Javascript must be enabled to continue!
Identifying Groundwater Recharge Sources and Mechanisms using Hydrochemistry and Environmental Stable Isotopes in High Arsenic Holocene Aquifers of Bangladesh
View through CrossRef
Und erstanding the sources and mechanisms of aquifer recharge is critical for water resource management. So far, this is the first comprehensive study to explore the sources and mechanisms of groundwater recharge applying stable environmental isotopes and hydrogeochemical properties in Southwestern Bangladesh. Water samples from the different sources (groundwater, surface (pond), river and rain water) of high arsenic (As) Holocene aquifers were used to investigate the chemical tracers and environmental stable isotopes (δ18O and δ2H) to explore the hydrogeological features, groundwater recharge sources, mechanisms and processes. The analytical results showed high As concentration in water samples observed 590.7 μg/L. High As groundwater was identified by a low pH value, medium HCO3- and TDS with low concentration of NO3- and SO42-. However, depleted δ2H and δ18O signatures indicated that local vertical rainfall is the key source to recharge groundwater in study area. The recharge process from pond seepage and irrigation return flow also contribute in groundwater recharge. Isotopic signatures suggested the vertical connectivity amongst the aquifers and significant vertical recharge. The reduced heavier isotope reveals extra recharging from floods of mountains and high altitude. Due to the heterogeneous and anisotropic structure of the aquifer system the spatial variability of δ2H and δ18O shows limited lateral connectivity. The combined analyses of δ2H isotope and Cl- ion showed that evaporation is the primary cause for groundwater discharge. Based on the spatial and vertical recharge processes of groundwater, present study provides a crucial baseline knowledge for establishing a sustainable groundwater management strategy. The findings from this study can guide the development of targeted groundwater management strategies and improvement of understanding the groundwater recharge sources and processes.
Chiang Mai University
Title: Identifying Groundwater Recharge Sources and Mechanisms using Hydrochemistry and Environmental Stable Isotopes in High Arsenic Holocene Aquifers of Bangladesh
Description:
Und erstanding the sources and mechanisms of aquifer recharge is critical for water resource management.
So far, this is the first comprehensive study to explore the sources and mechanisms of groundwater recharge applying stable environmental isotopes and hydrogeochemical properties in Southwestern Bangladesh.
Water samples from the different sources (groundwater, surface (pond), river and rain water) of high arsenic (As) Holocene aquifers were used to investigate the chemical tracers and environmental stable isotopes (δ18O and δ2H) to explore the hydrogeological features, groundwater recharge sources, mechanisms and processes.
The analytical results showed high As concentration in water samples observed 590.
7 μg/L.
High As groundwater was identified by a low pH value, medium HCO3- and TDS with low concentration of NO3- and SO42-.
However, depleted δ2H and δ18O signatures indicated that local vertical rainfall is the key source to recharge groundwater in study area.
The recharge process from pond seepage and irrigation return flow also contribute in groundwater recharge.
Isotopic signatures suggested the vertical connectivity amongst the aquifers and significant vertical recharge.
The reduced heavier isotope reveals extra recharging from floods of mountains and high altitude.
Due to the heterogeneous and anisotropic structure of the aquifer system the spatial variability of δ2H and δ18O shows limited lateral connectivity.
The combined analyses of δ2H isotope and Cl- ion showed that evaporation is the primary cause for groundwater discharge.
Based on the spatial and vertical recharge processes of groundwater, present study provides a crucial baseline knowledge for establishing a sustainable groundwater management strategy.
The findings from this study can guide the development of targeted groundwater management strategies and improvement of understanding the groundwater recharge sources and processes.
Related Results
[RETRACTED] Recharge PM Review v1
[RETRACTED] Recharge PM Review v1
[RETRACTED]Recharge PM: Weight Loss Support Supplement Legit or Scam? Real User Reprot Exposed! Are you fed up with trying to lose weight and spending so much on them? Deep sleep...
Characterizing Groundwater Quality, Recharge and Distribution under Anthropogenic conditions
Characterizing Groundwater Quality, Recharge and Distribution under Anthropogenic conditions
Awareness concerning sustainable groundwater management is gaining traction and calls for adequate understanding of the complexities of natural and anthropogenic processes and how ...
Characterization of Groundwater with Complementary Age Tracers
Characterization of Groundwater with Complementary Age Tracers
<p>Groundwater age or residence time is the time water has resided in the subsurface since recharge. Depending on the application, this definition may or may not include trav...
The hydrogeological units of Vienna - land use, groundwater use and groundwater chemistry
The hydrogeological units of Vienna - land use, groundwater use and groundwater chemistry
Information on urban groundwater in Vienna is important not only to secure a sustainable use and supply but also to protect groundwater quality. Here, we provide a compilation of a...
Groundwater Recharge Estimation in Upper Gelana Watershed, South-Western Main Ethiopian Rift Valley
Groundwater Recharge Estimation in Upper Gelana Watershed, South-Western Main Ethiopian Rift Valley
Estimating the spatial and temporal patterns of groundwater recharge through integrated water balance modeling plays an important role in sustainable groundwater resource managemen...
Characteristics of groundwater circulation and evolution in Yanhe spring basin driven by coal mining
Characteristics of groundwater circulation and evolution in Yanhe spring basin driven by coal mining
Abstract
The Yanhe spring basin located in the Jindong coal base is relatively short of water resources and the ecological environment is fragile. With the large-scale mini...
A Procedure to Estimate Global Natural Recharge in Karst Aquifers
A Procedure to Estimate Global Natural Recharge in Karst Aquifers
Natural recharge in karst aquifers is a key component of global water resources, yet its estimation remains challenging due to the complexity of karst hydrogeological processes. Th...
Groundwater Recharge and Mixing in Arid and Semiarid Regions: Heihe River Basin, Northwest China
Groundwater Recharge and Mixing in Arid and Semiarid Regions: Heihe River Basin, Northwest China
AbstractA sound understanding of groundwater recharged from various sources occurring at different time scales is crucial for water management in arid and semi‐arid river basins. G...

