杨建. 井上下联合处理矿井水中污染物效果研究[J]. 煤田地质与勘探, 2016, 44(2): 55-58. DOI: 10.3969/j.issn.1001-1986.2016.02.011
引用本文: 杨建. 井上下联合处理矿井水中污染物效果研究[J]. 煤田地质与勘探, 2016, 44(2): 55-58. DOI: 10.3969/j.issn.1001-1986.2016.02.011
YANG Jian. Effect of pollutant treatment of mine water in mine and on the surface[J]. COAL GEOLOGY & EXPLORATION, 2016, 44(2): 55-58. DOI: 10.3969/j.issn.1001-1986.2016.02.011
Citation: YANG Jian. Effect of pollutant treatment of mine water in mine and on the surface[J]. COAL GEOLOGY & EXPLORATION, 2016, 44(2): 55-58. DOI: 10.3969/j.issn.1001-1986.2016.02.011

井上下联合处理矿井水中污染物效果研究

Effect of pollutant treatment of mine water in mine and on the surface

  • 摘要: 为了去除矿井水中多种污染物,建立了"采空区+常规处理+深度处理"的井上下联合处理工艺组合。结果表明:受煤矿顶板含水层水岩作用,矿井水中Cl-、SO42-和Fe离子出现了超标现象,有的甚至达到Ⅴ类地下水标准;溶解性有机质含量较低,以大分子和芳香族化合物为主。采空区主要利用其顶板岩石破碎充填物吸附过滤矿井水中悬浮物,对Fe离子和有机质也有一定的处理效果,Fe离子去除率约20%,TOC和UV254的平均去除率分别为67.45%和65.40%。常规处理工艺对F-的去除率为11.90%~35.21%,铁锰离子则完全被去除;由于前端好氧沉淀池,硝酸盐和有机质含量略有升高,其中增加的有机质主要为溶解性微生物代谢产物。深度处理工艺对常规离子、硝酸盐、氟离子、有机质等有较好的去除效果,去除率均在95%以上。总体上,在采空区和常规处理工艺去除悬浮物和部分污染物的基础上,再利用深度处理工艺完成绝大部分污染物的去除,是一套比较有效的矿井水处理工艺组合。

     

    Abstract: In order to remove pollutants from underground mine water, a united water treatment process in mine and on the surface was established. The process included mine goaf treatment, conventional treatment and advanced treatment. The treatment results showed that some indexes (e.g., Cl-, SO42- and Fe) of mine water exceeded the Quality Standard for Groundwater (GB/T 14848-93), and Cl- and SO42- in some water samples was of fifth class. The concentration of dissolved organic matter (DOM) was low, and organic matters of large molecules and aromatic compounds were predominant. In goaf, Fillings of broken roof rocks were mainly used to to adsorb and remove suspended matter, and iron and organic matter also was removed partly. The removal rates of Fe, TOC and UV254 were 20%, 67.45% and 65.40% respectively. The removal rate of F- was 11.90%~35.21% with conventional treatment process, while the ferrous and manganese ions were completely removed. In the front aerobic precipitation pond the content of nitrate and organic matter increased slightly, the increased organic matter was mainly soluble microbial product. The advanced treatment process had were good removal efficiency for conventional ions, nitrate, fluoride and organic matter with removal rate of above 95%. As a whole, based on the removal of suspended matter and some pollutants by mine goaf and conventional treatment processes, the advanced treatment process could remove most pollutants. The processes consisting of mine goaf treatment, conventional treatment process and advanced treatment process were an effective combination of treatment technologies for mine water.

     

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