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城市污泥与兰炭末磷酸法自黏结成型机理研究
引用本文:王爱民,白妮,王金玺,孙志勇,高雯雯,陈碧.城市污泥与兰炭末磷酸法自黏结成型机理研究[J].非金属矿,2019(1):91-93.
作者姓名:王爱民  白妮  王金玺  孙志勇  高雯雯  陈碧
作者单位:榆林学院化学与化工学院;陕西省低变质煤洁净利用重点实验室;榆林学院能源工程学院
基金项目:陕西省教育厅重点科学研究计划(重点实验室)(17JS145)
摘    要:将磷酸加入到城市污泥和兰炭末中制备型焦,测试了型焦生块和熟块的主要性能指标,并与陕西省洁净型煤标准进行对比,利用热重和红外光谱分析型焦自黏结成型的机理。结果表明,加入磷酸后,污泥和兰炭末型焦生块的热解新增一个失重阶段,在184℃出现一个最大失重速率点,对应为磷酸氢盐分解、脱水及缩聚等生成无机高分子黏结剂,进而包裹、黏结兰炭末成型。污泥中重金属含量极低,磷酸氢盐的生成量很少,型焦熟块可以成型且绝大部分指标满足陕西省洁净型煤标准,但跌落强度远不符合要求。

关 键 词:城市污泥  兰炭末  磷酸  型焦  机理

Study on the Mechanism of Self Bonding to Municipal Sludge and Fine Semi-coke by Phosphoric Acid Method
Wang Aimin,Bai Ni,Wang Jinxi,Sun Zhiyong,Gao Wenwen,Chen Bi.Study on the Mechanism of Self Bonding to Municipal Sludge and Fine Semi-coke by Phosphoric Acid Method[J].Non-metallic Mines,2019(1):91-93.
Authors:Wang Aimin  Bai Ni  Wang Jinxi  Sun Zhiyong  Gao Wenwen  Chen Bi
Affiliation:(School of Chemistry and Chemical Engineering, Yulin University, Yulin, Shaanxi 719000;Shaanxi Key Laboratory of Low Metamorphic Coal Clean Utilization, Yulin, Shaanxi 719000;School of Energy Engineering, Yulin University, Yulin, Shaanxi 719000)
Abstract:The formed coke was prepared from municipal sludge and fine semi-coke by adding phosphoric acid and the main performance indexes of raw block and ripe block were tested, which were compared with clean briquette standard of shaanxi province. The results showed that when phosphoric acid was added to sludge and fine semi-coke, pyrolytic reaction of block appeared a new degradation stage, which had a maximum degradation rate poin at 184 ℃ and it was corresponding to the decomposition of hydrogen phosphate, dehydration and polycondensation to form inorganic polymer binder and then wrapped, bonded fine semi-coke. Because the heavy metal content in sludge was very low, the production of hydrogen phosphate was very small. The ripe block of formed coke can be formed and most of the indexes meeted clean briquette standard of shaanxi province, but the drop strength was far from meeting the requirements.
Keywords:municipal sludge  fine semi-coke  phosphoric acid  formed coke  mechanism
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