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调压技术在新庄孜矿防治瓦斯中的应用 被引量:2
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作者 汪金业 《淮南职业技术学院学报》 2003年第4期50-51,共2页
针对我矿普遍采用U型后退式通风方式存在的缺陷,不能满足一些特殊情况下防治瓦斯的需要,给我矿瓦斯管理带来的问题,通过对调压技术在5413s(7)采煤工作面、5607掘进工作面防治瓦斯中的应用,解决了在采掘过程中采空区瓦斯向采掘工作面涌... 针对我矿普遍采用U型后退式通风方式存在的缺陷,不能满足一些特殊情况下防治瓦斯的需要,给我矿瓦斯管理带来的问题,通过对调压技术在5413s(7)采煤工作面、5607掘进工作面防治瓦斯中的应用,解决了在采掘过程中采空区瓦斯向采掘工作面涌出的问题,保证了采掘工作面的安全生产,证明了在开采条件许可的情况下,调压技术是防治瓦斯的一种途径。 展开更多
关键词 “新庄孜矿” 瓦斯防治 调压技术 通风方式 采煤工作面 掘进工作面 采空区 瓦斯涌出
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Distribution pattern and limiting factors of vegetation in coal waste pile of Xinzhuangzi coal mine in Huainan 被引量:2
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作者 CHU Zhao-xia WANG Shun-chang WANG Xing-ming 《Journal of Coal Science & Engineering(China)》 2012年第4期413-417,共5页
In China, coal mine spoils have traditionally been dumped in cone-shaped heaps that have the potential to pollute air, soil and water environments. The coal waste pile occupies lots of arable land and endangers the ec... In China, coal mine spoils have traditionally been dumped in cone-shaped heaps that have the potential to pollute air, soil and water environments. The coal waste pile occupies lots of arable land and endangers the ecological system in the coal mine district. Vegetation restoration is an efficient approach for controlling the environment pollution of coal waste pile, and is also a topic of current interest in restoration ecology and degradation system ecology. This study focused on the distribu- tion pattern and limiting factors of vegetation in coal waste pile of Xinzhuangzi Coal Mine in Huainan. The results show that two stable plant communities (Synodon dactylon+Erigeron bonariensis.L+Setaria viridis community and Humulus scan- den+Erigeron bonariensis. L community) exist at the bottom of the pile. Synodon dactylon and Erigeron bonariensis. L have much higher values of summed dominance ratio, which denote that these two species can be used for restoration of coal waste piles. The high levels of pH (8.77) and salinity, low levels of total P and total K in coal mine spoil can be the limiting factors for the residence and growth of vegetation. 展开更多
关键词 coal waste pile vegetation distribution limiting factor regetation restoration Xinzhuangzi Coal Mine
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