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1.
J Environ Manage ; 351: 119783, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38113784

RESUMEN

Tempero-spatial analysis of groundwater to disseminate the level of drinking water quality and industrial suitability to meet the developmental requirement of a region is a significant area of research. Accordingly, groundwater quality and geochemical interactions prevailed in a black sand mineral rich coastal village is systematically presented in appraisal of drinking and industrial uses for economic engineering purposes. The study area focused is Alappad village, Kollam, Kerala, India has numerous ecological features in a sustainable perspective. The region is unique with placer deposits where an alluvial soil aquifer-saline water-freshwater interaction occurs. This dynamics decides the pertinent hydro geochemistry, potable and designated uses of ground water in season wise. Coastal area is hereby presented based on water quality parameters predicted with the health risk assessment model with a view on human health and cancer risk due to ions (Pb, Ni, Cu, Ba, Fe, Al, Mn, Zn) in groundwater.. To ascertain industrial usage, ground water is evaluated by Langelier saturation index (LSI), Ryznar stability index (RSI), Aggressive index (AI), Larson-Skold index (LS) and Puckorius scaling index (PSI) and inferences are complemented. Chemical weathering and evaporation processes are the natural factors controlling hydrochemistry of this aquifer. This complex coastal system has Nemerow pollution index (NPI) of moderate pollution for total dissolved ions of Fe and lesser for Cu, and Cr present in groundwater. LSI indicates, water is scale forming but non corrosive (46% in PRM, 20% in MON and 47% in POM). Water quality index (WQI) in POM (ranged 28.7-79.9) was excellent for drinking, followed by PRM (23.6-218.2) and MON (33.4-202.7) seasons. This groundwater bears temporary hardness with the dominance of Ca-Mg-HCO3 water type. Health risk assessment of non-carcinogenic risk index of trace metals (Fe, Zn, Mn, and Pb) revealed, children are at 'low risk' and 'medium' risk with Ni and Cu. The carcinogenic risk index indicated 93% of samples were high Ni induced cancer risk for children, and 87% for adults due to long term ingestion (drinking water intake) pathway. Studies specific on placer mineral deposited coastal region of India are not sufficiently reported with a focus on the above perspectives. Growing need of rare earths for material, device and energy applications, placer mineral explorations can destabilise the coastal hydrosphere. Interrelations of mineral soil - water chemistry prevailed and health hazard predicted would kindle a set of sustainable deliberations. This study summarises the drinking and industrial use of coastal groundwater for future development and human well-being on the basis of quality criteria, corrosion proneness, water stability and health risk factors.


Asunto(s)
Agua Potable , Agua Subterránea , Neoplasias , Contaminantes Químicos del Agua , Adulto , Niño , Humanos , Arena , Monitoreo del Ambiente , Plomo , Agua Subterránea/análisis , Calidad del Agua , Minerales/análisis , Suelo , Medición de Riesgo , India , Contaminantes Químicos del Agua/análisis
2.
Heliyon ; 9(10): e20431, 2023 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-37822639

RESUMEN

Quality groundwater is the most essential prerequisite for the better livelihood of the coastal villages and a vital resource for a safe living. Seawater interaction and coastal inundation modify hydro geochemical cycles leading to gross utility as a challenge. Poor quality water intake causes diseases and seriously affects human health. In this study, the suitability of shallow drinking water sources (10-15 m) has been studied with a focus on coastal village in south west of India (Alappad coast, Kollam, Kerala) which is a host of huge placer mineral reserve of the country. This coastal stretch has good deposition of Late Quaternary sediments of heavy mineral placers subjected to severe seawater interactions. Mineralogically, garnet and heavy minerals comprises the beaches and most coastal plains of the Alappad. A concerted geological process where moving water and waves causes erosion, leads to lowering of the earth's surface -is prominent in this fragmented land. This study critically evaluates the temporal-spatial impact of these interactions in an age of varying climatic conditions and hence for reference beyond. Water quality index analysis has been attempted using the entropy weighted water quality index (EWQI) method for a total of 45 samples (15 samples season-wise). It aims to ascertain better choices of groundwater sources for domestic uses for isolated settlers endowed with estuaries, and old coastal plains with barrier beaches. Irrigation suitability was evaluated using sodium adsorption ratio (SAR) and Na%. Observed EWQ Indices (38.2 ± 14.5) for post-monsoon (80% samples), (66.1 ± 77.7) for monsoon (66% samples), and (71.4 ± 71.3) for pre-monsoon (53% samples) fall in excellent category. Post-monsoon is most favoured for a better quality groundwater as evidenced by WQI of 80% among the samples tested. Ca-HCO3 is the dominant hydrochemical type observed. The mean value of iron (0.9 ± 1.3 mg/L) exceeded the permissible limit of 0.3 mg/L during monsoon season due to mineral-water interactions. In pre-monsoon season the parameters Na+ (95.9 ± 200.7 mg/L), Cl- (173.4 ± 510.2 mg/L), EC (1559.3 ± 2510.6 µS/cm), and TDS (492.5 ± 629.7 mg/L) were observed in higher ranges. Significant correlation (p < 0.05) prevailed between EWQI, and parameters-conductivity (0.75), TDS (0.75), Iron (0.59), Ca2+ (0.66), and Mg2+ (0.74). Principal component analysis (PCA) on chemical parameters accounted for the total variance of 84.2% in pre-monsoon, 89.9% in monsoon and 82.9% in post-monsoon. Groundwater quality is influenced by geochemical processes, salt intrusion, and human activities like fertiliser application and domestic sewage discharge. Hierarchical cluster analysis (HCA) grouped the samples into three clusters. Cluster 3 represents poor quality water (13%) in pre-monsoon (EWQI ranged 32.2-192.7), and monsoon (EWQI ranged 171.8-309.7). Cluster 3 in post-monsoon (20%) indicating good water quality (EWQI ranged 51.4-72.6). Ultimate finding is that post-monsoon groundwater is more suitable for drinking and domestic purposes for the selected coastal area.

3.
J Taibah Univ Med Sci ; 16(3): 359-364, 2021 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-34140862

RESUMEN

OBJECTIVES: Maternal sleep deprivation not only affects the pregnant mother but also has profound effects on the well-being of the foetus. This study aims to assess the prevalence and predictors of excessive daytime sleepiness (EDS) and poor sleep quality (PSQ). METHODS: This was a cross-sectional study conducted among in-patient post-natal women of a tertiary care teaching hospital. A pretested semi-structured standardised questionnaire was administered. EDS was assessed using the Epworth sleepiness scale and PSQ was measured using the Pittsburgh Sleep Quality Index. RESULTS: A total of 225 participants were enrolled. The prevalence of EDS was 29.3% (95% confidence interval [CI] = 23.5, 35.8) and the prevalence of PSQ was 72.9% (95% CI = 66.6, 78.6). The factors (adjusted odds ratio; 95% CI; p-value) that were significantly associated with EDS were age (1.082; 1.019, 3.102; 0.042), being overweight (1.248; 1.012, 3.834; 0.041), low haemoglobin (1.246; 1.007, 4.572; 0.043), and gestational diabetes mellitus (GDM) (1.267; 1.001, 7.239; 0.049). On the other hand, the factors associated with PSQ were young age (1.092; 1.035, 3.763; 0.028), being overweight (1.602; 1.029, 2.995; 0.035), low haemoglobin (1.328; 1.004, 4.963; 0.047), and GDM (1.659; 1.284, 4.112; 0.016). No significant associations were found between perinatal outcomes and EDS or PSQ. Additionally, poor sleep practices were observed in our study participants. CONCLUSION: In this study, EDS and PSQ were significantly prevalent among participants, and their major predictors were age, haemoglobin, being overweight, and GDM.

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