References
- C.M. Chen, X. Yan, Y.Y. Xu, B.A. Yoza, X. Wang, Y. Kou, H.F. Ye,
Q.H. Wang, Q.X. Li, Activated petroleum waste sludge biochar
for efficient catalytic ozonation of refinery wastewater, Sci. Total
Environ., 651 (2019) 2631–2640.
- G.J. Hu, J.B. Li, G.M. Zeng, Recent development in the treatment
of oily sludge from petroleum industry: a review, J. Hazard.
Mater., 261 (2013) 470–490.
- G.J. Hu, J.B. Li, H.B. Hou, A combination of solvent extraction
and freeze thaw for oil recovery from petroleum refinery
wastewater treatment pond sludge, J. Hazard. Mater.,
283 (2015) 832–840.
- G.J. Hu, J. Li, X. Zhang, Y. Li, Investigation of waste biomass
co-pyrolysis with petroleum sludge using a response surface
methodology, J. Environ. Manage., 192 (2017) 234–242.
- M.H. Xu, J. Zhang, H.F. Liu, H. Zhao, W.F. Li, The resource
utilization of oily sludge by co-gasification with coal, Fuel,
126 (2014) 55–61.
- Q.X. Huang, X. Han, F.Y. Mao, Y. Chi, J.H. Yan, A model for
predicting solid particle behavior in petroleum sludge during
centrifugation, Fuel, 117 (2014) 95–102.
- EPA, Safe, Environmentally Acceptable Resources Recovery
from Oil Refinery Sludge, U.S. Environmental Protection
Agency (EPA), Washington D.C., 1991.
- X.Y. Ma, Y.F. Duan, M. Liu, Effects of petrochemical sludge on
the slurry-ability of coke water slurry, Exp. Therm Fluid Sci.,
48 (2013) 238–244.
- G.L. Jing, T.T. Chen, M.M. Luan, Studying oily sludge treatment
by thermo chemistry, Arabian J. Chem., 9 (2016) S457–S460.
- Q.X. Huang, J. Wang, K.Z. Qiu, Z.J. Pan, S.K. Wang, Y. Chi,
J.H. Yan, Catalytic pyrolysis of petroleum sludge for production
of hydrogen-enriched syngas, Int. J. Hydrogen Energy, 40 (2015)
16077–16085.
- J. Wang, C. Sun, B.-C. Lin, Q.-X. Huang, Z.-Y. Ma, Y. Chi,
J.-H. Yan, Micro- and mesoporous-enriched carbon materials
prepared from a mixture of petroleum-derived oily sludge and
biomass, Fuel Process. Technol., 171 (2018) 140–147.
- V.S. Cerqueira, M. do Carmo R. Peralba, F.A.O. Camargo,
F.M. Bento, Comparison of bioremediation strategies for soil
impacted with petrochemical oily sludge, Int. Biodeterior.
Biodegrad., 95 (2014) 338–345.
- M.T. Del Panno, I.S. Morelli, B. Engelen, L. Berthe-Corti, Effect of
petrochemical sludge concentrations on microbial communities
during soil bioremediation, FEMS Microbiol. Ecol., 53 (2005)
305–316.
- Y. Zhao, X.Y. Yan, J.H. Zhou, R. Li, S. Yang, B.F. Wang,
R. Deng, Treatment of oily sludge by two-stage wet air oxidation,
J. Energy Inst., 92 (2019) 1451–1457.
- O.A. Johnson, N. Madzlan, I. Kamaruddin, Encapsulation of
petroleum sludge in building blocks, Constr. Build. Mater.,
78 (2015) 281–288.
- L. Spinosa, A. Ayol, J.-C. Baudez, R. Canziani, P. Jenicek,
A. Leonard, W. Rulkens, G. Xu, L. van Dijk, Sustainable and
innovative solutions for sewage sludge management, Water J.,
3 (2011) 702–717.
- J.A. Conesa, J. Moltó, J. Ariza, M. Ariza, A. García-Barneto,
Study of the thermal decomposition of petrochemical sludge in
a pilot plant reactor, J. Anal. Appl. Pyrolysis, 107 (2014) 101–106.
- Standard Methods (APHA), Standard Methods for the
Examination of Water and Wastewater, 20th ed., A.D. Eaton,
L.S. Clesceri, A.E. Greenberg, Eds., APHA-AWWA-WEF,
Washington, D.C., USA, 2005.
- A. Ayol, O. Tezer Yurdakos, A. Gurgen, Investigation
of municipal sludge gasification potential: gasification
characteristics of dried sludge in a pilot-scale downdraft
fixed bed gasifier, Int. J. Hydrogen Energy, 44–32 (2019)
17397–17410.
- M. Venkateswar Reddy, M. Prathima Devi, K. Chandrasekhar,
R. Kannaiah Goud, S. Venkata Mohan, Aerobic remediation
of petroleum sludge through soil supplementation: microbial
community analysis, J. Hazard. Mater., 197 (2011) 80–87.
- O. Ward, A. Singh, J. Van Hamme, Accelerated biodegradation
of petroleum hydrocarbon waste, J. Ind. Microbiol. Biotechnol.,
30 (2003) 260–270.
- M. Kriipsalu, M. Marques, A. Maastik, Characterization of oily
sludge from a wastewater treatment plant flocculation-flotation
unit in a petroleum refinery and its treatment implications,
J. Mater. Cycles Waste Manage., 10 (2008) 79–86.
- J.G. Liu, X.M. Jiang, L.S. Zhou, X.X. Han, Z.G. Cui, Pyrolysis
treatment of oil sludge and model-free kinetics analysis,
J. Hazard. Mater., 161 (2009) 1208–1215.
- J.Q. Hu, J.H. Gan, J.P. Li, Y. Luo, G.K. Wang, L. Wu,
Y.M. Gong, Extraction of crude oil from petrochemical sludge:
characterization of products using thermogravimetric analysis,
Fuel, 188 (2017) 166–172.
- A. Ayol, O. Tezer, A. Gurgen, Gasification of yeast industry
treatment plant sludge using downdraft gasifier, Water Sci.
Technol., 77 (2018) 364–374.
- API, API Environmental Guidance Document: Onshore Solid
Waste Management in Exploration and Production Operations,
American Petroleum Institute (API), Washington D.C., 1989.
- S. Cheng, H.T. Zhang, F.M. Chang, F. Zhang, K.J. Wang,
Y. Qin, T.X. Huang, Combustion behavior and thermochemical
treatment scheme analysis of oil sludges and oil sludge
semicokes, Energy, 167 (2019) 575–587.
- S. Cheng, F.M. Chang, F. Zhang, T.X. Huang, K. Yoshikawa,
H.T. Zhang, Progress in thermal analysis studies on the pyrolysis
process of oil sludge, Thermochim. Acta, 663 (2018) 125–136.
- H.P. Yang, R. Yan, H.P. Chen, D.H. Lee, C.G. Zheng,
Characteristics of hemicellulose, cellulose and lignin pyrolysis,
Fuel, 86 (2007) 1781–1788.
- M.H. Xu, H.F. Liu, H. Zhao, W.F. Li, Effect of oily sludge on the
rheological characteristics of coke-water slurry, Fuel, 116 (2014)
261–266.