Affiliation:
1. Mining University
2. Saint Petersburg Mining University
3. OOO "FRONT Geologiya"
Abstract
Oil pollution significantly affects the ecosystem of underground space. The penetration of hydrocarbons into aquifers threatens to spread pollution over large areas from the source. Pollutants cause damage to natural environments and lead to damage and destruction of ecosystems. To solve environmental problems in the search for hydrocarbon pollution, geophysics is often used. In contaminated sites, knowledge of the geological structure and hydrogeological conditions, as well as the qualitative and quantitative characteristics of pollution, is essential for risk assessment and site remediation planning. Despite the fact that many geophysical methods have proven their effectiveness in solving geoecological problems, pollution of the underground environment is complex. This is primarily due to the fact that the distribution of the pollutant has an impact on both the geological and mechanical components of soils, and the biological and chemical ones. The article discusses the influence of various factors on the formation of anomalies detected by methods of shallow geophysics in the process of studying the pollution of the geological environment with oil products. The main purpose of such work is the detection, contouring and determination of the migration routes of light oil products. The paper describes several generalized models of the distribution of hydrocarbon pollution, each of which can be used to solve the set tasks, as well as be a useful tool for predicting the distribution of oil products and modeling geophysical responses from a multifactorial environment. Among the factors influencing the results of geophysical studies, a special position is occupied by biodegradation processes, as a result of which significant changes in the physical properties of the medium occur.
Publisher
Geophysical Center of the Russian Academy of Sciences
Subject
General Earth and Planetary Sciences
Reference50 articles.
1. Алексеев И. В., Дашко Р. Э. К вопросу о роли биокоррозионных процессов в подземной среде мегаполисов // Инженерная геология. — 2016. — № 1. — С. 22—29., Alekseev I. V., Dashko R. E. K voprosu o roli biokorrozionnyh processov v podzemnoy srede megapolisov // Inzhenernaya geologiya. — 2016. — № 1. — S. 22—29.
2. Глазунов В. В., Агеев А. С., Горелик Г. Д. и др. Результаты комплексных геофизических исследований по поиску склепов на территории загородного некрополя Херсонеса Таврического в Карантинной балке // Записки Горного института. — 2021. — Т. 247. — С. 1—9. — DOI: 10.31897/PMI.2021.1.2., Glazunov V. V., Ageev A. S., Gorelik G. D. i dr. Rezul'taty kompleksnyh geofizicheskih issledovaniy po poisku sklepov na territorii zagorodnogo nekropolya Hersonesa Tavricheskogo v Karantinnoy balke // Zapiski Gornogo instituta. — 2021. — T. 247. — S. 1—9. — DOI: 10.31897/PMI.2021.1.2.
3. Григорьев Г. С., Салищев М. В., Сенчина Н. П. О применимости способа электромагнитного мониторинга гидроразрыва пласта // Записки Горного института. — 2021. — Т. 250. — С. 492—500. — DOI: 10.31897/PMI.2021.4.2., Grigor'ev G. S., Salischev M. V., Senchina N. P. O primenimosti sposoba elektromagnitnogo monitoringa gidrorazryva plasta // Zapiski Gornogo instituta. — 2021. — T. 250. — S. 492—500. — DOI: 10.31897/PMI.2021.4.2.
4. Гупало В. С. Приоритетные параметры физических процессов в массиве пород при определении безопасности захоронения радиоактивных отходов // Записки Горного института. — 2020. — Т. 241. — С. 118. — DOI: 10.31897/pmi.2020.1.118., Gupalo V. S. Prioritetnye parametry fizicheskih processov v massive porod pri opredelenii bezopasnosti zahoroneniya radioaktivnyh othodov // Zapiski Gornogo instituta. — 2020. — T. 241. — S. 118. — DOI: 10.31897/pmi.2020.1.118.
5. Максимович Н. Г., Хайрулина Е. А. Геохимические барьеры и охрана окружающей среды: учебное пособие. — Пермь : Перм. гос. у-т., 2011. — С. 248., Maksimovich N. G., Hayrulina E. A. Geohimicheskie bar'ery i ohrana okruzhayuschey sredy: uchebnoe posobie. — Perm' : Perm. gos. u-t., 2011. — S. 248.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献