Page 49 - AJWEP-22-6
P. 49

Hydrocarbons in seawater

                17.  Wang X, Wang F, Taleb MAM, Wen Z, Chen X. A review   Rev Earth Environ. 2020;1(5):237-250.
                   of the seepage mechanisms of heavy oil emulsions during      doi: 10.1038/s43017-020-0046-x
                   chemical flooding. Energies. 2022;15(22):8397.   29.  Byrnes  TA, Dunn RJK. Boating-  and shipping-related
                   doi: 10.3390/en15228397                              environmental  impacts  and  example  management
                18.  Pérez MIA, Zapata-Ramírez PA, Micallef A. A review of   measures: A review. J Mar Sci Eng. 2020;8(11):908.
                   cold seeps in the Western Atlantic, focusing on Colombia      doi: 10.3390/jmse8110908
                   and the Caribbean. Front Mar Sci. 2024;11:1430377.  30.  Nath F, Chowdhury MOS, Rhaman  MM. Navigating
                   doi: 10.3389/fmars.2024.1430377                      produced water sustainability in the oil and gas
                19.  Umoh UU, Li L, He J, et al. Unusual aliphatic hydrocarbon   sector:  A  critical  review  of reuse challenges,
                   profiles at hydrothermal vent fields of the Central and   treatment  technologies,  and prospects ahead.  Water.
                   Southeast Indian Ridges and Mid-Indian Basin.  Deep   2023;15(23):4088.
                   Sea Res Top Stud Oceanogr. 2021;194:104996.          doi: 10.3390/w15234088
                   doi: 10.1016/j.dsr2.2021.104996                  31.  Güney CB. Ballast  water  problem:  Current status
                20.  Campbell KA. Hydrocarbon seep and hydrothermal vent   and expected  challenges.  Mar Sci Tech Bull.
                   paleoenvironments and paleontology: Past developments   2022;11(4):397-415.
                   and   future  research  directions.  Palaeogeogr      doi: 10.33714/masteb.1162688
                   Palaeoclimatol Palaeoecol. 2005;232(2-4):362-407.  32.  Majeed BK, Shwan DMS, Rashid KA.  A  review
                   doi: 10.1016/j.palaeo.2005.06.018                    on  environmental  contamination  of  petroleum
                21.  Di Carlo M,  Giovannelli D, Fattorini D,  Bris NL,   hydrocarbons,  its  effects  and  remediation  approaches.
                   Vetriani  C, Regoli  F.  Trace elements  and arsenic   Environ Sci Process Impacts. 2025;27:526-548.
                   speciation in tissues of tube dwelling polychaetes from      doi: 10.1039/d4em00548a
                   hydrothermal  vent  ecosystems  (east  pacific  rise):  An   33.  Ehis-Eriakha CB, Ajuzieogu CA, Orogu JO, Akemu SE.
                   ecological role as antipredatory strategy? Mar Environ   Overview of petroleum  hydrocarbon  pollution  and
                   Res. 2017;132:1-13.                                  bioremediation technologies. Bioremediat J. 2024:1-23.
                   doi: 10.1016/j.marenvres.2017.10.003                 doi: 10.1080/10889868.2024.2349014
                22.  Giovannelli D, D’Errico G, Fiorentino F, et al. Diversity   34.  Ivanov AY, Gerivani H, Evtushenko NV. Characterization
                   and distribution of prokaryotes within a shallow-water   of natural hydrocarbon seepage in the South Caspian Sea
                   pockmark field. Front Microbiol. 2016;7:941.         off  Iran  using  satellite  SAR  and  geological  data.  Mar
                   doi: 10.3389/fmicb.2016.00941                        Georesour Geotech. 2019;38(5):527-538.
                23.  Nickel JC, Di Primio R, Kallmeyer J, et al. Tracing the      doi: 10.1080/1064119x.2019.1600175
                   origin of thermogenic hydrocarbon signals in pockmarks   35.  Li Y, Wang H, Cai Z, Zhang J, Fu J. Molecular analyses
                   from the  southwestern Barents  Sea.  Org  Geochem.   of petroleum  hydrocarbon change  and transformation
                   2013;63:73-84.                                       during  petroleum  weathering  by  multiple  techniques.
                   doi: 10.1016/j.orggeochem.2013.08.008                ACS Omega. 2021;6(36):23222-23232.
                24.  Lea-Smith DJ, Biller SJ, Davey MP, et al. Contribution      doi: 10.1021/acsomega.1c02846
                   of cyanobacterial  alkane production to the ocean   36.  Dutta  TK, Harayama S. Fate of crude oil by the
                   hydrocarbon cycle.  Proc Natl  Acad Sci USA.         combination  of photooxidation  and biodegradation.
                   2015;112(44):13591-13596.                            Environ Sci Technol. 2000;34(8):1500-1505.
                   doi: 10.1073/pnas.1507274112                         doi: 10.1021/es991063o
                25.  Péquin B, Cai Q, Lee K, Greer CW. Natural attenuation   37.  Bacos AHP, Ancla  SMB, Arcadio  CGLA,  et  al. From
                   of  oil  in  marine  environments:  A  review.  Mar Pollut   surface  water  to the  Deep Sea:  A  review  on factors
                   Bullet. 2022;176:113464.                             affecting  the  biodegradation  of  spilled  oil  in  marine
                   doi: 10.1016/j.marpolbul.2022.113464                 environment. J Mar Sci Eng. 2022;10(3):426.
                26.  Gill  DA, Ritchie  LA, Picou  JS. Sociocultural  and      doi: 10.3390/jmse10030426
                   psychosocial  impacts  of the  exxon valdez  oil  spill:   38.  Nicodem  DE,  Guedes CLB,  Conceição  M,  et  al.
                   Twenty-four years of research in Cordova, Alaska. Extr   Photochemistry  of petroleum.  Prog React  Kinet Mec.
                   Ind Soc. 2016;3(4):1105-1116.                        2001;26(2-3):219-238.
                   doi: 10.1016/j.exis.2016.09.004                      doi: 10.3184/007967401103165262
                27.  Pérez-Cadahía  B, Lafuente  A,  Cabaleiro  T, Pásaro E,   39.  Nicodem DE, Guedes CLB, Correa RJ, Fernandes MCZ.
                   Méndez J, Laffon B. Initial study on the effects of prestige   Photochemical processes and the environmental impact
                   oil on human health. Environ Int. 2006;33(2):176-185.  of petroleum spills. Biogeochem. 1997;39:121-138.
                   doi: 10.1016/j.envint.2006.09.006                    doi: 10.1023/A:1005802027380
                28.  Kujawinski EB, Reddy CM,  Rodgers RP,  Thrash JC,   40.  Cao X, Tarr MA. Aldehyde and ketone photoproducts from
                   Valentine DL, White HK. The first decade of scientific   solar-irradiated  crude oil-seawater  systems determined
                   insights from the deepwater horizon oil release. Nature   by electrospray ionization-tandem  mass spectrometry.



                Volume 22 Issue 6 (2025)                        43                           doi: 10.36922/AJWEP025290224
   44   45   46   47   48   49   50   51   52   53   54