- PII
- 10.31857/S0869780924020066-1
- DOI
- 10.31857/S0869780924020066
- Publication type
- Article
- Status
- Published
- Authors
- Volume/ Edition
- Volume / Issue number 2
- Pages
- 66-75
- Abstract
- To predict the migration of pollutants in groundwater from the landfill site, it is necessary to know the infiltration rate and the concentration of pollutants in the moisture entering the groundwater level below the landfill. It is shown that the HELP program for calculating moisture transport in the unsaturated zone can be used to estimate the infiltration rate by the example of the municipal solid waste in Dubna, To estimate chloride ion concentration in the leachate entering the groundwater level, the VS2DT program for calculating the transport of pollutants with moisture in the unsaturated zone can be used. It is shown how uncertainty and insufficiency of information about the landfill site affects the estimation of these parameters, in what cases it is possible to use information about a similar dump, how test calculations help to verify hypotheses of formation of groundwater pollution under the landfill. The ranges of infiltration rate and chloride ion concentrations in moisture entering the groundwater level under the landfill body obtained as a result of calculations of the water and mass balance of the landfill in Dubna were further used to calculate the chloride ion transport in groundwater.
- Keywords
- подземные воды свалочное тело фильтрат загрязнение влагоперенос миграция инфильтрация концентрация численные расчеты хлорид-ион
- Date of publication
- 19.09.2025
- Year of publication
- 2025
- Number of purchasers
- 0
- Views
- 8
References
- 1. Гриневский С.О. Моделирование поглощения влаги корнями растений при расчетах влагопереноса в зоне аэрации и инфильтрационного питания подземных вод // Вестник Московского университета. Серия 4: Геология. 2011. № 3. С. 41–52. https://doi.org/10.3103/S0145875211030057
- 2. Гриневский С.О., Новоселова М.В. Закономерности формирования инфильтрационного питания подземных вод // Водные ресурсы. 2010. Т. 37. С. 1–12.
- 3. Слюсарь Н.Н., Вайсман Я.И., Коротаев В.Н. Оценка долгосрочных эмиссий объектов захоронения твердых коммунальных отходов: результаты полевых исследований и лабораторного моделирования // Экология и промышленность России. 2016. Т. 20. № 4. С. 32–39.
- 4. Alslaibi T., Mogheir Y., Afifi S. Analysis of landfill components in estimating the percolated leachate to groundwater using the HELP model // Water Science and Technology. 2010. V. 62. № 8. P. 1727–1734.
- 5. Al-Suraifi A. Simulation of contaminants transport and groundwater flow for Basrah landfill site. // Engineering and technology journal. 2017. V. 35. № 6. P. 560–570.
- 6. Beck-Broichsitter S., Gerke H., Horn R. Assessment of Leachate Production from a Municipal Solid-Waste Landfill through Water-Balance Modeling // Geosciences, 2018. V. 8. № 10: 372.
- 7. Cossu R., Stegmann R. Solid Waste Landfilling: Concepts, Processes, Technology. 2019. 1174 р. https://doi.org/10.1016/C2012-0-02435-0
- 8. Fatta D.A study on the landfill leachate and its impact on the groundwater quality of the greater area // Environmental Geochemistry and Health. 1999. V. 21. P. 175–190.
- 9. Healy R.W. Simulation of solute transport in variably saturated porous media with supplemental information on modifications to the US Geological Survey’s computer program VS2D // Water-Resources Investigations Report. 1990. 90:4025.
- 10. Podlasek A. Modeling leachate generation: practical scenarios for municipal solid waste landfills in Poland // Environmental Science and Pollution Research International. 2023. V. 30. № (5). P. 13256–13269.
- 11. Schroeder, R., Dozier, T.S., Zappi, P.A. The hydrologic evaluation of landfill performance (HELP) model: Engineering Documentation for Version 3, 1994, EPA/600/9-94/xxx, US Environmental Protection Agency Risk Reduction Engineering Laboratory, Cincinnati, OH, USA. Document Display | NEPIS | US EPA
- 12. Yang R., Xu Z., Chai1 J. A review of characteristics of landfilled municipal solid waste in several countries: physical composition, unit weight, and permeability coefficient // Polish Journal of Environmental Studies. 2018. V. 27. № 6. P. 2425–2435.
- 13. Zeng D., Chen G., Zhou P., Xu H. Factors influencing groundwater contamination near municipal solid waste landfill sites in the Qinghai-Tibetan plateau // Ecotoxicology and Environmental Safety. 2021. V. 211. 111913. https://doi.org/10.1016/j.ecoenv.2021.111913