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群矿开采条件下山西潞安矿区的地下水流场变化 被引量:11
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作者 代锋刚 张发旺 +3 位作者 王滨 韩占涛 么红超 胡博文 《地球学报》 EI CAS CSCD 北大核心 2018年第1期94-102,共9页
煤炭开采导致区域含水层结构破坏,已经严重影响了区域地下水循环演化态势,是煤矿区地下水资源短缺的根本原因。本文以山西长治盆地潞安矿区为例,通过野外调查、相似材料模拟实验和数值模拟手段,分析了群矿开采驱动下含水层结构破坏对地... 煤炭开采导致区域含水层结构破坏,已经严重影响了区域地下水循环演化态势,是煤矿区地下水资源短缺的根本原因。本文以山西长治盆地潞安矿区为例,通过野外调查、相似材料模拟实验和数值模拟手段,分析了群矿开采驱动下含水层结构破坏对地下水流场的影响。通过砂槽模拟试验结果和数值模拟结果进行对比验证,结果表明:1)煤层开采形成采动裂隙发育基本限制在完整基岩内,使得隔水底板黏土岩发生弯曲变形,承压含水层水位下降形成层间疏干区,对第四系潜水含水层流场影响甚微,潜水水位没有明显下降;2)隔水层有效厚度变薄的局部地区,由于采动裂隙切穿隔水层,导致该区潜水含水层消失;3)采煤造成的类似"溯源侵蚀",引发原本隔离的地下水系统间的地下水袭夺现象,矿井水补给量有所增加。 展开更多
关键词 计算机模拟 物理模拟 相似材料模型 群矿开采 含水层结构
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含水层结构变异对区域地下水循环影响数值模拟 被引量:5
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作者 代锋刚 张发旺 +2 位作者 王滨 么红超 陈立 《地球学报》 EI CAS CSCD 北大核心 2017年第B11期64-68,共5页
煤炭开采对地下水资源的破坏是限制煤矿区经济与环境可持续发展的主要瓶颈,煤炭资源开采与水资源保护的矛盾将日益加剧。我国富煤地区主要分布在华北和西北,仅山西、内蒙古、陕西和新疆四省自治区煤炭查明资源储量就占全国的73.1%,这些... 煤炭开采对地下水资源的破坏是限制煤矿区经济与环境可持续发展的主要瓶颈,煤炭资源开采与水资源保护的矛盾将日益加剧。我国富煤地区主要分布在华北和西北,仅山西、内蒙古、陕西和新疆四省自治区煤炭查明资源储量就占全国的73.1%,这些富煤地区多是地下水资源相对贫乏的地区,全国86个重点矿区缺水的占71%,严重缺水的占40%,而煤矿开采对地下水资源的严重破坏加剧了矿区的水资源短缺矛盾. 展开更多
关键词 含水层结构变异 群矿开采 地下水 数值模拟 长治盆地
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Changes of Bacterial Community Structure in Copper Mine Tailings After Colonization of Reed (Phragmites communis) 被引量:10
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作者 CHEN Yu-Qing REN Guan-Ju +3 位作者 AN Shu-Qing SUN Qing-Ye LIU Chang-Hong SHUANG Jing-Lei 《Pedosphere》 SCIE CAS CSCD 2008年第6期731-740,共10页
Soil samples were collected from both bare and vegetated mine railings to study the changes in bacterial communities and soil chemical properties of copper mine tailings due to reed (Phragmites communis) colonizatio... Soil samples were collected from both bare and vegetated mine railings to study the changes in bacterial communities and soil chemical properties of copper mine tailings due to reed (Phragmites communis) colonization. The structures of bacterial communities were investigated using culture-independent 16S rRNA gene sequencing method. The bacterial diversity in the bare mine tailing was lower than that of the vegetated mine tailing. The former was dominated by sulfur metabolizing bacteria, whereas the latter was by nitrogen fixing bacteria. The bare mine tailing was acidic (pH = 3.78), whereas the vegetated mine tailing was near neutral (pH : 7.28). The contents of organic matter, total nitrogen, and ammonium acetate-extractable potassium in vegetated mine tailings were significantly higher than those in the bare mine railings (P 〈 0.01), whereas available phosphorus and electrical conductivity were significantly lower than those in the bare mine tailings (P 〈 0.01). The results demonstrated that 16S rRNA gene sequencing could be successfully used to study the bacterial diversity in mine tailings. The colonization of the mine tailings by reed significantly changed the bacterial community and the chemical properties of tailings. The complex interactions between bacteria and plants deserve further investigation. 展开更多
关键词 16S rRNA gene bacterial diversity bacterial community functional group mine tailings
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