煤炭工程 ›› 2023, Vol. 55 ›› Issue (5): 170-174.doi: 10.11799/ce202305029

• 研究探讨 • 上一篇    下一篇

煤炭地下气化典型有机物热解产出研究

辛林1,吴景2,王博伟2,牛茂斐1,李佳泽2,徐伟豪2,王欣2,尚振杰2,李华龙2,马彦3   

  1. 1. 山东科技大学 安全与环境工程学院;山东科技大学 矿山灾害预防控制-省部共建国家重点实验室培育基地
    2. 山东科技大学 安全与环境工程学院
    3. 山东鲁西发电有限公司
  • 收稿日期:2022-10-18 修回日期:2023-01-29 出版日期:2023-05-19 发布日期:2023-05-19
  • 通讯作者: 辛林 E-mail:xinlincumt@163.com

Study on pyrolysis yield of typical organic substances in underground coal gasification based on GC-MS

  • Received:2022-10-18 Revised:2023-01-29 Online:2023-05-19 Published:2023-05-19

摘要: 煤炭地下气化过程中尤其是干馏干燥区,热解产生的大量有机物,会对周围含水层造成潜在的污染风险,严重制约煤炭地下气化的产业化发展。通过对煤样进行200~600 ℃不同终温下慢速热解,模拟气化通道干馏干燥区无氧条件下的热解反应实验,探究煤热解产生典型有机质种类及含量的变化规律。研究表明,热解温度为200 ℃时,热解产物中含氧化合物含量最高,高达36.19%,随着温度升高,其含量变化较小|酚类化合物随着热解温度的升高而增多,600 ℃时含量达到17.97%|芳香烃化合物在原煤中含量较高,温度高于300 ℃时开始大量释放,占热解总产物的比重较高|在300 ℃时热解产生了大量脂肪烃化合物,随着温度继续升高其含量不断下降,600 ℃时脂肪烃含量下降至总产物的10%左右。

关键词: 煤炭地下气化, 低温热解, 典型有机物, GC-MS

Abstract: In the process of underground coal gasification, especially in the dry distillation zone, the organic substances generated by pyrolysis will cause potential pollution to the surrounding aquifers, which seriously restricts the industrialization of underground coal gasification. The coal samples were subjected to slow pyrolysis at different end temperatures from 200°C to 600°C. This experiment can simulate the pyrolysis reaction under the oxygen-free condition in the dry distillation zone of gasification channel distillation, and explore the variety and content of typical organic substances produced by coal pyrolysis. The results showed that the highest content of oxygenated compounds in the pyrolysis products was 36.19% at a pyrolysis temperature of 200°C, with the increase of temperature, the content changes slightly. The phenolic compounds increased with the increase of pyrolysis temperature, and the content reached 17.97% at 600°C. The content of aromatic hydrocarbon compounds in raw coal is relatively high. When the temperature is higher than 300°C, a large amount of aromatic hydrocarbon compounds begin to release. The proportion of aromatic hydrocarbon compounds in the total pyrolysis products is relatively high. A large amount of aliphatic hydrocarbon compounds were produced by pyrolysis at 300°C. With the temperature increasing, the content of aliphatic hydrocarbon compounds decreases continuously. At 600°C, the content of aliphatic hydrocarbon decreases to about 10% of the total products.

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