Case Studies
Dec 28, 2019

Impact Assessment of Leachate Pollution Potential on Groundwater: An Indexing Method

Publication: Journal of Environmental Engineering
Volume 146, Issue 3

Abstract

The present study quantifies the pollution potential of the leachate and its effects on surrounding groundwater in the vicinity of four nonengineered dump sites in the study regions of Solan, Mandi, Sundernagar, and Baddi in Himachal Pradesh in India. The analysis primarily focused on the determination of leachate characteristics for determination of the leachate pollution index (LPI), groundwater characterization at different downstream distances using the water quality index (WQI), and heavy metal pollution index (HPI) to study the effects of leachate pollution on groundwater. Characterization of leachate samples revealed that most of the physicochemical parameters and heavy metals were in excess of the permissible limits for the study regions of Himachal Pradesh. The water quality improved with an increase in downstream distance from the dumpsite per the indexing method. Principal component analysis (PCA) was carried out to determine the components arising from natural and anthropogenic components while hierarchical cluster analysis (HCA) was used to determine and identify the regions of low, moderate, and high pollution zones in the groundwater.

Get full access to this article

View all available purchase options and get full access to this article.

Data Availability Statement

All data, models, and code generated or used during the study appear in the published article.

References

Agbozu, I. E., O. E. Oghama, and O. Odhikorij. 2015. “Physico-chemical characterization and pollution index determination of Leachate from Warri waste dumpsite, Southern Nigeria.” J. Appl. Sci. Environ. Manage. 19 (3): 361–372. https://doi.org/10.4314/jasem.v19i.4.
Ali, S. M., P. Pervaiz, B. Afzal, N. Hamid, and A. Yasmin. 2014. “Open dumping of municipal solid waste and its hazardous impacts on soil and vegetation diversity at waste dumping sites of Islamabad city.” J. King Saud Uni.-Sci. 26 (1): 5965. https://doi.org/10.1016/j.jksus.2013.08.003.
APHA (American Public Health Association). 2012. Standard methods for the examination of water and waste water. 22nd ed. Washington, DC: APHA.
Ashwani, K. T., and K. S. Abhay. 2014. “Hydro geochemical investigation and groundwater quality assessment of Pratapgarh District, Uttar Pradesh.” J. Geol. Soc. India 83 (3): 329–343. https://doi.org/10.1007/s12594-014-0045-y.
Asuma, O. O., and K. E. Aweto. 2013. “Leachate characterization and assessment of groundwater and surface water qualities near municipal solid waste dumpsite in Effurun, Delta State, Nigeria.” J. Environ. Earth Sci. 3 (9): 126–135.
Aziz, S. Q., M. J. Bashir, H. A. Azir, A. Mojiri, S. A. Ama, and Y. Mawlood. 2018. “Statistical analysis of municipal solid waste landfill leachate characteristics in different countries.” J. Pure Appl. Sci. 30 (6): 85–96. https://doi.org/10.21271/ZJPAS.30.6.8.
Badmus, B. S., V. C. Ozebo, O. A. Idowu, S. A. Ganiyu, and O. T. Olurin. 2015. “Seasonal variations of physico chemical properties and quality index of groundwater of hand dug wells around Ajakanga dumpsite in Southwestern Nigeria.” Res. J. Phys. 9 (1): 1–10. https://doi.org/10.3923/rjp.2015.1.10.
Bhalla, B., M. S. Saini, and M. K. Jha. 2014a. “Assessment of municipal solid waste landfill leachate treatment efficiency by leachate pollution index.” Int. J. Innovative Res. Sci., Eng. Technol. 3 (1): 8447–8454.
Bhalla, B., M. S. Saini, and M. K. Jha. 2014b. “Leachate contamination potential of unlined municipal solid waste landfill sites by leachate pollution index.” Int. J. Sci. Environ. Technol. 3 (2): 444–457.
Bhuiyan, M. A. H., M. Bodrud-Doza, A. R. M. T. Islam, M. A. Rakib, M. S. Rahman, and A. L. Ramanathan. 2016. “Assessment of groundwater quality of Lakshimpur district of Bangladesh using water quality indices, geostatistical methods and multivariate analysis.” Environ. Earth Sci. 75: 1020. https://doi.org/10.1007/s12665-016-5823-y.
BIS (Bureau of Indian Standards). 2012. Drinking water-specification. BIS 10500. New Delhi, India: Government of India.
Boateng, T. K., F. Opaku, and O. Akoto. 2019. “Heavy metal contamination assessment of groundwater quality: A case study of Oti landfill site, Kumosi.” J. Appl. Water Sci. 9 (2): 33. https://doi.org/10.1007/s13201-019-0915-y.
Brennan, R. B., M. G. Healy, L. Morrison, S. Hynes, and D. Nortan. 2016. “Management of landfill leachate: The legacy of European Union Directives.” J. Waste Manage. 55 (Sep): 355–363. https://doi.org/10.1016/j.wasman.2015.10.010.
Buerge, I. J., M. Keller, H. R. Buser, M. D. Muller, and T. Poiger. 2011. “Saccharin and other artificial sweeteners in soils: Estimated inputs from agriculture and households, degradation, and leaching to groundwater.” Environ. Sci. Technol. 45 (2): 615–621. https://doi.org/10.1021/es1031272.
Chidanand, P., N. Shreekant, and V. Arjun. 2013. “Assessment of groundwater quality around solid waste landfill area: A case study.” Int. J. Innovative Res. Sci., Eng. Technol. 2 (7): 3131–3136.
Chonattu, J., K. Prabhakar, and H. P. S. Pillai. 2016. “Geospatial and statistical assessment of groundwater contamination due to landfill leachate: A case study.” J. Water Res. Prot. 8 (2): 121–134. https://doi.org/10.4236/jwarp.2016.82010.
De, S., S. K. Maiti, T. Hazra, A. Debsarkar, and A. Dutta. 2016. “Leachate characterization and identification of dominant pollutants using leachate pollution index for an uncontrolled landfill site.” Global J. Environ. Sci. Manage. 2 (2): 177–186. https://doi.org/10.7508/GJESM.2016.02.008.
Dehghanifard, E., and M. H. Dehghani. 2018. “Evaluation and analysis of municipal solid waste in Tehran, Iran.” Methods X 5: 312–321. https://doi.org/10.1016/j.mex.2018.04.003.
Dharmarathne, N., and J. Gunatilake. 2013. “Leachate characterization and surface groundwater pollution at municipal solid waste landfill of Gohagoda, Sri Lanka.” Int. J. Sci. Res. Publ. 3 (11): 1–7.
El-Salam, M. M. A., and G. I. Abu-Zuid. 2015. “Impact of landfill leachate on the groundwater quality: A case study in Egypt.” J. Ad Res. 6 (4): 579–586. https://doi.org/10.1016/j.jare.2014.02.003.
Gibrilla, A., E. K. P. Bam, and G. Ayanu. 2011. “Application of water quality index (WQI) and multivariate analysis for groundwater quality assessment of the Birimian and cape coast Granitoid complex: Densu River Basin of Ghana.” Water Qual. Exposure Health 3 (2): 63–78. https://doi.org/10.1007/s12403-011-0044-9.
Godwin, A., and E. Oghenkohwiroro. 2016. “Leachate characterization and leachate pollution index from landfill dumpsites in Warri Metropolis, Nigeria.” Int. J. Nat. Sci. 52 (Aug): 41–48. https://doi.org/10.18052/www.Scipress.com.1LNS.57.41.
Guo, X., R. Zuo, L. Meng, J. Wang, Y. Teng, X. Liu, and M. Chen. 2018. “Seasonal and spatial variability of anthropogenic and natural factors influencing groundwater quality based on source apportionment.” Int. J. Environ. Res. Public Health 15: 279. https://doi.org/10.3390/ijerph15020279.
Gupta, N., K. K. Yadav, and V. Kumar. 2015. “A review on current status of municipal solid waste management in India.” J. Environ. Sci. 37 (1): 206–217. https://doi.org/10.1016/j.jes.2015.01.034.
Hossain, M. L., S. R. Das, and M. K. Hussain. 2014. “Impact of landfill leachate on surface and groundwater quality.” J. Environ. Sci. Technol. 7 (6): 337–346. https://doi.org/10.3923/jest.2014.337.346.
Ikem, A., O. Osibanjo, M. K. C. Sridhar, and A. Sobande. 2002. “Evaluation of groundwater quality characterization near two waste sites in Ibadan and Lagos, Nigeria.” Water Air Soil Pollut. 140 (1): 307–333. https://doi.org/10.1023/A:1020165403531.
Ilaboya, I. R., E. O. Oti, G. O. Ekoh, L. O. Umukoro, and B. O. Enamuotor. 2014. “Assessment of water quality index of some selected boreholes around dump sites in Nigeria.” Int. J. Environ. Monit. Prot. 1 (2): 47–55.
Jolliffe, I. T., and J. Cadima. 2016. “Principal component analysis: A review and recent developments.” Philos. Trans. R. Soc. A: Math. Phys. Eng. Sci. 374 (2065): 20150202. https://doi.org/10.1098/rsta.2015.0202.
Kanmani, S., and R. Gandhimathi. 2013. “Assessment of heavy metal contamination in soil due to leachate migration from an open dumping site.” Appl. Water Sci. 3 (1): 193–205. https://doi.org/10.1007/s13201-012-0072-z.
Kawai, K., and T. Tasaki. 2016. “Revisiting estimates of municipal solid waste generation per capita and their reliability.” J. Mater. Cycles Waste Manage. 18 (1): 1–13. https://doi.org/10.1007/s10163-015-0355-1.
Kolekar, K., T. Hazra, and S. N. Chakrabarty. 2016. “A review on prediction of municipal solid waste generation models.” Procedia Environ. Sci. 35: 238–244. https://doi.org/10.1016/j.proenv.2016.07.087.
Krcmar, D., S. Tenodi, N. Grba, D. Kerkez, M. Watson, S. Rancevic, and B. Dalmacijia. 2018. “Preremedial assessment of the municipal landfill pollution impact on soil and shallow groundwater in Subotica, Serbin.” Sci. Total Environ. 615 (Sep): 1314–1354. https://doi.org/10.1016/J.Scitotenv.2017.09.283.
Kumar, P., and R. K. Kaushal. 2015. “Avenues of collection and disposal of municipal solid wastes management in India: A review.” Int. J. Eng. Sci. Invention Res. Develop. 1 (9): 458–466.
Loganathan, K., and A. J. Ahamed. 2017. “Multivariate statistical techniques for the evaluation of groundwater quality of Amaravati River Basin, South India.” J. Appl. Water Sci. 7 (8): 4633–4649. https://doi.org/10.1007/s13201-017-0627-0.
Lydie, S. A. Y., D. T. O. Temitope, Y. C. S. Corentin, and C. D. D. Evarsiste. 2013. “Urban cities and waste generation in developing countries: A GIS evaluation of two cities in Burbina Faso.” J. Urban Environ. Eng. 7 (2): 280–285. https://doi.org/10.4090/juee.2013.v7n2.280285.
Manikandan, S., S. Chidambaam, A. L. Ramanathan, and M. V. Prasanna. 2014. “A study on the high fluoride concentration in the magnesium-rich waters of hard rock aquifer in Krishanagiri district, Tamil Nadu, India.” Arabian J. Geosci. 7 (1): 273–285. https://doi.org/10.1007/s12517-012-0752-x.
Milivojevic, J., D. Kerstic, B. Smit, and V. Djekic. 2016. “Assessment of heavy metal contamination and calculation of its pollution index for Ugljesnica River, Serbia.” Bull. Environ. Contom. Toxicol. 97 (5): 737–742. https://doi.org/10.1007/s00128-016-1918-0.
Mor, S., K. Ravindra, R. P. Dahiya, and A. Chandra. 2006. “Leachate characterization and assessment of groundwater pollution near municipal solid waste landfill site.” Environ. Monit. Assess. 118 (1–3): 435–456. https://doi.org/10.1007/s10661-006-1505-7.
Nagarajan, R., S. Thirumalaisamy, and E. Lakshumanan. 2012. “Impact of leachate on groundwater pollution due to non-engineered municipal solid waste landfill sites of erode city, Tamil Nadu, India. Iran.” J. Environ. Health Sci. Eng. 9 (1): 35. https://doi.org/10.1186/1735-2746-9-35.
Naminata, S., K. E. K. Koffi, K. A. Marcel, and Y. K. Marcellin. 2018. “Assessment and impact of leachate generated by the landfill city in Abidjan on the quality of groundwater and surface water.” J. Water Res. Prot. 10 (1): 145–165. https://doi.org/10.4236/jwarp.2018.101009.
Osei, J., F. K. Nyame, T. K. Armah, S. K. Osae, S. B. Dampare, J. R. Fianko, D. Adomako, and N. Bentil. 2010. “Application of multivariate analysis for identification of pollution sources in the Densu delta wetland in the vicinity of a landfill site in Ghana.” J. Water Resour. Prot. 2 (12): 1020–1029. https://doi.org/10.4236/jwarp.2010.212122.
Przydatak, G., and W. Kanownik. 2019. “Impact of small municipal solid waste landfill on groundwater quality.” Environ. Monit. Assess. 191 (3): 169. https://doi.org/10.1007/s10661-019-7279-5.
Rana, R., R. Ganguly, and A. K. Gupta. 2015. “An assessment of solid waste management system in Chandigarh City, India.” Electron. J. Geotech. Eng. 20 (6): 1547–1572.
Rana, R., R. Ganguly, and A. K. Gupta. 2017. “Evaluation of solid waste management in satellite towns of Mohali and Panchkula.” J. Solid Waste Technol. Manage. 43 (4): 280–294. https://doi.org/10.5276/JSWTM.2017.280.
Rana, R., R. Ganguly, and A. K. Gupta. 2018a. “Indexing method for assessment of pollution potential of leachate from non-engineered landfill sites and its effect on groundwater quality.” Environ. Monit. Assess. 190 (1): 1–23. https://doi.org/10.1007/s10661-017-6417-1.
Rana, R., R. Ganguly, and A. K. Gupta. 2018b. “Physico-chemical characterization of municipal solid waste from Tricity region of Northern India: A case study.” J. Mater. Cycles Waste Manage. 20 (1): 678–689. https://doi.org/10.1007/s10163-017-0615-3.
Ranjan, R. K., A. L. Ramanathan, P. Parthasarthy, and A. Kumar. 2013. “Hydro chemical characteristics of groundwater in the plains of Phaglu River in Gaya, Bihar, India.” Arabian J. Geosci. 6 (9): 3257–3267. https://doi.org/10.1007/s12517-012-0599-1.
Rathod, M., H. Mishra, and S. Karmakar. 2013. “Leachate characterization and assessment of water pollution near municipal solid waste landfill site.” Int. J. Chem. Phys. Sci. 2: 186–189.
Sayadi, M. H., and O. R. Ghaleno. 2016. “Study of water quality using the NSFWQI in the year 2014 case study: Chahnimeh reservoir of Sistan.” Int. J. Chem. Stud. 4 (3): 35–37.
Sharma, A., R. Ganguly, and A. K. Gupta. 2018. “Matrix method for evaluation of existing solid waste management system in Himachal Pradesh, India.” J. Mater. Cycle Waste Manage. 20 (3): 1813–1831. https://doi.org/10.1007/s10163-018-0703-z.
Sharma, A., M. K. Kaushik, A. Kumar, and A. Bansal. 2016. “Assessment of ground water quality and feasibility of tire derived aggregates for use as a leachate drainage material.” Electron. J. Geotech. Eng. 21 (9): 3113–3136.
Sharma, D., and R. Ganguly. 2016. “Parametric analysis of leachate and water resources around municipal solid waste landfill area in Solan.” In Vol. 57 of Proc., MATEC Web of Conf., 4th Int. Conf. on Advancements in Engineering & Technology (ICAET-2016). Les Ulis Cedex, France: EDP Sciences.
Singh, S., N. J. Raju, W. Gossel, and P. Wycisk. 2016. “Assessment of pollution potential of leachate from the municipal solid waste disposal site and its impact on groundwater quality, Varanasi environs, India.” Arabian J. Geosci. 9 (2): 131. https://doi.org/10.1007/s12517-015-2131-x.
Spoelstra, J., N. D. Senger, and S. L. Schiff. 2017. “Artificial sweeteners reveal septic system effluent in rural groundwater.” J. Environ. Qual. 46 (6): 1434–1443. https://doi.org/10.2134/jeq2017.06.0233.
Srigirisetty, S., T. Jayasri, and C. Netaji. 2017. “Open dumping of municipal solid waste-impact on groundwater and soil.” Int. J. Curr. Eng. Sci. Res. 4 (6): 26–33.
Subramani, T., C. Karthikeyan, and S. Priyanka. 2017. “Impact of solid waste in open dumping and its effects on groundwater and soil.” Int. J. Appl. Innovation Eng. Manage. 6 (5): 251–261.
Swamee, T., S. Sharma, P. Singh, and R. Dobhal. 2013. “Water quality assessment in terms of water quality index.” Am. J. Water Res. 1 (3): 34–38. https://doi.org/10.12691/ajwr-1-3-3.
Talalaj, I. A. 2014. “Assessment of groundwater quality near the landfill site using the modified water quality index.” Environ. Monit. Assess. 186 (6): 3673–3683. https://doi.org/10.1007/s10661-014-3649-1.
Talalaj, I. A., and P. Biedka. 2016. “Use of the landfill water pollution index (LWPI) for groundwater quality assessment near the landfill sites.” Environ. Sci. Pollut. Res. 23 (24): 24601–24613. https://doi.org/10.1007/s11356-016-7622-0.
Tiri, A., N. Lahbari, and A. Boudokha. 2017. “Assessment of the quality of water by hierarchical cluster and variance analysis of the Koudia Medouar Watershed, East Algeria.” J. Appl. Water Sci. 7 (8): 4197–4206. https://doi.org/10.1007/s13201-014-0261-z.
Tirkey, P., T. Bhattacharya, and C. Sukalyan. 2013. “Water quality indices: Important tool for water quality assessment: A review.” Int. J. Adv. Chem. 1 (1): 15–28.
Unnisa, S. A., and S. Z. Bi. 2017. “Groundwater quality characterization around Jawaharnagar opens dumpsite, Telangana State.” J. Appl. Water Sci. 7 (7): 3911–3918. https://doi.org/10.1007/s13201-017-0544-2.
Vathsalan, A. B., K. S. Indu, and E. V. Ramasany. 2017. “Leachate pollution index: An effective tool in determining the phytotoxicity of municipal solid waste leachate.” J. Waste Manage. 68 (Oct): 329–336. https://doi.org/10.1016/j.wasman.2017.07.012.
Wagh, V. M., D. B. Panaskar, A. M. Varade, S. V. Mukate, S. K. Gaikwad, R. S. Pawar, A. A. Muley, and M. L. Aamalawar. 2016. “Major ion chemistry and quality assessment of the groundwater resources of Nanded tehsil, a part of southeast Deccan Volcanic Province, Maharashtra, India.” Environ. Earth Sci. 75 (21): 1418. https://doi.org/10.1007/s12665-016-6212-2.
WHO (World Health Organization). 2004. Vol. 1 of Guidelines for drinking water quality: Third edition: Recommendation, Geneva, 515. Geneva: WHO.
WHO (World Health Organization). 2008. Guidelines for drinking-water quality: Third edition incorporating the first and second addition volume 1 recommendations. Geneva: WHO.
Yim, O., and K. T. Ramdeen. 2015. “Hierarchical cluster analysis: Comparison of three linkage measures and application to psychological data.” J. Quant. Methods Psychol. 11 (1): 8–21. https://doi.org/10.20982/tqmp.11.1.p008.
Zahoori, M., and A. Ghani. 2017. “Municipal solid waste management challenges and problems for cities in low income and developing countries.” Int. J. Sci. Eng. Appl. 6 (2): 39–48. https://doi.org/10.7753/IJSEA0602.1002.
Zakhem, B. A., and R. Hafez. 2015. “Heavy metal pollution index for groundwater quality assessment in Damascus Oasis, Syria.” J. Environ. Earth Sci. 73 (10): 6591–6600. https://doi.org/10.1007/s12665-014-3882-5.
Zhan, T. L. T., C. Guan, H. J. Xie, and Y. M. Chem. 2014. “Vertical migration of leachate pollutants in clayey soil beneath an uncontrolled landfill at Huainan, China: A field and theoretical investigation.” Sci. Total Environ. 470–471 (Feb): 290–298. https://doi.org/10.1016/j.scitotenv.2013.09.081.

Information & Authors

Information

Published In

Go to Journal of Environmental Engineering
Journal of Environmental Engineering
Volume 146Issue 3March 2020

History

Received: Mar 14, 2019
Accepted: Jul 12, 2019
Published online: Dec 28, 2019
Published in print: Mar 1, 2020
Discussion open until: May 28, 2020

Permissions

Request permissions for this article.

Authors

Affiliations

Anchal Sharma [email protected]
Ph.D. Research Scholar, Dept. of Civil Engineering, Jaypee Univ. of Information Technology, Waknaghat, District Solan, Himachal Pradesh 173234, India. Email: [email protected]
Associate Professor, Dept. of Civil Engineering, Jaypee Univ. of Information Technology, Waknaghat, District Solan, Himachal Pradesh 173234, India (corresponding author). ORCID: https://orcid.org/0000-0001-5356-1635. Email: [email protected]
Ashok Kumar Gupta, Ph.D. [email protected]
Professor and Head of Department, Dept. of Civil Engineering, Jaypee Univ. of Information Technology, Waknaghat, District Solan, Himachal Pradesh 173234, India. Email: [email protected]

Metrics & Citations

Metrics

Citations

Download citation

If you have the appropriate software installed, you can download article citation data to the citation manager of your choice. Simply select your manager software from the list below and click Download.

Cited by

View Options

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Article
$35.00
Add to cart

Get Access

Access content

Please select your options to get access

Log in/Register Log in via your institution (Shibboleth)
ASCE Members: Please log in to see member pricing

Purchase

Save for later Information on ASCE Library Cards
ASCE Library Cards let you download journal articles, proceedings papers, and available book chapters across the entire ASCE Library platform. ASCE Library Cards remain active for 24 months or until all downloads are used. Note: This content will be debited as one download at time of checkout.

Terms of Use: ASCE Library Cards are for individual, personal use only. Reselling, republishing, or forwarding the materials to libraries or reading rooms is prohibited.
ASCE Library Card (5 downloads)
$105.00
Add to cart
ASCE Library Card (20 downloads)
$280.00
Add to cart
Buy Single Article
$35.00
Add to cart

Media

Figures

Other

Tables

Share

Share

Copy the content Link

Share with email

Email a colleague

Share