;,陕西省教育厅重点实验室科研计划项目;,陕西省教育厅协同创新、服务地方计划;,陕西省低变质煤洁净利用重点实验室开放基金项目
摘    要:以神木低变质粉煤、肥煤与4#主焦煤为原料,配入10%玉米秸秆粘结剂,通过改变神木煤加入量制备出系列型煤型焦.探讨了神木煤加入量对型煤型焦性能的影响.结果表明,神木煤加入量为45%时,型煤型焦性能最佳,型焦工业分析为Mad=0.22%,Ad=12.99%,Vdaf=1.43%,抗压强度与跌落强度分别为3902.6 N/个、99.45%,M25与M10为75.47%、24.53%,符合工业应用标准.随着神木煤配比增加,型煤型焦强度均呈下降趋势.因为神木煤粒度小,空隙率小,比表面积大,进入空隙的粘结剂少,高温热解中不能被胶质体完全包围、粘连,熔融不充分.

关 键 词:粉煤  型煤  型焦  性能  Pulverized  coal  Briquette  Formed  coke  Property

Effect of Adding Amount of Shenmu Low Rank Pulverized Coal on Properties of Briquette Formed Coke
CHEN Juan,LIU Hao,ZHANG Zhi-fang,LI Jian,KANG Yu-hong,HAO Hua-rui.Effect of Adding Amount of Shenmu Low Rank Pulverized Coal on Properties of Briquette Formed Coke[J].Contemporary Chemical Industry,2018(1):13-16.
Authors:CHEN Juan  LIU Hao  ZHANG Zhi-fang  LI Jian  KANG Yu-hong  HAO Hua-rui
Abstract:Taking Shenmu low rank pulverized coal,Shanxi fat coal,Shanxi 4# prime coking coal as raw materials, with 10% corn stalk binder, series of briquette formed cokes were prepared by changing the addition amount of low rank pulverized coal. The effect of the addition amount of Shenmu coal on properties of briquette formed coke was studied. The result showed that, when the addition amount of Shenmu coal was 45%, briquette formed coke had the best performance. Formed coke proximate analysis result was as follows: Mad=0.22%, Ad=12.99%, Vdaf=1.43%, and compressive strength and fall strength were 3 902.6 N and 99.45%, and M25and M10were 75.47% and 24.53%,which was in accord with industrial application standards. With the increase of the proportion of Shenmu coal, briquette formed coke strength showed a downward trend. Due to small particle size, small porosity and high surface area of Shenmu coal, less binder entered into coal interspaces, and coal was not completely surrounded by the colloid, and the melting was not sufficient in the high-temperature pyrolysis.
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