References
- D.A. Agrawal, D. An, A. Cavallaro, G. Voordouw, Souring in
low-temperature surface facilities of two high-temperature
Argentinian oil fields, Appl. Microbiol. Biotechnol.,
98 (2014) 8017–8029.
- H. Li, S. Niu, C. Lu, M. Liu, M. Huo, Transesterification
catalyzed by industrial waste—lime mud doped with potassium
fluoride and the kinetic calculation, Energy Convers. Manage.,
86 (2014) 1110–1117.
- G. Zhu, S. Zhang, Q. Liu, J. Zhang, J. Yang, T. Wu, Y. Huang,
S. Meng, Distribution and treatment of harmful gas from heavy
oil production in the Liaohe Oilfield, Northeast China, Pet. Sci.,
7 (2010) 422–427.
- Y. Gao, W. Zhu, C. Wang, X. Zhao, M. Shu, J. Zhang, H. Bai,
Enhancement of oxygen reduction on a newly fabricated
cathode and its application in the electro-Fenton process,
Electrochim. Acta, 330 (2020) 135–206.
- Y.A. Khodor, T.M. Albayati, Employing sodium hydroxide
in desulfurization of the actual heavy crude oil: theoretical
optimization and experimental evaluation, Process Saf. Environ.
Prot., 136 (2020) 334–342.
- W.H. Wu, Electrochemical corrosion prevention in oilfield
wastewater for effective dissolved oxygen removal using a novel
upflow bioelectrochemical system, Asian J. Chem., 6 (2019) 1–9.
- O. Tambwe, A. Kotsiopoulos, S. Harrison, Desulphurising high
sulphur coal discards using an accelerated heap leach approach,
Hydrometallurgy, 197 (2020) 465–472.
- Y. Liu, Y.H. Wang, J. Zhao, Y. Liu, C. Liu, Ultra-deep
desulfurization by reactive adsorption desulfurization on
copper-based catalysts, J. Energy Chem., 29 (2019) 16–24.
- R.Á. Rodríguez, C.C. Jul, D. Gómez-Limón, Evolution of the
organic sulfur and other components during nitric acid leaching
of Mequinenza coal, Fuel, 76 (1997) 1445–1450.
- H.K. Namgung, J.H. Song, The effect of oxygen supply on the
dual growth kinetics of Acidithiobacillus thiooxidans under acidic
conditions for biogas desulfurization, Int. J. Environ. Res. Public
Health, 12 (2015) 1368–1386.
- J. Yan, W. Yuan, J. Liu, W. Ye, J. Lin, J. Xie, X Huang, S. Gao,
J. Xie, S. Liu, W. Chen, H. Zhang, An integrated process of
chemical precipitation and sulfate reduction for treatment of
flue gas desulphurization wastewater from coal-fired power
plant, J. Cleaner Prod., 228 (2019) 63–72.
- H.A. Elmawgoud, T.M. Elshiekh, S.A. Khalil, A.M. Alsabagh,
M. Tawfik, Modeling of hydrogen sulfide removal from
petroleum production facilities using H2S scavenger, Egypt.
J. Pet., 255 (2015) 131–137.
- G.A. Amin, S.A. Bazaid, M.A. El-Halim, A two-stage
immobilized cell bioreactor with Bacillus subtilis and
Rhodococcus erythropolis for the simultaneous production of
biosurfactant and biodesulfurization of model oil, Pet. Sci.
Technol., 31 (2013) 2250–2257.
- W.H. Zhu, Y. Li, Y. Gao, C. Wang, J. Zhang, H. Bai, T. Huang,
A new method to fabricate the cathode by cyclic voltammetric
electrodeposition for electro-Fenton application, Electrochim.
Acta, 349 (2020) 400–415.
- J.G. Wynn, J.B. Sumrall, B.P. Onac, Sulfur isotopic composition
and the source of dissolved sulfur species in thermo-mineral
springs of the Cerna Valley, Chem. Geol., 271 (2010) 31–43.
- A.T. Jarullah, S.K. Aldulaimi, B.A. Al-Tabbakh, I.M. Mujtaba,
A new synthetic composite nano-catalyst achieving
an environmentally friendly fuel by batch oxidative
desulfurization, Chem. Eng. Res. Des., 160 (2020) 405–416.
- S. Tian, H. Mo, R. Zhang, P. Ning, T. Zhou, Enhanced
removal of hydrogen sulfide from a gas stream by
3-aminopropyltriethoxysilane-surface-functionalized activated
carbon, Adsorption, 15 (2009) 477–488.
- S.Y. Haruna, U.Z. Faruk, M.L. Gidado, Reduction of sulphur
content of heavy crude oil using oxidative desulp, Am. J. Appl.
Chem., 6 (2018) 15–20.
- M.A. Rezvani, M. Shaterian, M. Aghmasheh, Catalytic
oxidative desulphurization of gasoline using amphiphilic
polyoxometalate@polymer nanocomposite as an efficient,
reusable, and green organic–inorganic hybrid catalyst, Environ.
Technol., 41 (2020) 1219–1231.
- W.H. Zhu, R. Wang, T. Huang, F. Wu, The characteristics and
two-step reaction model of p-nitroacetophenone biodegradation
mediated by Shewanella decolorationis S12 and electron shuttle
in the presence/absence of goethite, Environ. Technol., 35 (2014)
3116–3123.
- M. Kupczewska-Dobecka, S. Czerczak, J.P. Gromiec,
K. Konieczko, Assessment of potential health hazards during
emission of hydrogen sulphide from the mine exploiting
copper ore deposit - case study, Cent. Eur. J. Public Health,
23 (2015) 137.
- N. Arancibia-Miranda, S.E. Baltazar, A. García, D. Muñoz-Lira,
P. Sepúlveda, M.A. Rubio, D. Altbir, Nanoscale zero valent
supported by zeolite and montmorillonite: template effect of
the removal of lead ion from an aqueous solution, J. Hazard.
Mater., 301 (2015) 371–380.
- W.H. Zhu, D. Yu, M. Shi, Y. Zhang, T. Huang, Quinonemediated
microbial goethite reduction and transformation
of redox mediator, anthraquinone-2,6-disulfonate (AQDS),
Geomicrobiol. J., 34 (2017) 27–36.