Impact of artificial recharge on water quality in groundwater depression cone
Xueyan Ye, Xinqiang Du
Abstract
Xueyan Ye, Xinqiang Du
Abstract
More than 100 regional groundwater depression cones have developed because of groundwater over-exploitation in recent years in China. The total area of the cones is nearly 15 × 104 km2 and the Daqing groundwater depression cone considered in this paper is the second largest. In order to control groundwater level and its related environmental side effects, artificial aquifer recharge (AR) will be implemented in the Daqing groundwater depression cone. Recharge water imported from the River Nenjiang will interact with native groundwater and the aquifer matrix during the process of artificial aquifer recharge and this will influence groundwater quality and affect the groundwater environment in the region. The interaction between recharge water, native groundwater and aquifer matrix was forecast by groundwater geochemistry modelling. The modelled results show a tendency of water quality change in aquifer, which is helpful to identify any health risks and assess the feasibility of artificial recharge in this region of China.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
More than 100 regional groundwater depression cones have developed because of groundwater over-exploitation in recent years in China. The total area of the cones is nearly 15 × 104 km2 and the Daqing groundwater depression cone considered in this paper is the second largest. In order to control groundwater level and its related environmental side effects, artificial aquifer recharge (AR) will be implemented in the Daqing groundwater depression cone. Recharge water imported from the River Nenjiang will interact with native groundwater and the aquifer matrix during the process of artificial aquifer recharge and this will influence groundwater quality and affect the groundwater environment in the region. The interaction between recharge water, native groundwater and aquifer matrix was forecast by groundwater geochemistry modelling. The modelled results show a tendency of water quality change in aquifer, which is helpful to identify any health risks and assess the feasibility of artificial recharge in this region of China.
Key concepts: Groundwater recharge, Aquifer, Groundwater, Depression-focused recharge, Cone of depression, Hydrology (agriculture), Environmental science, Geology