西部干旱半干旱露天煤矿生态重构技术难点及发展方向

毕银丽, 彭苏萍, 杜善周

毕银丽, 彭苏萍, 杜善周. 西部干旱半干旱露天煤矿生态重构技术难点及发展方向[J]. 煤炭学报, 2021, (5): 1355-1364.
引用本文: 毕银丽, 彭苏萍, 杜善周. 西部干旱半干旱露天煤矿生态重构技术难点及发展方向[J]. 煤炭学报, 2021, (5): 1355-1364.
BI Yinli, PENG Suping, . Technological difficulties and future directions of ecological reconstruction in open pit coal mine of the arid and semi-arid areas of Western China[J]. Journal of China Coal Society, 2021, (5): 1355-1364.
Citation: BI Yinli, PENG Suping, . Technological difficulties and future directions of ecological reconstruction in open pit coal mine of the arid and semi-arid areas of Western China[J]. Journal of China Coal Society, 2021, (5): 1355-1364.

西部干旱半干旱露天煤矿生态重构技术难点及发展方向

Technological difficulties and future directions of ecological reconstruction in open pit coal mine of the arid and semi-arid areas of Western China

  • 摘要: 露天煤矿开采对生态环境最严重和直接的影响是对水资源破坏与土地资源的挖损占压,对生态系统的种群破坏。西部干旱半干旱露天矿区生态重构的关键是水资源保护与利用、排土场土层结构重构、表土改良和植被优化组合。西部干旱半干旱露天矿区生态重构核心是研发露天矿区岩层结构与含水量探测技术,监测地下水存在的范围与边界。以水资源量为约束,构建排土场近地表合理的土层结构,实现重构土层保水与涵水动态协调供给。提出干旱半干旱露天矿排土场近地表高效低成本的表土生态层-涵水层-隔水层的三层土层重构结构模型,研发物探检测成套技术与装备,监测矿坑水来源、排土场土层结构与含水率,保证生态工程水资源有效利用。结合土地的生态承载力,对排土场重构生态进行功能分区与景观设计。开发新型微生物菌剂培养配方,揭示微生物改良土壤及抗逆境机理,形成较好的有机生物立体生态重构模式,可产生较好的经济、生态和社会效益,促进矿区绿色可持续发展。通过对西部干旱半干旱露天矿区及其周边环境动态观测,在生态条件差的地区,人工干预能有效地打破原始生态禁锢,刺激生态正向发展,获得西部干旱半干旱露天矿区自然与人工生态协调发育规律。解豁了科技界担心大规模的煤炭开发使西部干旱半干旱地区的生态环境进一步恶化,造成“雪上加霜”效应的难题。同时针对西部干旱半干旱区露天矿排土场重构土壤的结构差、肥力低、植物种类单一,重构生态难的现状,采用微生物-植物联合修复技术,研发多型号生物修复菌剂和基质,有效地促进了植物根系发育,增强了植物抗土壤压实、养分贫瘠、干旱缺水及易盐碱化等逆境的生理生化反应,人工干预重构后的生态环境比原生态效应提高10倍以上。实践了西部露天煤矿区既要金山银山,再造绿水青山的生态理念。
    Abstract: The most serious and direct impact of open-pit coal mining on the ecological environment is the destruction of water resources and land resources,as well as the destruction of species in the ecological system.The key to ecological reconstruction of arid and semi-arid dumps is to develop the detection technology of rock structure and water content,in which monitor the range and boundary of underground water.Based on the constraints of water resources,a reasonable soil layer structure of the dump was constructed to obtain the dynamic characteristics of soil water retention and culvert.A three-layer sponge structure model for mining ecological environment reconstruction was proposed and implemented,including topsoil ecological layer,culvert layer and waterproof layer.Through research the geophysical detection technology and equipment,the source of mine water,soil structure and moisture content of the dump were monitored,so as to ensure the effective utilization of ecological engineering water resources.Combined with the ecological capacity of the land,the functional zoning and landscape design of the reconstruction ecology of the dump were carried out.Meanwhile,the development of new microbial culture formula has formed a better organic biological three-dimensional ecological reconstruction combination mode,which has produced better economic,ecological and social benefits,promoted the green and sustainable development of the mining area.Through the dynamic observation of arid and semi-arid open-pit mining areas and their surrounding environment,the artificial intervention can effectively break the confinement of primitive ecology,stimulated the positive development of ecology and obtained the coordinated development law of natural and artificial ecology.It solves the scientific concern that a large-scale coal exploitation will further worsen the ecological environment in arid and semi-arid areas in western China,resulting in the“worse”effect.The open-pit dumps had poor soil structure,low soil fertility,single plant composition,and difficult ecological reconstruction.Therefore,the research and development of multiple types of biological agents and substrates can effectively promote the development of plant roots,enhance the resistance of plants to soil compaction,nutrient impoverishment,drought,water shortage and salinization.The ecological environment effect after the artificial intervention is more than 10 times higher than that in the original state,realizing the ecological concept of not only maintaining“the mountains of gold and silver”,but also reestablishing “the lucid waters and lush mountains”.
  • 期刊类型引用(18)

    1. 冯国瑞, 文晓泽, 郭军, 韩磊, 白锦文, 钱瑞鹏, 王凯, 张旭, 金江, 张小荣. 遗煤资源绿色开采与采空区功能提升中的煤岩动态力学问题研究与探讨. 绿色矿山. 2025(03) 百度学术
    2. 解盘石, 张波, 黄宝发, 张浩, 路贝, 雷二辉, 王茜, 刘鑫. 剥蚀区影响下大巷布置优化及煤柱稳定性研究. 采矿与岩层控制工程学报. 2025(03) 百度学术
    3. 邵轩,陈林林,史开文,陈结,蒲源源,黄慧琼,许乐. 采动诱发近距离煤层覆岩损伤演化规律及模拟研究. 矿业研究与开发. 2025(01): 135-143 . 百度学术
    4. 李鹏杰,杨峰,陈海富,高嘉良,赵瑞. 浅埋近距离煤层开采上覆房式煤柱破坏规律及稳定性控制研究. 煤矿安全. 2025(03): 167-176 . 百度学术
    5. 杜君武,黄庆享,韦业豪,王雨凡. 厚黄土层极近距离采空区下相邻工作面相向开采时序研究. 采矿与岩层控制工程学报. 2025(02): 211-223 . 百度学术
    6. 白秉哲,刘国磊,梁文昭,郝喜庆,胡海滨,田利华,吴延成. 煤柱群下厚硬顶板浅埋工作面开采覆岩运动特征. 中国煤炭. 2025(05): 39-49 . 百度学术
    7. 王琦,刘寄婷,江贝,薛浩杰,高红科,蒋振华. 极近距离煤层开采无煤柱自成巷控制方法研究. 采矿与岩层控制工程学报. 2024(01): 22-37 . 百度学术
    8. 王方田,屈鸿飞,张洋,刘超,郝文华,江振鹏. 松软厚煤层区段煤柱剪切滑块运动机理及协同控制技术. 煤炭学报. 2024(03): 1332-1344 . 本站查看
    9. 左常清,刘亚楠,田晓伟. 义桥煤矿边界煤柱留设合理性研究. 山东煤炭科技. 2024(05): 31-36 . 百度学术
    10. 冯国瑞,樊一江,王朋飞,郭军,高瑞,文晓泽,张鹏飞,朱林俊,钱瑞鹏,张洁. 基于离散元法的类岩石材料水力压裂裂缝扩展规律. 煤炭学报. 2024(05): 2231-2246 . 本站查看
    11. 张海峰. 基于FLAC~(3D)数值模拟的近距离煤层工作面布置应力分布研究. 当代化工研究. 2024(11): 122-124 . 百度学术
    12. 闫俊杰,范宇,孙利辉. 浅埋近距离煤层群工作面支架选型技术研究. 建井技术. 2024(03): 16-20+53 . 百度学术
    13. 梅勇. 紫金煤层采空区自燃“三带”分布规律研究. 煤矿现代化. 2024(04): 72-76 . 百度学术
    14. 刘星宇,王飞,汪军琪. 房柱采空区下工作面切眼巷积水区探测及煤柱应力研究. 煤炭工程. 2024(08): 132-137 . 百度学术
    15. 史佳斌. 浅埋工作面过煤柱群强矿压防治技术研究. 中国煤炭. 2024(09): 54-61 . 百度学术
    16. 董磊,汪军琪,王飞. 房柱式采空区残留煤柱宽度对工作面矿压规律影响研究. 煤炭工程. 2024(S1): 104-111 . 百度学术
    17. 冯国瑞,白锦文,曹光明,韩艳娜,马俊彪,王朋飞. 残采区关键域充填储碳空间重构的科学内涵. 中国矿业大学学报. 2023(03): 432-445 . 百度学术
    18. 朱卫兵,王晓振,谢建林,赵波智,宁杉,许家林. 矿山采动覆岩内部岩移原位监测技术进展及应用. 工矿自动化. 2023(09): 1-12 . 百度学术

    其他类型引用(20)

图(4)
计量
  • 文章访问数:  1644
  • HTML全文浏览量:  46
  • PDF下载量:  943
  • 被引次数: 38
出版历程
  • 网络出版日期:  2023-04-09
  • 发布日期:  2021-05-30

目录

    PENG Suping

    1. On this Site
    2. On Google Scholar
    3. On PubMed

    /

    返回文章
    返回