交通运输部天津水运工程科学研究所;天科院环境科技发展(天津)有限公司;
近年来,船舶含油污水因其产生量大和危害性强引起了广泛关注,由于船舶含油污水来源和成分复杂,针对船舶含油污水的处理技术面临着巨大挑战。在综合国内外研究的基础上,首先对船舶含油污水的分类、来源和特征进行了概括,随后依据工艺原理将现有含油污水的处理技术进行了分类,并对含油污水处理技术的发展现状及趋势进行了分析。研究结果可为船舶含油污水高效处理技术的研发与应用提供理论基础和技术支撑。
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[1]张青青,郑祥,程振敏,等.船舶污水处理技术研究与应用进展[J].舰船科学技术,2020,42(5):6-11.ZHANG Q Q,ZHENG X,CHENG Z M,et al.The state of arts for marine ship wastewater treatment[J].Ship Science and Technology,2020,42(3):6-11.
[2]代洪亮,古李娜,赵芷晴,等.船舶油污水处理技术研究与应用进展[J].江苏科技大学学报:自然科学版,2022,36(3):99-108.DAI H L,GU L N,ZHAO Z Q,et al.Progress in research and application of ship oil sewage treatment technology[J].Journal of Jiangsu University of Science and Technology:Natural Science Edition,2022,36(3):99-108.
[3]CHERYAN M,RAJAGOPALAN N.Membrane processing of oily streams:Wastewater treatment and waste reduction[J].Journal of Membrane Science,1998,151(1):13-28.
[4]唐政,郑青榕,李松.船舶机舱含油污水用活性炭试制[J].集美大学学报:自然科学版,2017,22(3):33-37.TANG Z,ZHENG Q S,LI S.Preparation of Activated Carbon for Bilge′s Oily Water[J].Journal of Jimei University:Natural Science,2017,22(3):33-37.
[5]NGUYEN H N,PIGNATELLO J J.Laboratory Tests of Biochars as Absorbents for Use in Recovery or Containment of Marine Crude Oil Spills[J].Environmental Engineering Science,2013,30(7):374-380.
[6]ABDELWAHAB N A,SHUKRY N,EL-KALYOUBI S F.Preparation and characterization of polymer coated partially esterified sugarcane bagasse for separation of oil from seawater[J].Environmental Technology,2017,38(15):1905-1914.
[7]VLAEV L,PETKOV P,DIMITROV A,et al.Cleanup of water polluted with crude oil or diesel fuel using rice husks ash[J].Journal of the Taiwan Institute of Chemical Engineers,2011,42(6):957-964.
[8]MUKHERJEE S,KANSARA A M,SAHA D,et al.An Ultrahydrophobic Fluorous Metal-Organic Framework Derived Recyclable Composite as a Promising Platform to Tackle Marine Oil Spills[J].Chemistry-A European Journal,2016,22(31):10937-10943.
[9]RAHMANI Z,SHAFIEI-ALAVIJEH M,KAZEMI A,et al.Synthesis of MIL-101@nanoporous graphene composites as hydrophobic adsorbents for oil removal[J].Journal of the Taiwan Institute of Chemical Engineers,2018,91:597-608.
[10]ELDIN M S M,AMMAR Y A,TAMER T M,et al.Development of low-cost chitosan derivatives based on marine waste sources as oil adsorptive materials:I.Preparation and characterization[J].Desalination and Water Treatment,2017,72:41-51.
[11]DOSHI B,REPO E,HEISKANEN J P,et al.Effectiveness of N,O-carboxymethyl chitosan on destabilization of Marine Diesel,Diesel and Marine-2T oil for oil spill treatment[J].Carbohydrate Polymers,2017,167:326-336.
[12]DOSHI B,REPO E,HEISKANEN J P,et al.Sodium salt of oleoyl carboxymethyl chitosan:A sustainable adsorbent in the oil spill treatment[J].Journal of Cleaner Production,2018,170:339-350.
[13]MIRSHAHGHASSEMI S,LEAD J R.Oil Recovery from Water under Environmentally Relevant Conditions Using Magnetic Nanoparticles[J].Environmental Science & Technology,2015,49(19):11729-11736.
[14]MIRSHAHGHASSEMI S,CAI B,LEAD J R.Evaluation of polymer-coated magnetic nanoparticles for oil separation under environmentally relevant conditions:effect of ionic strength and natural organic macromolecules[J].Environmental Science-Nano,2016,3(4):780-787.
[15]FURLAN P Y,ACKERMAN B M,MELCER M E,et al.Reusable Magnetic Nanocomposite Sponges for Removing Oil from Water Discharges[J].Journal of Ship Production and Design,2017,33(3):227-236.
[16]梁金国,刘德绪,刘安源,等.含油污水滤床过滤性能试验研究[J].石油大学学报:自然科学版,2005(6):78-81.LIANG J G,LIU D X,LIU A Y,et al.Experimental study on performance of filter bed in depth filtration of waste water containing oil[J].Journal of China University of Petroleum:Edition of Natural Science ,2005,29(6):78-81.
[17]ZHU Y,WANG J,ZHANG F,et al.Zwitterionic Nanohydrogel Grafted PVDF Membranes with Comprehensive Antifouling Property and Superior Cycle Stability for Oil-in-Water Emulsion Separation[J].Advanced Functional Materials,2018,28(40):121.
[18]LIU Y,SU Y,GUAN J,et al.Asymmetric Aerogel Membranes with Ultrafast Water Permeation for the Separation of Oil-in-Water Emulsion[J].ACS Applied Materials & Interfaces,2018,10(31):26546-26554.
[19]RANA M,CHEN J,YANG S,et al.Biomimetic Superoleophobicity of Cotton Fabrics for Efficient Oil-Water Separation[J].Advanced Materials Interfaces,2016,3(16):128.
[20]LI Y,ZHANG H,FAN M,et al.A robust salt-tolerant superoleophobic aerogel inspired by seaweed for efficient oil-water separation in marine environments[J].Physical Chemistry Chemical Physics,2016,18(36):25394-25400.
[21]LI Y,ZHANG H,FAN M,et al.A robust salt-tolerant superoleophobic alginate/graphene oxide aerogel for efficient oil/water separation in marine environments[J].Scientific Reports,2017,7:46379.
[22]ZHANG H,LI Y,SHI R,et al.A robust salt-tolerant superoleophobic chitosan/nanofibrillated cellulose aerogel for highly efficient oil/water separation[J].Carbohydrate Polymers,2018,200:611-615.
[23]金清.含油污水净化用尼龙66改性聚丙烯腈静电纺纤维膜的制备及应用性能研究[D].上海:东华大学,2018.
[24]HAN M,ZHANG J,CHU W,et al.Research Progress and Prospects of Marine Oily Wastewater Treatment:A Review[J].Water,2019,11(12):2517.
[25]TUAN V L,IMAI T,HIGUCHI T,et al.Performance of tiny microbubbles enhanced with "normal cyclone bubbles" in separation of fine oil-in-water emulsions[J].Chemical Engineering Science,2013,94:1-6.
[26]彭恋寒,乔赵超.基于次氯酸钠的船舶油污水处理试验[J].上海船舶运输科学研究所学报,2021,44(3):78-81.PENG L H,QIAO Z C.Experiment of Sodium Hypochlorite Treatment of Oily Wastewater[J].Journal of Shanghai Scientific Research Institute of Shipping,2021,44(3):78-81.
[27]CAZOIR D,FINE L,FERRONATO C,et al.Hydrocarbon removal from bilgewater by a combination of air-stripping and photocatalysis[J].Journal of Hazardous Materials,2012,235-236:159-168.
[28]MACHADO DE OLIVEIRA C P,VIANA M M,SANTOS AMARAL M C.Coupling photocatalytic degradation using a green TiO2 catalyst to membrane bioreactor for petroleum refinery wastewater reclamation[J].Journal of Water Process Engineering,2020,34:101403.
[29]CAZOIR D,FINE L,FERRONATO C,et al.Hydrocarbon removal from bilgewater by a combination of air-stripping and photocatalysis[J].Journal of Hazardous Materials,2012,235-236:159-168.
[30]CERQUEIRA A,RUSSO C,MARQUES M R C.Electroflocculation for Textile Wastewater Treatment[J].Brazilian Journal of Chemical Engineering,2009,26(4):659-668.
[31]MOHTASHAMI R,SHANG J Q.Electroflotation for Treatment of Industrial Wastewaters:A Focused Review[J].Environmental Processes-An International Journal,2019,6(2):325-353.
[32]ALAM R,SHANG J Q.Electrochemical model of electro-flotation[J].Journal of Water Process Engineering,2016,12:78-88.
[33]NIDAL F.The Application of Electrocoagulation Process for Wastewater Treatment and for the Separation and Purification of Biological Media[D].Université Clermont Auvergne,2017.
[34]SUHAN M B K,SHUCHI S B,ANIS A,et al.Comparative degradation study of remazol black B dye using electro-coagulation and electro-Fenton process:Kinetics and cost analysis[J].Environmental Nanotechnology,Monitoring & Management,2020,14:100335.
[35]施帅帅,查俊杰.船舶含油污水处理工程实例[J].水处理技术,2022,48(9):138-141.
[36]MEI X,WANG H,HOU D,et al.Shipboard bilge water treatment by electrocoagulation powered by microbial fuel cells[J].Frontiers of Environmental Science & Engineering,2019,13(4):1-7.
[37]WANG T,SHI P,WANG M,et al.Preparation of AuNP-CQD/PDA/GO anode for MFC and its treatment of oily sewage from ships[J].Environmental Science and Pollution Research,2023,30(24):66427.
[38]GARCIA-GARCIA A,MARTINEZ-MIRANDA V,MARTINEZ-CIENFUEGOS I G,et al.Industrial wastewater treatment by electrocoagulation-electrooxidation processes powered by solar cells[J].Fuel,2015,149:46-54.
[39]SANTOS M R G,GOULART M O F,TONHOLO J,et al.The application of electrochemical technology to the remediation of oily wastewater[J].Chemosphere,2006,64(3):393-399.
[40]秦菲菲,魏燕杰,李国一.混凝沉淀-厌氧/好氧组合工艺处理港口含油废水的运行与优化[J].水道港口,2019,40(1):113-119.QIN F F,WEI Y J,LI G Y.Optimization of coagulation-sedimentation-anoxic-oxic combined process treating harbor oil-containing wastewater[J].Journal of Waterway and Harbor,2019,40(1):113-119.
[41]ZENG Y,YANG C,ZHANG J,et al.Feasibility investigation of oily wastewater treatment by combination of zinc and PAM in coagulation/flocculation[J].Journal of Hazardous Materials,2007,147(3):991-996.
[42]YANG R,LI H,HUANG M,et al.A review on chitosan-based flocculants and their applications in water treatment[J].Water Research,2016,95:59-89.
[43]ZHAO C,ZHOU J,YAN Y,et al.Application of coagulation/flocculation in oily wastewater treatment:A review[J].Science of The Total Environment,2021,765:142795.
[44]蔡军,陈勇.船舶污水一体式处理系统的研究[J].舰船科学技术,2018,40(13):150-153.CAI J,CHEN Y.Research on integrated treatment system of shipping sewage[J].Ship Science and Technology,2018,40(7):150-153.
[45]王志斌.电动力耦合微生物处理船舶含油污水装置设计及优化[D].济南:山东交通学院,2023.
[46]DOKIANAKIS S N,FOUNTOULAKIS M S,KORNAROS M,et al.Biological treatment of sewage from ships in a Sequencing Batch Reactor[J].Fresenius Environmental Bulletin,2007,16(12A):1608-1615.
[47]CHOI Y,JI H,SHIN D,et al.An Evaluation of the Water Quality Characteristics of Shipboard Sewage Disposal and Usability Based on Water Quality Enhancement[J].Applied Sciences,2019,9(3):418.
[48]KHAN M Z,MONDAL P K,SABIR S.Aerobic granulation for wastewater bioremediation:A review[J].Canadian Journal of Chemical Engineering,2013,91(6):1045-1058.
[49] ABUHASEL K,KCHAOU M,ALQURAISH M,et al.Oily Wastewater Treatment:Overview of Conventional and Modern Methods,Challenges,and Future Opportunities[J].Water,2021,13(7):980.
[50]PRIMASARI B,IBRAHIM S,ANNUAR M S M,et al.Aerobic treatment of oily wastewater:effect of aeration and sludge concentration to pollutant reduction and PHB accumulation[J].World Academy of Science,Engineering and Technology,2011,78:172-176.
[51]赵婉莹.船舶舱底油污水与废气洗涤废液的协同处理方法[D].大连:大连海事大学,2023.
[52]EMADIAN S M,HOSSEINI M,RAHIMNEJAD M,et al.Treatment of a low-strength bilge water of Caspian Sea ships by HUASB technique[J].Ecological Engineering,2015,82:272-275.
[53]LI J,SUN S,YAN P,et al.Microbial communities in the functional areas of a biofilm reactor with anaerobic-aerobic process for oily wastewater treatment[J].Bioresource Technology,2017,238:7-15.
[54]PENG H,TREMBLAY A Y,VEINOT D E.The use of backflushed coalescing microfiltration as a pretreatment for the ultrafiltration of bilge water[J].Desalination,2004,181(1):109-120.
[55]KARAKULSKI K,GRYTA M.The application of ultrafiltration for treatment of ships generated oily wastewater[J].Chemical Papers,2017,71(6):1165-1173.
[56]CEYHUN A,YASIN O,NADIR D,et al.Electrocoagulation and nanofiltration integrated process application in purification of bilge water using response surface methodology.[J].Water Science and Technology,2016,74(3):564-579.
[57]ECHEVARRIA C,VALDERRAMA C,CORTINA J L,et al.Hybrid sorption and pressure-driven membrane technologies for organic micropollutants removal in advanced water reclamation:A techno-economic assessment[J].Journal of Cleaner Production,2020,273:123108.
[58]初江涛,张荣祥.UF+RO技术在港区含油污水深度处理回用中的应用研究[J].水道港口,2018,39(3):355-359.CHU J T,ZHANG R X.Application of UF +RO technology in deep treatment and reuse of oily sewage in port[J].Journal of Waterway and Harbor ,2018,39(3):355-359.
[59]FARD A K,MCKAY G,BUEKENHOUDT A,et al.Inorganic Membranes:Preparation and Application for Water Treatment and Desalination[J].Materials,2018,11(1):10014.
[60]TOMASZEWSKA M,ORECKI A,KARAKULSKI K.Treatment of bilge water using a combination of ultrafiltration and reverse osmosis[J].Desalination,2005,185(1-3):203-212.
[61]KARAKULSKI K,GRYTA M.The application of ultrafiltration for treatment of ships generated oily wastewater[J].Chemical Papers,2017,71(6):1165-1173.
[62]YALCINKAYA F,BOYRAZ E,MARYSKA J,et al.A Review on Membrane Technology and Chemical Surface Modification for the Oily Wastewater Treatment[J].Materials,2020,13(2):493.
[63]KUJAWA J,CERNEAUX S,KUJAWSKI W.Removal of hazardous volatile organic compounds from water by vacuum pervaporation with hydrophobic ceramic membranes[J].Journal of Membrane Science,2015,474:11-19.
[64]EBRAHIMI A,ASHAGHI K S,ENGEL L,et al.Characterization and application of different ceramic membranes for the oil-field produced water treatment[J].Desalination,2009,245(1-3):533-540.
[65]AMIN S K,ROUSHDY M H,EL-SHERBINY C A.An overview of production and development of ceramic membranes[J].International Journal of Applied Engineering Research,2016,11(12):7708-7721.
[66]GOLSHENAS A,SADEGHIAN Z,ASHRAFIZADEH S N.Performance evaluation of a ceramic-based photocatalytic membrane reactor for treatment of oily wastewater[J].Journal of Water Process Engineering,2020,36:101186.
[67]THI M H N,SUWAN P,KOOTTATEP T,et al.Application of a novel,continuous-feeding ultraviolet light emitting diode (UV-LED) system to disinfect domestic wastewater for discharge or agricultural reuse[J].Water Research,2019,153:53-62.
[68]WEI Y,LI G.Membrane fouling behavior and microbial community succession in a submerged membrane bioreactor treating harbor oily wastewater[J].Journal of Zhejiang University-Science A,2016,17(9):745-757.
[69]朱勇杰,席晓勇,李欣甜,等.预处理+臭氧+AO+MBR组合工艺在船舶油污水处理的应用[J].水处理技术,2024,50(3):142-147.ZHU Y J,XI X Y,LI X T,et al.Application of Combined Process of Pretreatment + Ozone + AO + MBR in the Treatment of Oil Sewage from Ship[J].Technology of Water Treatment,2024,50(3):142-147.
基本信息:
DOI:
中图分类号:X736.3
引用信息:
[1]李广涛,张传国,王丽丽.船舶含油污水处理技术研究进展[J].水道港口,2024,45(02):256-263.
基金信息:
国家重点研发计划项目(2022YFC3203400); 中央级公益性科研院所基本科研业务费专项资金项目(TKS20200109); 天津市交通运输科技项目(2024-B20)