螯合剂对煤体性质的影响
作者:
中图分类号:

TD713

基金项目:

国家重点研发计划基金资助项目(2017YFC0804208),国家自然科学基金资助项目(51904141)。


Effects of chelating agent on coal properties
Author:
  • 摘要
  • | |
  • 访问统计
  • |
  • 参考文献 [17]
  • |
  • 相似文献
  • |
  • 引证文献
  • | |
  • 文章评论
    摘要:

    煤矿进入深部开采后,煤体的力学性质发生改变,致使煤层的可注性降低,且煤层注水效果随着时间的推移逐渐变差。选用螯合剂增加煤层注水效果,通过实验分析发现:所注低渗透煤层中含有一定量的矿物质,螯合剂亚氨基二琥珀酸四钠(IDS)可以使矿物质解络成离子,使原本处于封闭状态的孔隙被疏通,水在煤层中的流动性增强;煤层中矿物质离子的浸出量随螯合剂IDS质量浓度增加逐渐增大,IDS用量在质量浓度为2 000 mg/L时性价比最高;IDS作用后煤样的冲击倾向性下降;含硫矿物质(例如黄铁矿)中金属离子被螯合后硫被释放,从源头上减少了硫的含量,同时IDS又是可降解环保型螯合剂,其使用对环境无毒性影响。煤层注水添加螯合剂为复合动力灾害防治提供参考。

    Abstract:

    During the deep mining period of a coal mine, the mechanical properties of coal body have changed, resulting in the decrease of injectability of coal seam, and the effect of water injection in coal seam gradually deteriorates over time. In this research, chelating agent is selected to increase the effect of coal seam water injection. The experimental analysis has shown that the injected low permeability coal seam contains a certain amount of minerals which can be dissolved into ions by the chelating agent tetrasodium iminodiasuccinate (IDS), unclogging the originally closed pores, and enhancing the fluidity of water in the coal seam. The leaching amount of mineral ions in the coal seam increases gradually with the increase of the concentration of chelating agent IDS. When the concentration of IDS is 2 000 mg/L, the performance-cost ratio is the highest; the rock burst tendency of coal samples decreases by the action of IDS; the metal ions in sulfur-bearing minerals (such as pyrite) are released after chelation, which reduces the sulfur content from the source. At the same time, IDS is a degradable and environment-friendly chelating agent, providing assistance for environmental protection. Adding chelating agent to coal seam water injection can provide reference for the prevention and control of compound dynamic disasters.

    参考文献
    [1] 张绍强, 张运章. 我国煤炭资源、生产与环境概况[J]. 环境保护, 2006, 34(13):53-57.ZHANG Shaoqiang, ZHANG Yunzhang. Overview of China's coal resources, production and environment[J]. Environmental Protection, 2006, 34(13):53-57.(in Chinese)
    [2] 张有生. 世界煤炭市场及我国进口煤炭潜力分析[J]. 能源研究通讯, 2004(5):44-48.ZHANG Yousheng. Analysis of the world coal market and the import coal potential of China[J].Energy Research Newsletter, 2004(5):44-48.(in Chinese)
    [3] Liu F M, Cai Q X, Chen S Z, et al. A comparison of the energy consumption and carbon emissions for different modes of transportation in open-cut coal mines[J]. International Journal of Mining Science and Technology, 2015, 25(2):261-266.
    [4] Zarczynski P, Strugala A. Studies on the possibility of extending coal resources for coke production through the application of coal predrying[J]. Energy & Fuels, 2018, 32(5):5666-5676.
    [5] 潘一山. 煤矿冲击地压[M]. 北京:科学出版社, 2019.PAN Yishan. Coal mine rock burst[M]. Beijing:Science Press, 2019. (in Chinese)
    [6] Cheng Y P, Wang L, Zhang X L. Environmental impact of coal mine methane emissions and responding strategies in China[J]. International Journal of Greenhouse Gas Control, 2011, 5(1):157-166.
    [7] Xu L, Lu K, Pan Y, et al. Study on rock burst characteristics of coal mine roadway in China[J/OL]. Energy Sources, Part A:Recovery, Utilization, and Environmental Effects, 2019(2019-08-16)[2019-10-11]. https://www.tandfonline.com/doi/full/10.1080/15567036.2019.1655114.
    [8] 王青松, 金龙哲, 孙金华. 煤层注水过程分析和煤体润湿机理研究[J]. 安全与环境学报, 2004, 4(1):70-73.WANG Qingsong, JIN Longzhe, SUN Jinhua. A research on coal seam water infusion course and coal body wetness mechanism[J]. Journal of Safety and Environment, 2004, 4(1):70-73.(in Chinese)
    [9] 章梦涛, 宋维源, 潘一山. 煤层注水预防冲击地压的研究[J]. 中国安全科学学报, 2003, 13(10):69-72.ZHANG Mengtao, SONG Weiyuan, PAN Yishan. Study on water pouring into coal seam to prevent rock-burst[J]. China Safety Science Journal, 2003, 13(10):69-72.(in Chinese)
    [10] 王惠宾, 汪远东, 卢平. 煤层注水中添加湿润剂的研究[J]. 煤炭学报, 1994, 19(2):151-160.WANG Huibin, WANG Yuandong, LU Ping. Research on wetting agent for water infusion of coal seams[J]. Journal of China Coal Society, 1994, 19(2):151-160. (in Chinese)
    [11] 姜楠楠, 陈绍杰, 金龙哲. 有压源下煤层注水表面活性剂湿润煤体的研究[J]. 煤炭技术, 2014, 33(10):25-27.JIANG Nannan, CHEN Shaojie, JIN Longzhe. Study of surface active agent on coal seam pressure water injection[J]. Coal Technology, 2014, 33(10):25-27.(in Chinese)
    [12] 霍灵军, 田彦武, 郝军. 表面活性剂在煤层注水中的应用与实践[J]. 煤炭技术, 2011, 30(5):106-108.HUO Lingjun, TIAN Yanwu, HAO Jun. Application practice on surfactant in coal seam water infusion[J]. Coal Technology, 2011, 30(5):106-108.(in Chinese)
    [13] 李建欣. XRD全谱拟合精修对贵州煤中矿物质的定量研究[D]. 河南焦作:河南理工大学, 2009.LI Jianxin. X-ray diffraction rietveld refinement method quantitative phase analysis minerals in coals Guizhou Province[D]. Jiaozuo, Henan:Henan Polytechnic University, 2009.(in Chinese)
    [14] Tolkacheva L N, Nikol'skii V M. The thermodynamic characteristics of the formation of Al3+ ion complexes with iminodisuccinic acid in aqueous solutions[J]. Russian Journal of Physical Chemistry A, Focus on Chemistry, 2012, 86(3):396-398.
    [15] Kolodynska D. Application of strongly basic anion exchangers for removal of heavy metal ions in the presence of green chelating agent[J]. Chemical Engineering Journal, 2011, 168(3):994-1007.
    [16] 卢国斌, 李达, 吴宪, 等. 东荣二矿煤层注水工艺优化及应用[J]. 辽宁工程技术大学学报(自然科学版), 2016, 35(8):797-803.LU Guobin, LI Da, WU Xian, et al. Coal seam water injection process optimization and application in Dongrong 2 mine[J]. Journal of Liaoning Technical University(Natural Science), 2016, 35(8):797-803.(in Chinese)
    [17] 孙礼奇. IDS对重金属污染土壤淋洗修复研究[D]. 沈阳:沈阳大学, 2016.SUN Liqi. The washing remediation of the contaminated soil by heavy metals with IDS[D]. Shenyang:Shenyang University, 2016.(in Chinese)
    相似文献
    引证文献
    网友评论
    网友评论
    分享到微博
    发 布
引用本文

路凯旋,徐连满.螯合剂对煤体性质的影响[J].重庆大学学报,2020,43(4):107-112.

复制
分享
文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2019-11-08
  • 在线发布日期: 2020-04-21
文章二维码