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TRV-2026-0668Version 1 · Certified

Written 2026-08-06 06:27:59 UTC · current record

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TRUVACE RECORD VERSION
record: TRV-2026-0668
version: 1
kind: certified
reason: Certified into the record
timestamp: 2026-08-06T06:27:59.646985Z
status: published
lens: p_space
sector: health
headline: Determining groundwater quality and its associated human health risk using hydrochemical signatures and some machine learning techniques
dek: Groundwater is a major source of domestic water in coastal Ghana, but its quality is increasingly threatened by salinisation, nutrient enrichment, geogenic mineralisation, and localised anthropogenic contamination. In addition to hydrochemical indices and multivariate statistics that have been used over the years to assess coastal water quality, this study has incorporated nonlinear machine learning and probabilistic risk assessment to enhance source discrimination and uncertainty-based health risk characterisat…
gain_title: (none)
problem_title: Probabilistic assessment of the sampled wells indicated high non-carcinogenic risk for children and infants, with 32.11% and 36.49% exceedance and fluoride identified as the dominant driver, alongside nitrate and fluoride above WHO guidelines at some sites.
trace_subject: (none)
gain_reading: (none)
gain_evidence: (none)
problem_reading: Probabilistic assessment of the sampled wells indicated high non-carcinogenic risk for children and infants, with 32.11% and 36.49% exceedance and fluoride identified as the dominant driver, alongside nitrate and fluoride above WHO guidelines at some sites.
problem_evidence: probabilistic health risk assessment indicated low non-carcinogenic risk for adults (mean HI = 0.38, 3.05% exceedance) and high risk for children (mean HI = 1.04, 32.11% exceedance) and infants (mean HI = 1.10, 36.49% exceedance) | Some sites had nitrate and fluoride above the WHO drinking-water guidelines | The most important factor in risk variability was fluoride
quick_read: On 2026-08-05, a peer-reviewed study reported analysis of 432 groundwater wells along Ghana's central coastal zone, combining hydrochemical indices with PCA, Self-Organising Maps and Monte Carlo probabilistic risk assessment. The work documented pronounced salinisation and mineralisation, with EC from 94.6 to 52,700 uS/cm and chloride up to 22,433 mg/l, and used machine learning to discriminate geogenic versus anthropogenic controls.

The findings matter because the same assessment flagged low non-carcinogenic risk for adults but elevated risk for children and infants, with fluoride as the key variability driver and some nitrate and fluoride exceedances of WHO guidelines. Uncertainty remains about temporal trends, exposure pathways beyond ingestion, and effectiveness of proposed mitigation such as defluoridation and nutrient-source controls in high-risk communities.
limitation: Findings are bounded to the central coastal zone of Ghana and reflect high spatial variability in salinity and mineralisation, limiting generalisation to other aquifers or seasons.
tag: Evidence-backed problem
key_points: 432 groundwater samples from wells in central coastal Ghana were analysed for physicochemical parameters, major ions, nutrients and trace metals. | Weighted Average Water Quality Index classified 73.49% as excellent to good, while Comprehensive Pollution Index found 76.10% slightly to heavily polluted and Water Nutrient Pollution Index found 70.48% considerably to extremely polluted. | PCA extracted five components explaining 64.25% of variance; SOM identified two clusters reflecting water-rock interaction versus anthropogenic and redox effects. | Probabilistic risk assessment with Monte Carlo simulation found mean HI 0.38 for adults, 1.04 for children, and 1.10 for infants, with fluoride as the most important factor in risk variability.
rundown: Researchers examined 432 well samples from the central coastal zone of Ghana for physicochemical parameters, major ions, nutrients and trace metals, motivated by increased reliance on groundwater due to fluctuations in national water delivery. They applied hydrochemical indices, PCA, Self-Organising Maps, and Monte Carlo-based probabilistic health risk assessment.

Results showed extreme ranges in EC, TDS and chloride, with 73.49% rated excellent to good by WAWQI but 76.10% slightly to heavily polluted by CPI and 70.48% considerably to extremely polluted by WNPI, while 91.37% had low heavy metal contamination by HMEI. Risk modelling indicated low mean hazard for adults but mean HI above 1 for children and infants, prompting recommendations for routine monitoring, nutrient-source control, wellhead protection and targeted defluoridation.
sources:
- peer_reviewed | Environmental Geochemistry and Health | https://doi.org/10.1007/s10653-026-03404-4 | 2026-08-05
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