Prediction of the formation of low-molecular components, particles, and condensed phases during thermal destruction of oil-contaminated soil

In this study, thermodynamic modelling of the process of thermal destruction of oil-contaminated soil of Ozenmunaigas JSC, which includes compounds such as carbon, silicon, aluminum, iron, calcium, magnesium, sodium, potassium, chromium, phosphorus, manganese, copper, titanium, molybdenum, nickel, vanadium, and water, was carried out. The physicochemical and thermodynamic parameters of the complex system were calculated at P0.1 MPa, T598-3000 K. The concentration distribution of components, particles, and condensed phases in the gas phase has been established. In the process of thermal destruction of oil-contaminated soil, the formation of condensed phases was as follows: SiO2(c), Al2O3(c), AlO3H3(c), Cu(c), Cu2O(c), FeO(c), Fe2O3(c), Fe3O4(c), Fe2SiO4(c), NiO(c), MnO(c), Mn3O4(c), MnO2H2(c), Cr2O3(c), MoO2(c), V2O3(c), V2O4(c), TiO2(c), MgSiO3(c), Mg2SiO4(c), MgTi2O5(c), Ca3P2O8(c), Mg2SiO4(c), MgTi2O5(c), Ca3P2O8(c), CaCO3(c), CaSiO3(c), CaTiO3(c), Na2Si2O5(c), K2Si4O9(c). At the same time, the amount of condensed calcium silicate CaSiO3(c) was significant and amounted to 3.2 mol/kg, which is due to the initial standard content of oxides of the type (g/kg): SiO2-473,7, CaO-181,5 in oil-contaminated soil. The formation of various types of condensed phases (from 10-30 to 10-4 mol/kg) during thermal degradation can help reduce the synergism and toxicity of metal particles in oil-contaminated soils. In the process of thermal destruction of oil-contaminated soil, its carbon-containing components (mg/kg: С12-6,27; С13-10,98; С14-15,69; С15-18,82; С16-23,52; С17-31,37; С18-27,80; С19-17,25; С20-29,80) were mainly converted into oxide, carbon dioxide, and water, and thereby neutralized the organic mass of the soil.

Keyword: oil; soil; carbon; metal; chemical composition; component; particle; thermodynamics; modeling; condensed phase; neutralization

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Publication Name
(dc.title)
Prediction of the formation of low-molecular components, particles, and condensed phases during thermal destruction of oil-contaminated soil
Author/s
(dc.contributor.yazarlar)
Umirzak DZHUSİPBEKOV, Dametken FİSCHER, Gulzipa NURGALİEVA, Kubat KEMELOV, Damira SAMBAEVA, Zarlık MAYMEKOV
Publication type
(dc.type)
Makale
Language
(dc.language)
İngilizce
Publication year
(dc.date.issued)
2023
National/International
(dc.identifier.ulusaluluslararasi)
Ulusal
Source
(dc.relation.journal)
MANAS Journal of Engineering (MJEN)
Number
(dc.identifier.issue)
1
Volume/Issue
(dc.identifier.volume)
11
Page
(dc.identifier.startpage)
53-63
ISSN/ISBN
(dc.identifier.issn)
Online ISSN: 1694-7398
Publisher
(dc.publisher)
Kyrgyz - Turkish Manas University
Databases
(dc.contributor.veritaban)
Ulakbim (DergiPark)
Databases
(dc.contributor.veritaban)
EBSCOHost
Index Type
(dc.identifier.index)
Alan Indeks
Abstract
(dc.description.abstract)
In this study, thermodynamic modelling of the process of thermal destruction of oil-contaminated soil of Ozenmunaigas JSC, which includes compounds such as carbon, silicon, aluminum, iron, calcium, magnesium, sodium, potassium, chromium, phosphorus, manganese, copper, titanium, molybdenum, nickel, vanadium, and water, was carried out. The physicochemical and thermodynamic parameters of the complex system were calculated at P0.1 MPa, T598-3000 K. The concentration distribution of components, particles, and condensed phases in the gas phase has been established. In the process of thermal destruction of oil-contaminated soil, the formation of condensed phases was as follows: SiO2(c), Al2O3(c), AlO3H3(c), Cu(c), Cu2O(c), FeO(c), Fe2O3(c), Fe3O4(c), Fe2SiO4(c), NiO(c), MnO(c), Mn3O4(c), MnO2H2(c), Cr2O3(c), MoO2(c), V2O3(c), V2O4(c), TiO2(c), MgSiO3(c), Mg2SiO4(c), MgTi2O5(c), Ca3P2O8(c), Mg2SiO4(c), MgTi2O5(c), Ca3P2O8(c), CaCO3(c), CaSiO3(c), CaTiO3(c), Na2Si2O5(c), K2Si4O9(c). At the same time, the amount of condensed calcium silicate CaSiO3(c) was significant and amounted to 3.2 mol/kg, which is due to the initial standard content of oxides of the type (g/kg): SiO2-473,7, CaO-181,5 in oil-contaminated soil. The formation of various types of condensed phases (from 10-30 to 10-4 mol/kg) during thermal degradation can help reduce the synergism and toxicity of metal particles in oil-contaminated soils. In the process of thermal destruction of oil-contaminated soil, its carbon-containing components (mg/kg: С12-6,27; С13-10,98; С14-15,69; С15-18,82; С16-23,52; С17-31,37; С18-27,80; С19-17,25; С20-29,80) were mainly converted into oxide, carbon dioxide, and water, and thereby neutralized the organic mass of the soil.
Abstract
(dc.description.abstract)
Keyword: oil; soil; carbon; metal; chemical composition; component; particle; thermodynamics; modeling; condensed phase; neutralization
URL
(dc.rights)
https://dergipark.org.tr/tr/pub/mjen/issue/78236/1211527
DOI
(dc.identifier.doi)
10.51354/mjen.1211527
Faculty / Institute
(dc.identifier.fakulte)
Mühendislik Fakültesi
Department
(dc.identifier.bolum)
Çevre Mühendisliği Bölümü
Author(s) in the Institution
(dc.contributor.author)
Kubat KEMELOV
Author(s) in the Institution
(dc.contributor.author)
Zarlık MAYMEKOV
Kayıt No
(dc.identifier.kayitno)
BLB5F128F6
Record Add Date
(dc.date.available)
2023-07-31
Notes (Publication year)
(dc.identifier.notyayinyili)
2023
Subject Headings
(dc.subject)
oil
Subject Headings
(dc.subject)
soil
Subject Headings
(dc.subject)
carbon
Subject Headings
(dc.subject)
metal
Subject Headings
(dc.subject)
chemical composition
Subject Headings
(dc.subject)
component
Subject Headings
(dc.subject)
particle
Subject Headings
(dc.subject)
thermodynamics
Subject Headings
(dc.subject)
modeling
Subject Headings
(dc.subject)
condensed phase
Subject Headings
(dc.subject)
neutralization
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