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Utilization of Drilling Cuttings in the Technological Process of Asphalt-concrete Mixture Production

https://doi.org/10.18412/1816-0395-2025-5-34-39

Abstract

It is established that the presence of oil and oil products in the amounts usual for drill cuttings is not a negative factor for asphalt concrete structural formation. Asphalt concrete specimens with different contents of drill cuttings were tested and it was found that the best results were shown by the specimen from which the bulk of clay particles was removed. It is concluded that the developed technological approach with the addition of drill cuttings to the composition of asphalt-concrete mixture allows to effectively use its mineral part as well as oil and oil products to form the structure of asphalt-concrete, which ensures the subsequent operation of the latter as the top layer of the road surface.

About the Author

K.G. Pugin
Perm State Agro-Technological University named after Academician D.N. Pryanishnikov; Perm National Research Polytechnic University

Dr. Sci. (Eng.), Professor; Professor



References

1. Hu Y., Mu S., Zhang J., Li Q. Regional distribution, properties, treatment technologies, and resource utilization of oilbased drilling cuttings. A review. Chemosphere. 2022. Vol. 308. Part 1. 136145. DOI:10.1016/j.chemosphere.2022.136145.

2. Власов А.С., Пугин К.Г., Сурков А.А. Геоэкологическая оценка технологии использования отходов бурения в составе асфальтобетона. Нефтяное хозяйство. 2020. №12. С. 139—142.

3. Власов А.С., Пугин К.Г., Тюрюханов К.Ю., Рудакова Л.В., Глушанкова И.С., Сурков А.А. Разработка способа получения геоэкологически безопасных материалов на основе бурового шлама для дорожного строительства. Экология и промышленность России. 2020. Т. 24. № 11. С. 19—23

4. Тюрюханов К.Ю. Пугин К.Г. Исследование взаимодействия битума с минеральными частицами в асфальтобетоне. Транспортные сооружения. 2018. Т. 5. № 1. С.19. DOI:10.15862/20SATS118.

5. Kujawska J. Potential influence of drill cuttings landfill on groundwater quality-comparison of leaching tests results and groundwater composition. Desalination and Water Treatment. 2016. Vol. 57. P. 1409—1419.

6. Okparanma R., Araka P. Towards enhancing sustainable reuse of pre-treated drill cuttings for construction purposes by near-infrared analysis. A review. Journal of Civil Engineering and Construction Technology. 2018. No. 9. P. 19—39.

7. Третьяк А.А., Яценко Е.А., Онофриенко С.А., Карельская Е.В. Идентификация отходов бурения и их использование. Известия Томского политехнического университета. Инжиниринг георесурсов. 2021. Т. 332. № 2. С. 36—43.

8. Zhang W. Effect of tack coat application on interlayer shear strength of asphalt pavement: A state-of-the-art review based on application in the United States. International Journal of Pavement Research and Technology. 2017. Vol. 10. No. 5. P. 434—445.

9. Климова А.А., Язиков Е.Г., Шайхиев И.Р. Минералого-геохимическая специфика буровых шламов нефтяных месторождений на примере объектов Томской области. Известия Томского политехнического университета. Инжиниринг георесурсов. 2020. Т. 331. № 2. С. 102—114.

10. Liu P., Hu J., Falla G., Wang D., Leischner S. Primary investigation on the relationship between microstructural characteristics and the mechanical performance of asphalt mixtures with different compaction degrees. Construction and Building Materials. 2019. Vol. 223. P. 784—793.

11. Kogbara R., Masad E., Kassem E., Scarpas A. A stateof-the-art review of parameters influencing measurement and modeling of skid resistance of asphalt pavements. Construction and Building Materials. 2016. Vol. 114. P. 602—617.

12. Kuang D., Zhang B., Jiao Y., Fang J., Chen H., Wang L. Impact of particle morphology on aggregate-asphalt interface behavior. Construction and Building Materials. 2017. Vol. 132. P. 142—149.

13. Zhang P., Sun Y., Wu J., Guo Z., Wang C. Properties of road subbase materials manufactured with geopolymer solidified waste drilling mud. Construction and Building Materials. 2024. Vol. 430. 136509. DOI:10.1016/j.conbuildmat.2024.136509.

14. Khodadadi M., Moradi L., Dabir B., Nejad F., Khodaii A. Reuse of drill cuttings in hot mix asphalt mixture: A study on the environmental and structure performance. Construction and Building Materials. 2020. Vol. 256. 119453. DOI:10.1016/j.conbuildmat.2020.119453.

15. Ran W., Zhu H., Shen X., Zhang Y. Rheological properties of asphalt mortar with silane coupling agent modified oil sludge pyrolysis residue. Construction and Building Materials. 2022. Vol. 329. 127057. DOI:10.1016/j.conbuildmat.2022.127057.


Review

For citations:


Pugin K. Utilization of Drilling Cuttings in the Technological Process of Asphalt-concrete Mixture Production. Ecology and Industry of Russia. 2025;29(5):34-39. (In Russ.) https://doi.org/10.18412/1816-0395-2025-5-34-39

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ISSN 1816-0395 (Print)
ISSN 2413-6042 (Online)