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1.
The Indian subcontinent has the largest semi-arid tropical (SAT) area among developing nations. The State of Andhra Pradesh
falls under the SAT region in India and is mostly covered by compact and hard rocks, characterized by seasonal rainfall of
a highly fluctuating nature, in both space and time. As a consequence of the green revolution and an increase in industrial
activity, there has been an increase in the utilization of groundwater resources during the last two decades in Andhra Pradesh.
The development has also caused a number of problems, such as water table decline, decrease in well yields and seawater intrusion.
Although major irrigation projects have contributed to improved agricultural production, the associated problems of waterlogging,
salinization and loss of valuable bioresources have led to the gradual degradation of the land, affecting agricultural productivity.
Surface water and groundwater have also been polluted in several parts of the State because of untreated discharge of effluents
from the industries into nearby streams or open lands. A brief account of the overall scenario of the hydrogeological framework
and geo-environmental effects on the groundwater regime in Andhra Pradesh is presented. Possible management practices and
conservation methods are suggested.
Received: 9 August 1999 · Accepted: 10 July 2000 相似文献
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N. V. Ramamohana Rao N. Rao K. Surya Prakash Rao R. D. Schuiling 《Environmental Geology》1993,21(1-2):84-89
Geochemical and hydrochemical studies were conducted in Nalgonda District (A.P.), to explore the causes of high fluorine in waters, causing a widespread incidence of fluorosis in the local population. Samples of granitic rocks, soils, stream sediments, and waters were analyzed for F and other salient chemical parameters. Samples from the area of Hyderabad city were analyzed for comparison. The F content of waters in areas with endemic fluorosis ranges from 0.4 to 20 mg/l. The low calcium content of rocks and soils, and the presence of high levels of sodium bicarbonate in soils and waters are important factors favoring high levels of F in waters. 相似文献
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Fluoride-bearing groundwater in Gummanampadu Sub-basin, Guntur District, Andhra Pradesh, India 总被引:1,自引:0,他引:1
The functional factors responsible for fluoride (F?)-bearing groundwater used for drinking as well as for cooking in the area of Gummanampadu Sub-basin, Guntur District, Andhra Pradesh, India are discussed. The study area is a part of an Archean Gneissic Complex, consisting of banded-biotite-hornblende-gneisses, over which the Proterozoic Cumbhum quartzites, shales, phyllites, and dolomitic limestones occur. The chemistry of groundwater is dominated by carbonates (HCO3 ? and CO3 2?) at a higher pH. This results in a higher total alkalinity over total hardness, causing an excess alkalinity. Sodium ion is dominated among the cations (Ca2+, Mg2+, and K+). The concentration of F? (2.1–3.7 mg/L) is higher than that of desirable national limit (1.2 mg/L) prescribed for drinking purpose. A significant positive correlation exists between F? and pH as well as that between F? and HCO3 ? + CO3 2?. This indicates that the alkaline condition is the prime conducive factor for dissolving F?-bearing minerals more effectively leading to a higher concentration of F? in the groundwater. Furthermore, a positive chloro-alkaline index reflects the ion exchange, and an oversaturation with respect to CaCO3 indicates the evaporation. In addition, a negative relation between the well depth and F? shows the effect of solubility and/or leaching of salts in different depth levels. These factors regulate the concentration of F? in the groundwater. On the other hand, a positive correlation of F? with SO4 2? as well as with K+ shows the human land use activities (namely, use of chemical fertilizers, disposal of domestic wastes, etc.), which add F? to the groundwater. A significant number of the residents of the study area suffer from the health disorders related to fluorosis, which is a consequence of higher concentration of F? in the drinking water. Thus, this study emphasizes the need for supply of safe drinking water, nutritional diet, rainwater-harvesting structures, and public education to realize “health for all” motto of World Health Organization. 相似文献
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The fluoride content of dung, urine and milk of grazing animals, for example cow, she-buffalo, doe and ewe, was studied in
the Podili area, India, (endemic fluorosis) and also in Tirupati (non-fluorosis) for the purpose of comparison. The data reveal
that the fluoride content of the urine of animals is suitable for the preparation of biogeochemical atlases studying the environmental
effect in relation to health.
Received: 1 August 1997 · Accepted: 2 March 1998 相似文献
7.
N. Subba Rao 《Environmental Geology》2002,41(5):552-562
Hydrogeochemical investigations, which are significant for the assessment of water quality, have been carried out to study the sources of dissolved ions in groundwaters of some rural areas of Guntur district, Andhra Pradesh, India. Groundwaters in the area are mostly brackish. High contents of SiO2, and Na+ and Cl- ions in groundwater, in comparison with those of seawater, suggests a meteoric origin of groundwater. The high concentration of SiO2 and various geochemical signatures reflect the weathering of minerals. However, the Na++K+ vs Cl- ratio suggests weathering, has occurred only to some extent. The chemistry of groundwater favours the formation of clay minerals (montmorillonite, illite and chlorite), because of evapotranspiration. The positive saturation index of CaCO3 and the high signatures of Ma2+:Ca2+ and Na+:Ca2+ reveals the occurrence of evaporation. The evaporation enhances the concentration of ions (which occurred originally in the water) in the soils during summer. The very high % MathType!MTEF!2!1!+- % feaaeaart1ev0aaatCvAUfKttLearuavTnhis1MBaeXatLxBI9gBae % bbnrfifHhDYfgasaacH8srps0lbbf9q8WrFfeuY-Hhbbf9v8qqaqFr % 0xc9pk0xbba9q8WqFfea0-yr0RYxir-Jbba9q8aq0-yq-He9q8qqQ8 % frFve9Fve9Ff0dmeaabaqaciGacaGaaeqabaqabeaadaaakeaacqqG % tbWucqqGpbWtdaqhaaWcbaGaeeinaqdabaGaeeOmaiJaeeyla0caaa % aa!2EC5! SO42 - {\rm SO}_{\rm 4}^{{\rm 2 - }} and Cl- contents in some groundwaters and the occurrence of kankar (CaCO3) in the area suggest a long history of evaporation. Greater ionic concentration in the groundwaters of post-monsoon compared with pre-monsoon indicates the increasing addition of leachates into the groundwater from the soils in the monsoon and anthropogenic activities, which leads to a deteriorating quality of groundwater. According to the Gibbs' diagrams, rock weathering, to some extent, and evaporation are the dominant phenomena responsible for the higher ionic concentrations found in groundwater. Measures that benefit sustainable management of groundwater quality are suggested in this study. 相似文献
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Over-exploitation of groundwater results in decline of water levels, leading to intrusion of salt water along the coastal
region, which is a natural phenomenon. A groundwater quality survey has been carried out to assess such phenomena along the
coast of Visakhapatnam, Andhra Pradesh, India. Brackish groundwaters are observed in most of the wells. The rest of the wells
show a fresh water environment. The factors responsible for the brackish groundwater quality with respect to the influence
of seawater are assessed, using the standard ionic ratios, such as Ca2+:Mg2+, TA:TH and Cl−:HCO−
3. Results suggest that the brackish nature in most of the groundwaters is not due to the seawater influence, but is caused
by the hydrogeochemical process. Some influence of seawater on the groundwater quality is observed along the rock fractures.
The combined effect of seawater and urban wastewaters is due to the inferior quality of groundwater in a few wells, where
they are at topographic lows close to the coast. 相似文献
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Groundwater quality in the Niva River basin, Chittoor district, Andhra Pradesh, India 总被引:2,自引:0,他引:2
This study was made to assess the groundwater quality in relation to agricultural and domestic uses in a part of the Peninsular
Archean granite and gneissic complex of India. Water samples were collected from the existing wells in the Niva River basin,
Chittoor district, Andhra Pradesh, India and analysed for major ions. The analytical data, processed and interpreted acoording
to the WHO standards, reveal that, in general, the groundwater is suitable for both agricultural and domestic uses, exept
in a few locations. High concentration of nitrates were observed in some of the wells (both agricultural and domestic) that
are affected by the impact of industrial effluents. Multiple regression analysis was performed and used as a positive predictive
tool in understanding the chemistry of the groundwater.
Received: 2 May 1996 / Accepted: 14 October 1996 相似文献
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Nitrate pollution and its distribution in the groundwater of Srikakulam district, Andhra Pradesh, India 总被引:3,自引:0,他引:3
Nagireddi Srinivasa Rao 《Environmental Geology》2006,51(4):631-645
The complex depositional pattern of clay and sand in most of the areas controlled the vertical and lateral movement of nitrate in groundwater. The variation of nitrate concentration at different groundwater levels and the lateral distribution of nitrate in the groundwater at two sites indicated the filtration of nitrate by clayey formations. A rural agricultural district located in the Vamsadhara river basin, India was selected for studying the lateral and vertical distribution of nitrate in the groundwater and the association of nitrate with other chemical constituents. The nitrate concentrations in the groundwater are observed to vary between below detectable limit and 450 mg NO3/L. The sources for nitrate are mainly point sources (poultry farms, cattleshed and leakages from septic tanks) and non-point sources (nitrogenous fertilisers). The nitrate concentrations are increased after fertiliser applications. However, very high concentrations of nitrate are derived from animal wastes. Relatively better correlations between nitrate and potassium are observed (R = 0.74 to 0.82). The better relationship between these two chemical constituents in the groundwater may be due to the release of potassium and nitrate from both point and non-point sources. The nitrate and potassium concentrations are high in the groundwater from clayey formations. 相似文献
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N. Subba Rao A. Subrahmanyam S. Ravi Kumar N. Srinivasulu G. Babu Rao P. Surya Rao G. Venkatram Reddy 《Environmental Earth Sciences》2012,67(5):1451-1471
Groundwater survey has been carried out in the area of Gummanampadu sub-basin located in Guntur District, Andhra Pradesh, India for assessing the factors that are responsible for changing of groundwater chemistry and consequent deterioration of groundwater quality, where the groundwater is a prime source for drinking and irrigation due to non-availability of surface water in time. The area is underlain by the Archaean Gneissic Complex, over which the Proterozoic Cumbhum rocks occur. The results of the plotting of Ca2+ + Mg2+ versus HCO3 ? + CO3 2?, Ca2+ + Mg2+ versus total cations, Na+ + K+ versus total cations, Cl? + SO4 2? versus Na+ + K+, Na+ versus Cl?, Na+ versus HCO3 ? + CO3 2?, Na+ versus Ca2+ and Na+: Cl? versus EC indicate that the rock–water interaction under alkaline condition is the main mechanism in activating mineral dissociation and dissolution, causing the release of Ca2+, Mg2+, Na+, K+, HCO3 ?, CO3 2?, SO4 2? and F? ions into the groundwater. The ionic relations also suggest that the higher concentrations of Na+ and Cl? ions are the results of ion exchange and evaporation. The influences of anthropogenic sources are the other cause for increasing of Mg2+, Na+, Cl?, SO4 2? and NO3 ? ions. Further, the excess alkaline condition in water accelerates more effective dissolution of F?-bearing minerals. Moreover, the chemical data plotted in the Piper’s, Gibbs’s and Langelier–Ludwig’s diagrams, computed for the chloro-alkaline and saturation indices, and analyzed in the principal component analysis, support the above hypothesis. The groundwater quality is, thus, characterized by Na+ > Ca2+ > Mg2+ > K+: HCO3 ? + CO3 2? > Cl? > SO4 2? > NO3 ? > F? facies. On the other hand, majority of groundwater samples are not suitable for drinking with reference to the concentrations of TDS, TH, Mg2+ and F?, while those are not good for irrigation with respect to USSL’s and Wilcox’s diagrams, residual sodium carbonate, and magnesium hazard, but they are safe for irrigation with respect to permeability index. Thus, the study recommends suitable management measures to improve health conditions as well as to increase agricultural output. 相似文献
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Studies of groundwater chemistry in the Koilsagar project area of Andhra Pradesh indicate that the waters are sodium bicarbonate, sodium chloride, mixed cationic-mixed anionic, mixed cationic Na dominating bicarbonate, and mixed cationic Ca dominating bicarbonate types. Of them, sodium bicarbonate and mixed cationic Mg dominating bicarbonate types of waters are more prevalent.Isocone mapping of specific conductance indicates that the ionic concentration increases from east to west in the area. Graphical treatment of chemical data reveals that, in general, the area has basic water, whereas the left flank canal area is dominated by secondary alkaline water, and Pallamarri and Pedda Rajmur villages have strongly acidic waters. Ion-exchange studies show that cation-anion exchanges exist all over the area except for two places, which have a base exchange hardened type of water.Graphical representation further shows that most of the area has medium salinity-low sodium (C2S1) water useful for irrigation purposes. High salinity-low sodium (C3S1) and high salinity-medium sodium (C3S2) waters are present in some areas, which need adequate drainage to overcome the salinity problem. 相似文献
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Groundwater quality suitable zones identification: application of GIS,Chittoor area,Andhra Pradesh,India 总被引:3,自引:0,他引:3
Srinivasarao Yammani 《Environmental Geology》2007,53(1):201-210
Due to uneven spatial and temporal distribution of rainfall and lack of sufficient water management technologies, the development
activities of the society are totally depending on groundwater resources. In addition to the prevailing drought-prone conditions,
the improperly treated and unplanned release of effluents of industry, municipal and domestic into the nearby streams and
ponds and the majority usage of groundwater for irrigation are increasing the ionic concentration of the groundwater and making
it more saline. The analytical results of the collected groundwater samples show that the groundwater is alkaline, and sodium
and bicarbonate are the dominant cation and anion, respectively. Gibbs variation diagram shows that the control of the chemistry
of groundwater in the study area is the weathering of granitic gneisses and also the leaching of evaporated and crystallized
ions from the topsoil of the irrigated areas and improperly treated industrial effluent ponds. GIS, a potential tool for facilitating
the generation and use of thematic information, has been applied and analyzed for identification of groundwater quality suitable
zones for domestic and irrigation purposes. 30.06% of the area is with suitable, 67.45% of the area is with moderately suitable
and 2.45% of the area is with unsuitable quality of groundwater for domestic purpose. 46% of the area is with suitable, 53.36%
of the area is with moderately suitable and 0.64% of the area is with unsuitable quality of groundwater for irrigation purpose. 相似文献
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Simulation of chloride migration rates in Paleo Pennar Delta Region, Coastal Andhra Pradesh, India 总被引:1,自引:0,他引:1
Quaternary alluvial aquifers in the paleo Pennar delta region of Andhra Pradesh (Long. 80°0′ and 80°12′; Lat. 14°40′ and
14°20′) constitute an important coastal strip, with potential fresh groundwater resources and several well fields in operation.
The lineament patterns and traces of paleo channels provide basic information on the configuration and boundaries of paleo
delta and the possible neotectonic movements in the region. The paleo delta region is essentially characterized by freshwater
aquifer systems at the near-surface depths, (up to 50 m from ground level) with transmissivity values in the system ranging
from 1200 to 2500 m2/day. This groundwater system has been subjected to heavy draft situation over the last two decades, parlicularly near the
outer rim of the delta where an unlined brackish-water canal runs parallel to the coast imparting chloride contamination to
the adjoining fresh aquifers. A two-dimensional solute transport model solution was applied to assess chloride migration rates
inland under different hydraulic stresses, combining finite difference solution of flow equation and the method of characteristic
solution of solute transport equation. Groundwater flow and chloride migration patterns/rates were obtained for different
simulated stress events in the delta system, and measures required to protect the freshwater resources ara outlined.
Received: 2 January 1997 · Accepted: 4 November 1997 相似文献
18.
K. S. N. Reddy D. Deva Varma E. N. Dhanamjaya Rao B. Veeranarayana T. Lakshmi Prasad 《Journal of the Geological Society of India》2012,79(4):411-418
Heavy mineral analysis was carried out for the beach and fore dune sediments along 60 transects of Nizampatnam-Lankavanidibba
coastal area. The heavy mineral assemblage in this area with decreasing abundance of opaques (Ilmenite + magnetite, 47.67%),
pyriboles (20.35%), garnets (3.66%), epidote (3.23%) and with less than 3.0% concentration of sillimanite, zircon, staurolite,
kyanite, apatite, spinel, monazite, biotite, topaz, leucoxene and chlorite. The heavy mineral concentrations are high in the
finer fractions i.e., +120 and +230 (ASTM) than the coarse fraction (+60) of sand. In the seven sectors, heavy mineral assemblage
is same but their concentrations are different. The sectors nearer to the river mouth contain high concentration of high specific
gravity heavy minerals (ilmenite and magnetite) than sectors away from the river mouth. The redistribution of heavy minerals
is controlled by creek dynamics, longshore currents, size and specific gravity of the heavy minerals. 相似文献
19.
Seasonal variation of groundwater quality in a part of Guntur District, Andhra Pradesh, India 总被引:3,自引:0,他引:3
N. Subba Rao 《Environmental Geology》2006,49(3):413-429
The area in Guntur district, Andhra Pradesh, India, is selected to discuss the impact of seasonal variation of groundwater
quality on irrigation and human health, where the agriculture is the main livelihood of rural people and the groundwater is
the main source for irrigation and drinking. Granite gneisses associated with schists and charnockites of the Precambrian
Eastern Ghats underlie the area. Groundwater samples collected seasonally, pre- and post-monsoons, during three years from
forty wells in the area were analyzed for pH, EC, TDS, TA, TH, Ca2+, Mg2+, Na+, K+, CO32−, HCO3−, Cl−, SO42−, NO3−and F−. The chemical relationships in Piper’s diagram, Chebotarev’s genetic classification and Gibbs’s diagram suggest that the
groundwaters mainly belong to non-carbonate alkali type and Cl− group, and are controlled by evaporation-dominance, respectively, due to the influence of semi-arid climate, gentle slope,
sluggish drainage conditions, greater water–rock interaction, and anthropogenic activities. A comparison of the groundwater
quality in relation to drinking water quality standards proves that most of the water samples are not suitable for drinking,
especially in post-monsoon period. US Salinity Laboratory’s and Wilcox’s diagrams, and %Na+ used for evaluating the water quality for irrigation suggest that the majority of the groundwater samples are not good for
irrigation in post-monsoon compared to that in pre-monsoon. These conditions are caused due to leaching of salts from the
overlying materials by infiltrating recharge waters. A management plan is suggested for sustainable development of the area. 相似文献
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The Neoproterozoic Narji Formation of Cuddapah Basin, Southern India is mainly composed of limestones with minor amount of clastic rocks. Limestones are massive as well as laminated and occasionally chert bearing. Geochemistry (major, trace, and REE) of limestones is studied to strengthen the knowledge on depositional environment of Narji Formation in the direction to better figure out the development of Cuddapah Basin during Neoproterozoic era. Average SiO2 (25.97), Al2O3/TiO2 (16.67), and K2O/Al2O3 (0.21) ratios suggest clastic contamination in the Narji limestones. PAAS (Post Archean Australian Shale) normalized REE?+?Y pattern of Narji limestones are showing seawater like REE?+?Y pattern. The Er/Nd and Y/Ho ratios (average 0.17 and 35.68, respectively) of Narji limestones indicate the retention of normal seawater character with the signatures of terrigenous input and diagenesis process. Positive Ce anomaly, high U/Th (>?1.25), and V/(V?+?Ni) (>?0.5) ratios of Narji limestones clearly indicate their deposition in dyoxic to anoxic condition. 相似文献