Physical characteristics and environmental risks assessment of oil-based drilling cuttings residues used for subgrade materials

Oil-based drilling cuttings residues (ODCRs) can be used as subgrade materials for well site construction. It not only reduces the cost of shale gas development, but also solves the practical problems encountered in shale gas development. The results show that ODCRs contained many carcinogenic pollu...

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Veröffentlicht in:Journal of cleaner production Jg. 323; S. 129152
Hauptverfasser: Deming, Xiong, Chaoqiang, Wang
Format: Journal Article
Sprache:Englisch
Veröffentlicht: Elsevier Ltd 10.11.2021
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ISSN:0959-6526, 1879-1786
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Abstract Oil-based drilling cuttings residues (ODCRs) can be used as subgrade materials for well site construction. It not only reduces the cost of shale gas development, but also solves the practical problems encountered in shale gas development. The results show that ODCRs contained many carcinogenic pollutants, such as As, Benzo anthracene (a), Benzo pyrene (a), Dibenzo anthracene (a, h). ODCRs have some environmental risks. However, the main mineral components and radioactive strength of ODCRs meets the requirements of Class A materials, which can be used for building materials. The experimental results show that the unconfined compressive strength of ODCRs subgrade materials increases with the increase of cement content. The unconfined compressive strength and compactness first increase and then decrease with the increase of ODCRs content. The optimal content of cement is 4%, and the optimal content of ODCRs is 60%. In addition, ODCRs have pozzolanic characteristics. Active SiO2 and Al2O3 in ODCRs can react with Ca(OH)2 to produce a certain amount of gel materials, such as ettringite (AFt) and gel hydrated calcium silicate (C–S–H). These gel materials can form a network structure to encapsulate heavy metals and macromolecular organic matters. So, no organic pollutants and some heavy metals are detected in the leaching solution of subgrade materials with 60% ODCRs, and there will be no secondary pollution to the external environment.
AbstractList Oil-based drilling cuttings residues (ODCRs) can be used as subgrade materials for well site construction. It not only reduces the cost of shale gas development, but also solves the practical problems encountered in shale gas development. The results show that ODCRs contained many carcinogenic pollutants, such as As, Benzo anthracene (a), Benzo pyrene (a), Dibenzo anthracene (a, h). ODCRs have some environmental risks. However, the main mineral components and radioactive strength of ODCRs meets the requirements of Class A materials, which can be used for building materials. The experimental results show that the unconfined compressive strength of ODCRs subgrade materials increases with the increase of cement content. The unconfined compressive strength and compactness first increase and then decrease with the increase of ODCRs content. The optimal content of cement is 4%, and the optimal content of ODCRs is 60%. In addition, ODCRs have pozzolanic characteristics. Active SiO2 and Al2O3 in ODCRs can react with Ca(OH)2 to produce a certain amount of gel materials, such as ettringite (AFt) and gel hydrated calcium silicate (C–S–H). These gel materials can form a network structure to encapsulate heavy metals and macromolecular organic matters. So, no organic pollutants and some heavy metals are detected in the leaching solution of subgrade materials with 60% ODCRs, and there will be no secondary pollution to the external environment.
Oil-based drilling cuttings residues (ODCRs) can be used as subgrade materials for well site construction. It not only reduces the cost of shale gas development, but also solves the practical problems encountered in shale gas development. The results show that ODCRs contained many carcinogenic pollutants, such as As, Benzo anthracene (a), Benzo pyrene (a), Dibenzo anthracene (a, h). ODCRs have some environmental risks. However, the main mineral components and radioactive strength of ODCRs meets the requirements of Class A materials, which can be used for building materials. The experimental results show that the unconfined compressive strength of ODCRs subgrade materials increases with the increase of cement content. The unconfined compressive strength and compactness first increase and then decrease with the increase of ODCRs content. The optimal content of cement is 4%, and the optimal content of ODCRs is 60%. In addition, ODCRs have pozzolanic characteristics. Active SiO₂ and Al₂O₃ in ODCRs can react with Ca(OH)₂ to produce a certain amount of gel materials, such as ettringite (AFt) and gel hydrated calcium silicate (C–S–H). These gel materials can form a network structure to encapsulate heavy metals and macromolecular organic matters. So, no organic pollutants and some heavy metals are detected in the leaching solution of subgrade materials with 60% ODCRs, and there will be no secondary pollution to the external environment.
ArticleNumber 129152
Author Chaoqiang, Wang
Deming, Xiong
Author_xml – sequence: 1
  givenname: Xiong
  surname: Deming
  fullname: Deming, Xiong
  organization: Chongqing Environmental Protection Center for Shale Gas Technology & Development, Fuling, 408000, Chongqing, China
– sequence: 2
  givenname: Wang
  surname: Chaoqiang
  fullname: Chaoqiang, Wang
  email: wcq598676239@126.com
  organization: School of Material Science and Engineering, Chongqing Jiaotong University, Chongqing, 400074, China
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Keywords Hazardous waste
Mechanical characteristics
ODCRs
Risk assessment
Subgrade materials
Language English
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Snippet Oil-based drilling cuttings residues (ODCRs) can be used as subgrade materials for well site construction. It not only reduces the cost of shale gas...
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StartPage 129152
SubjectTerms anthracenes
calcium silicate
carcinogenicity
cement
compression strength
gels
Hazardous waste
Mechanical characteristics
ODCRs
pollution
Risk assessment
shale gas
Subgrade materials
Title Physical characteristics and environmental risks assessment of oil-based drilling cuttings residues used for subgrade materials
URI https://dx.doi.org/10.1016/j.jclepro.2021.129152
https://www.proquest.com/docview/2636822240
Volume 323
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