566
Views
0
CrossRef citations to date
0
Altmetric
Research Paper

Hydrogeochemical analysis of groundwater quality during the pre- monsoon season of Manipur, India

, &
Pages 274-292 | Received 31 Jan 2024, Accepted 04 Apr 2024, Published online: 23 Apr 2024

References

  • Abba, S. I., Pham, Q. C., Usman, A. G., Linh, N. T. T., Aliyu, D. S., Nguyen, Q., & Bach, Q.-V. (2020). Emerging evolutionary algorithm integrated with kernel principal component analysis for modeling the performance of a water treatment plant. Journal of Water Process Engineering, 33, 101081. doi:10.1016/j.jwpe.2019.101081
  • Adimalla, N., & Taloor, A. K. (2020). Hydrogeochemical investigation of groundwater quality in the hard rock terrain of South India using Geographic Information System (GIS) and groundwater quality index (GWQI) techniques. Groundwater for Sustainable Development, 10, 100288. doi:10.1016/j.gsd.2019.100288
  • Anyanwu, E. D., & Emeka, C. S. (2020). Application of water quality index in the drinking water quality assessment of a southeastern Nigeria river. Food Environmental Safety, 18(4), 308–314.
  • Barik, R., & Pattanayak, S. K. (2019). Assessment of groundwater quality for irrigation of green spaces in the Rourkela city of Odisha, India. Groundwater for Sustainable Development, 8, 428–438. doi:10.1016/j.gsd.2019.01.005
  • Berdimbetov, T. T.; Ma, Z.-G.; Liang, C.; Ilyas, S. Impact of climate factors and human activities on water resources in the aral sea basin. Hydrology. 2020;7(2):30. doi:10.3390/hydrology7020030.
  • BIS, I.S.D.W.S. (2012). Bureau of Indian Standards (pp. 2–3). New Delhi.
  • Chadha, D. A proposed new diagram for geochemical classification of natural waters and interpretation of chemical data. Hydrogeology Journal. 1999;7(5):431–439. doi:10.1007/s100400050216.
  • Cotruvo, J. A. (2017). WHO guidelines for drinking water quality: First addendum to the fourth edition. Journal AWWA, 109(7), 44–51. doi:10.5942/jawwa.2017.109.0087
  • Dubey, R., Dutta, D., Umlong, I. M., Gogoi, B. J., & Dwivedi, S. K. (2020). Survey of natural water sources of Tawang region and studies of their physico-chemical and bacterial contamination of water IJSRP. doi:10.29322/IJSRP.10.06.2020.p10262
  • Duraisamy, S., Govindhaswamy, V., Duraisamy, K., Krishina-Raj, S., Balasubramanian, A., & Thirumalaisamy, S. Hydrogeochemical characterization and evaluation of groundwater quality in Kangayam taluk, Tirupur district, Tamil Nadu, India, using GIS techniques. Environmental Geochemistry and Health. 2019;41(2):851–873. doi:10.1007/s10653-018-0183-z.
  • Eliza, K., Khosa, R., Gosain, A. K., Nema, A. K., Mathur, S., & Yadav, B. (2018). Modeling simulation of river discharge of loktak lake catchment in Northeast India. Journal of Hydrologic Engineering, 23(8), 1–13. doi:10.1061/(ASCE)HE.1943-5584.0001674
  • Ewaid, S. H., Abed, S. A., Nadhir Al-Ansari, R. H. S., & Salih, R. (2020). Development and evaluation of a water quality index for the Iraqi Rivers. Hydrology, 7(3), 67. doi:10.3390/hydrology7030067
  • Gibbs, R. (1970). Mechanisms controlling world water chemistry. Science Journal, 170(3962), 1088–1090. doi:10.1126/science.170.3962.1088
  • Groos, O. V., & Pritchard, A. Documentation notes. Journal of Documentation. 1969;25(4):344–349. doi:10.1108/eb026482.
  • Jain, C., Sharma, S., & Singh, S. Physico-chemical characteristics and hydrogeological mechanisms in groundwater with special reference to arsenic contamination in Barpeta District, Assam (India). Environmental Monitoring and Assessment. 2018;190(7):1–16. doi:10.1007/s10661-018-6781-5.
  • Kant, N., Singh, P. K., & Kumar, B. (2018). Hydrogeochemical characterization and groundwater quality of Jamshedpur urban agglomeration in Precambrian terrain, Eastern India. Journal of the Geological Society of India, 92(1), 67–75. doi:10.1007/s12594-018-0954-2
  • Kumari, M., & Rai, S. Hydrogeochemical evaluation of groundwater quality for drinking and irrigation purposes using water quality index in semi arid region of India. Journal of the Geological Society of India. 2020;95(2):159–168. doi:10.1007/s12594-020-1405-4.
  • Kumar, R., Kuamr, R., Atar Singh, R. K. S., Kumari, A., Gupta, A., Gupta, A., & Singh, J. (2019). Distribution of trace metal in Shaune Garang catchment: Evidence from particles and nanoparticles. Materials Today: Proceedings, 15, 586–594. doi:10.1016/j.matpr.2019.04.125
  • Kumar, R., Kuamr, R., Singh, S., Singh, A., Bhardwaj, A., & Chaudhar, H. (2019). Hydro-geochemical characteristics of glacial meltwater from Naradu Glacier catchment, Western Himalaya. Environmental Earth Sciences, 78(24), 1–12. doi:10.1007/s12665-019-8687-0
  • Kumar, P., Mahajan, A. K., & Kumar, A. Groundwater geochemical facie: Implications of rock-water interaction at the Chamba city (HP), northwest Himalaya, India. Environmental Science and Pollution Research International. 2020;27(9):9012–9026. doi:10.1007/s11356-019-07078-7.
  • Kumar, R., & Sharma, R. C. Assessment of the water quality of Glacier-fed lake Neel Tal of Garhwal Himalaya, India. Water Science. 2019;33(1):22–28. doi:10.1080/11104929.2019.1631554.
  • Mridha, D., Priyasarshni, P., Bhaskar, K., Gaurav, A., De, A., Das, A., & Chowdhury, N. R. (2021). Fluoride exposure and its potential health risk assessment in drinking water and staple food in the population from fluoride endemic regions of Bihar, India. Groundwater for Sustainable Development, 13, 100558. doi:10.1016/j.gsd.2021.100558
  • Mukate, S., Wagh, V., Panaskar, D., Jacobs, J. A., & Sawant, A. (2019). Development of new integrated water quality index (IWQI) model to evaluate the drinking suitability of water. Ecology India, 101, 348–354. doi:10.1016/j.ecolind.2019.01.034
  • Mukherjee, I., & Singh, U. K. (2020). Groundwater fluoride contamination, probable release, and containment mechanisms: A review on Indian context. Environmental Geochemistry and Health, 40(6), 2259–2301. doi:10.1007/s10653-018-0096-x
  • Noori, R., Berndtsson, R., Hosseinzadeh, M., Franklin Adamowski, J., & Rabiee Abyaneh, M. (2019). A critical review on the application of the National sanitation foundation water quality index. Environmental Pollution, 244, 575–587. doi:10.1016/j.envpol.2018.10.076
  • Pizzi, S., Caputo, A., Corvino, A., & Venturelli, A. (2020). Management Research and the UN Sustainable Development Goals (SDGs): A Bibliometric Investigation and Systematic Review. Journal of Cleaner Production, 276, 124033. doi:10.1016/j.jclepro.2020.124033
  • Ram, A., Tiwari, S. K., Pandey, H. K., Anhishek Kumar, C., Singh, S., & Simngh, Y. V. (2021). Groundwater quality assessment using water quality index (WQI) under GIS framework. Applied Water Science, 11(2), 46. doi:10.1007/s13201-021-01376-7
  • Ravikumar, P., Somashekar, R., & Prakash, K. (2015). A comparative study on usage of Durov and Piper diagrams to interpret hydrochemical processes in groundwater from SRLIS river basin, Karnataka, India. Elixir Earth Science Journal, 2015(80), 31073–31077.
  • Roemer, R. C., & Borchard, R. (2015). Meaningful Metrics: A 21st Century Librarian’s Guide to Bibliometrics, Altmetrics, and Research Impact (p. 241). Chicago, IL, USA: American Library Association.
  • Sharma, G., Lata, R., Thakur, N., Bajala, V., Chandra Kuniyal, J., & Kumar, K. (2021). Application of multivariate statistical analysis and water quality index for quality characterization of Parbati River, Northwestern Himalaya, India. Discover Water, 1(1), 5. doi:10.1007/s43832-021-00005-3
  • Shil, S., Singh, U. K., & Mehta, P. (2019). Water quality assessment of a tropical river using water quality index (WQI), multivariate statistical techniques, and GIS. Applied Water Science, 9(168), 1–21. doi:10.1007/s13201-019-1045-2
  • Taloor, A. K., Pir, R. A., Adimalla, N., Ali, S., Singh Manhas, D., Sagarika Roy, A. K. S., & Singh, A. K. (2020). Spring water quality and discharge assessment in the Basantar watershed of Jammu Himalaya using geographic information system (GIS) and water quality Index (WQI). Groundw. Groundwater for Sustainable Development, 10, 100364. doi:10.1016/j.gsd.2020.100364
  • Tokatli, C. (2019). Drinking water quality assessment of Ergene River Basin (Turkey) by water quality index: Essential and toxic elements. Sains Malay, 48(10), 2071–2081. doi:10.17576/jsm-2019-4810-02
  • Tripathi, M., & Singal, S. K. (2019). Use of principal component analysis for parameter selection for development of a novel water quality Index: A case study of river Ganga India. Ecology India, 96, 430–436. doi:10.1016/j.ecolind.2018.09.025
  • Uddin, M. G., Nash, S., & Olbert, A. I. (2021). A review of water quality index models and their use for assessing surface water quality. Ecology India, 122, 107218. doi:10.1016/j.ecolind.2020.107218
  • Ustaoğlu, F., Tepe, Y., & Taş, B. (2020). Assessment of stream quality and health risk in a subtropical Turkey river system: A combined approach using statistical analysis and water quality index. Ecology India, 113, 105815. doi:10.1016/j.ecolind.2019.105815
  • Van Eck, N. J., & Waltman, L. (2017). Citation-Based Clustering of Publications Using CitNetExplorer and VOSviewer. Scientometrics, 111(2), 1053–1070. doi:10.1007/s11192-017-2300-7
  • Wazir Alam, K. S. S., Gyanendra, Y., Laishram, R. J., Nesa, N., & Nesa, N. (2020). Hydrogeochemical assessment of groundwater quality for few habitations of Chandel District, Manipur (India). Applied Water Science, 10, 123. doi:10.1007/s13201-020-01208-0
  • Wilcox, L. (1955). Classification and use of irrigation waters. U. S. Department of Agriculture.
  • Wu, Z., Wang, X., Chen, Y., Cai, Y., & Deng, J. (2018). Assessing river water quality using water quality index in Lake Taihu Basin, China. Science of the Total Environment, 612, 914–922. doi:10.1016/j.scitotenv.2017.08.293
  • Zanotti, C., Rotiroti, M., Fumagalli, L., Stefania, G. A., Canonaco, F., Stefenelli, G., Prevot, A.S.H, Leoni, B., & Bonomi, T. (2019). Groundwater and surface water quality characterization through positive matrix factorization combined with GIS approach. Water Research, 159, 122–134. doi:10.1016/j.watres.2019.04.058