Review: Water–rock interactions and related eco-environmental effects in typical land subsidence zones of China | Revue: Interactions eau–roche et effets éco-environnementaux associés dans des zones typiques de subsidence de Chine Revisión: Las interacciones agua–roca y los efectos eco-ambientales relacionados en típicas zonas de subsidencia del terreno de China 综述: 中国典型地面沉降区的水–岩相互作用及其生态环境效应 Revisão: Interações água–rocha e efeitos eco-ambientais relacionados em zonas típicas de subsidência de terreno da China
2018
Land subsidence is common in some regions of China. Various eco-environmental problems have arisen due to changes in water–rock interactions in these subsided areas, for which a comprehensive understanding of the hydrogeological setting is needed. This paper presents the general status of land subsidence in three typical subsided areas of China through the compilation of relevant data, and reviews some typical changes in the water–rock interactions in subsided areas along with related eco-environmental issues. It is found that the subsidence development and distribution are controlled by the groundwater-withdrawal intensity externally, and by the thickness and compressibility of unconsolidated sediments internally. The physical changes and related effects of water–rock interactions in subsided areas include: (1) the decreased ground elevation that caused floods, waterlogged farmland, etc.; (2) the differential subsidence that caused ground fissures; and (3) the change of seepage field that caused substantial reduction of the water resource. Chemically, the changes and related effects of water–rock interactions include: (1) the change to the chemical environment or processes due to the hydrogeologic structure alteration, which caused groundwater pollution; and (2) hydrologic mixing (seawater intrusion, artificial recharge; exchange with adjacent aquifers or aquitards), which degraded the groundwater quality. Further research on the subsided areas in China is suggested to reveal the mechanisms regarding biological and gaseous (meteorological) changes from the perspective of interacting systems among water, rocks, biological agents and gases.
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