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February 11, 2026Scientific Reports0 citationsOpen Access

Seasonal groundwater quality assessment and irrigation suitability in coastal aquifers of Puri District, Odisha, India

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YBYugajyoti BarikADAbinash DalaiSMSheelabhadra Mohanty

Key Points

  • This research evaluates the seasonal variation of groundwater quality in coastal aquifers for irrigation and drinking use.
  • Analyzed groundwater samples from 12 monitoring locations across 4 hydrological seasons.
  • Measured physicochemical parameters including pH, EC, TDS, hardness, cations, and anions.
  • Assessed drinking water suitability using BIS and WHO guidelines and irrigation suitability using various indices.
  • Groundwater quality classified from good to excellent, with some deterioration identified during specific seasons.
  • Irrigation indices indicate low to moderate sodium and salinity hazards, confirming agricultural suitability.

Abstract

Assessing seasonal groundwater quality in coastal aquifers is critical for ensuring sustainable drinking water supply and irrigation management under increasing anthropogenic and climate-induced pressures. This study evaluates the spatio-temporal variation of groundwater quality across four hydrological seasons winter (December-February), pre-monsoon (March-May), monsoon (June–September), and post-monsoon (October-November) in the coastal aquifers of Puri district, Odisha, India, during 2021–2022. Groundwater samples collected from twelve representative monitoring locations were analyzed for major physicochemical parameters, including pH, EC, TDS, total hardness, major cations (Ca²⁺, Mg²⁺, Na⁺, K⁺), and major anions (Cl⁻, SO₄²⁻, HCO₃⁻, NO₃⁻, and F⁻). Drinking water suitability was assessed using BIS (2012) and updated WHO (2022) guidelines, while irrigation suitability was evaluated using Sodium Adsorption Ratio (SAR), Kelly’s Ratio, EC, TDS, and USSL classification. The Water Quality Index (WQI) was employed to integrate multiple parameters into a single indicator of potability. Results reveal that groundwater quality ranges from good to excellent across most seasons, with localized deterioration during pre-monsoon and monsoon periods due to salinity enrichment and anthropogenic inputs. Irrigation indices indicate predominantly low to moderate sodium and salinity hazards, confirming suitability for agricultural use. The study provides a comprehensive seasonal and multi-index assessment of groundwater quality in a sensitive coastal aquifer system and contributes to SDG-6 (Clean Water and Sanitation) and SDG-13 (Climate Action) by supporting evidence-based groundwater management and climate-resilient water planning.

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Cite This Study

Barik et al. (2026) studied this question.

synapsesocial.com/papers/698be001058ab1890a13ba15https://doi.org/10.1038/s41598-026-39145-8
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Hydro-geochemical characterization and evaluation of groundwater quality in the coastal aquifers of Puri District, India: a multivariate statistical approach2026
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  4. 4Assessment of drinking and irrigation suitability of coastal groundwater in eastern India using integrated numerical indices (WQI, SPI, and IWQI) and geospatial analysis2026
  5. 5Entropy-weighted water quality index and TOPSIS for irrigation suitability assessment in eastern Odisha, India2026