Contributions to Assessment and Remediation of Acid Tars Lagoons

Authors

  • Mihaela NICOLAE (TITA) Faculty of Petroleum Processing and Petrochemistry, Petroleum-Gas University, Ploiești, Eurototal, Bucharest, Romania. https://orcid.org/0000-0003-1235-3367
  • Ion ONUTU Faculty of Petroleum Processing and Petrochemistry, Petroleum-Gas University, Ploiești, Romania. https://orcid.org/0000-0002-1196-402X
  • Daniel TITA Faculty of Petroleum Processing and Petrochemistry, Petroleum-Gas University, Ploiești, Romania.
  • Timur CHIS Faculty of Petroleum Refining and Petrochemistry, Petroleum-Gas University, Ploiesti; Faculty of Applied Sciences and Engineering, Ovidius University, Constanta, Romania. https://orcid.org/0000-0003-1751-828X
  • Bogdan DOICIN Faculty of Petroleum Processing and Petrochemistry, Petroleum-Gas University, Ploiești, Romania. *Corresponding author: bogdan.doicin@upg-ploiesti.ro. https://orcid.org/0000-0003-3993-1956

DOI:

https://doi.org/10.24193/subbchem.2024.3.08

Keywords:

refinery waste, acid tars, lagoon, encapsulation, stabilization, total petroleum hydrocarbons (TPH), heavy metals and As, leaching test

Abstract

Acid tars, a waste unique to the oil processing industry, pose a significant toxicity risk. These by-products originate from refining certain petroleum fractions, such as oil and paraffin, and are commonly found in the waste streams of crude oil processing. In Romania, particularly in the post-war period, acid tars were predominantly managed through storage. Although advancements in catalytic processes have considerably reduced the generation of acid tars in the Romanian refining industry, an efficient treatment method is still required to address the existing acid tars lagoons. The present research refers to a case study carried out on a laboratory scale for the physico-chemical stabilization/encapsulation of acid tars from a lagoon belonging to a refinery in Prahova-Romania county. The experimental program aimed at formulating and applying optimal stabilization recipes for acid tar from the selected lagoon was conducted to reduce the total hydrocarbon and toxic metal content, in compliance with Order No. 95 of 12.02.2005 from Romanian legislation. The leaching data showed that the recipes that stabilize and encapsulate acid tar provide a good immobilization capacity for the five heavy metals (Pb, Cd, Cu, total Cr, Ni) and As, while their releases are dependent on the pH- and varies with the total hydrocarbon content of the treated tar. The laboratory study carried out and presented in this work, as well as the results obtained after performing the leaching test, allow the extrapolation and application of this stabilization - encapsulation procedure on a macro-in situ scale and the remediation of the lagoon where the acid tar was stored.

References

M.R. Riazi; Characterization and Properties of Petroleum Fractions, Publisher: ASTM International, USA, 2005; pp. 20-25

J.S. Alshammari; F.K. Gad; A.M., Elgibaly; A.R., Khan; Am. J. Environ. Sci. 2008; 4, 353-361.

S. Kuppusamy; T. Palanisami; T. Megharaj; M. Naidu; K. Venkateswarlu; In-Situ Remediation Approaches for the Management of Contaminated Sites: A Comprehensive Overview, Rev. Environ. Contam. T., 2016; 236, 1-115.

https://apmnt.anpm.ro/-/situri-potential-contaminate, (potential site contained by oil) (accessed on 3.12.2023).

https://ec.europa.eu/eurostat/statistics-explained/index.php?title=Waste_statistics#Total_waste_generation, (accessed on 3.12.2023).

T. Chis; A.E Sterpu; O.V. Săpunaru; Chem. Eng. 2022, 6(3), 41.

V.A. Kolmakov: D.F. Grishin; A.D. Zorin; V.F. Zanozina; Pet. Chem. 47 (6), 379-388.

X. Hao; C. Smith; Physical and chemical properties of acid tars. Consoil 2005, 9th International FZK / TNO Conference on Soil-Water Systems, Bordeaux Convention Center, Bordeaux France, 2005.

P. Catney; P. Lawson; P. Palaseanu-Lovejoy; S. Shaw; T. Smith; T. Stafford; T. Talbot; X. Hao; Acid tars lagoon: risks and sustainable remediation in an urban context, in: SUBR: IM Public Conference on Regeneration and Renewal, London, UK, 2005.

A.F. Frolov; A.N., Aminov; S.D., Timrot; Chem. Tech. Fuels Oils, 1981; 17 284–288.

D.J. Nancarrow; N.J. Slade; J.E. Steeds; Land Contamination: Technical Guidance on Special Sites: Acid Tar Lagoons, R&D Technical Report P5-042/TR/04, WS Atkins Consultants Limited, 2001.

I. Onuţu; M. Tita; Scientific Papers. Series E. Land Reclamation, Earth Observation &Surveying, Environmental Engineering, Vol. VII, 2018, pp. 140-145.

X. Zeng; U. Ichiro; I. Naruse; F. Wang; H. Zhennan; X. Guangwen; Carbon Resour. Convers., 3, 2020, 1-18.

https://legislatie.just.ro/Public/DetaliiDocumentAfis/59751, (accessed on 3.12.2023).

WO/2021/221524 Composition and process for in situ treatment of acid tar and contaminated soil WO - 04.11.2021, Int. Class B09C 1/00 Appl. No PCT/ RO2021/000002 Applicant TITA, Mihaela Inventor TITA, Mihaela, https://patents.google.com/patent/WO2021221524A1/en (accessed on 3.12.2023).

RO134684 Compoziția și procesul de stabilizare și încapsulare a gudronului acid și a solului contaminat situ, https://patentimages.storage.googleapis.com/

fd/d6/92/c3b1247266e173/RO134684A0.pdf, (accessed on 3.12.2023).

D.D. Milne; Acid tar: production, treatment and disposal. MSc thesis, Department of Civil Engineering, Imperial College of Science and Technology, University of London, 1985, 75pp.

D. McNeil; Coal Carbonisation Products, in: D.D. Milne, A.I. Clark, R. Perry; Waste Manag. Res., 1986, 4, 407–418.

M.N. Puring; A.V. Neyaglov; T.A. Kruglova; N.A., Bitulev; N.A. Gorbacheva; Y.V. Startsev; Chem. Tech. Fuels Oils 1990, 26, 32–35.

D. Banks; N.L. Nesbit; N.L., T. Firth; S. Power; Special Publication, vol. 128, Geological Society, London, 1998, 283–311.

Restoration of Acid Tar Lagoons,

http://www.acidtarlagoons.org.uk/ACIDTARS.htm, (accessed on 3.12.2023).

E.I. Obiajunwa; D.A. Pelemo; S.A. Owalabi; M.K. Fasaii; A. Johnson-Fatokun; Nucl Instrum Methods Phys Bull, 2002, 194, 61–64.

V. Rajaganapath; F. Xavier; D. Sreekumar; P.K. Mandal; J. Environ. Sci. Technol., 2011, 4 (3), 234–249.

M. Tita; I. Onuţu; B. Doicin; Appl. Sci. 2024, 14, 3382.

D. Wang, Q. Wang: Cem. Concr. Res., 2022, 161 (11) 1-20.

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Published

2024-09-30

How to Cite

NICOLAE (TITA), M., ONUTU, I., TITA, D., CHIS, T., & DOICIN, B. (2024). Contributions to Assessment and Remediation of Acid Tars Lagoons. Studia Universitatis Babeș-Bolyai Chemia, 69(3), 131–146. https://doi.org/10.24193/subbchem.2024.3.08

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