[1]XINM,GUSTINMS.Gaseouselementalmercuryexchangewithlowmercurycontainingsoils:Investigationofcontrollingfactors[J].AppliedGeochemistry,2007,22(7):1451-1466.
[2]冯新斌,仇广乐,王少锋,等.我国汞矿区人群的无机汞及甲基汞暴露途径与风险评估[J].地球化学,2013,42(3):205-211.
[3]ZHONGTY,CHENDM,ZHANGXY.Identificationofpotentialsourcesofmercury(Hg)infarmlandsoilusingadecisiontreemethodinchina[J].InternationalJournalofEnvironmentalResearchandPublicHealth,2016,13(11):1111-1121.
[4]贾威,陈金全,常军军.汞污染生物修复研究进展[J].环境工程,2020,38(5):171-178.
[5]RZANSKIS,CASTEJNJMP,FERNNDEZGG.Bioavailabilityandmobilityofmercuryinselectedsoilprofiles[J].EnvironmentalEarthSciences,2016,75(13):1064-1074.
[6]SONGWJ,XIONGHG,QIR,etal.Effectofsalinityandalgaebiomassonmercurycyclinggenesandbacterialcommunitiesinsedimentsundermercurycontamination:Implicationsofthemercurycycleinaridregions[J].EnvironmentalPollution,2021,269:116141.
[7]王琪,唐丹平,姜林,等.废弃荧光灯管的环境管理研究[J].环境污染与防治,2012,34(11):98-102.
[8]曾少军,曾凯超,杨来.中国汞污染治理的现状与策略研究[J].中国人口·资源与环境,2014,24(增刊1):92-96.
[9]CHENYG,HEXLS,HUANGJH,etal.Impactsofheavymetalsandmedicinalcropsonecologicalsystems,environmentalpollution,cultivation,andproductionprocessesinChina[J].EcotoxicologyandEnvironmentalSafety,2021,219:112336.
[10]鲁洪娟,倪吾钟,叶正钱,等.土壤中汞的存在形态及过量汞对生物的不良影响[J].土壤通报,2007,38(3):597-600.
[11]KUMARV,PANDITAS,PSSG,etal.Copperbioavailability,uptake,toxicityandtoleranceinplants:Acomprehensivereview[J].Chemosphere,2021,262:127810.
[12]LINH,WANGZW,LIUCJ,etal.Technologiesforremovingheavymetalfromcontaminatedsoilsonfarmland:Areview[J].Chemosphere,2022,305:135457.
[13]TSENGSC,LIANGCM,CHIAT,etal.Changesinthecompositionofthesoilbacterialcommunityinheavymetal-contaminatedfarmland[J].InternationalJournalofEnvironmentalResearchandPublicHealth,2021,18:168661.
[14]崔雯雯,王小利,段建军,等.土壤中重金属镉与汞污染修复的研究进展[J].贵州农业科学,2011,39(7):225-228.
[15]ZHANGH.Impactsofseleniumonthebiogeochemicalcyclesofmercuryinterrestrialecosystemsinmercuryminingareas[J].SpringerTheses,2014,40:158-162.
[16]PYLDE,MATHERTA.Theimportanceofvolcanicemissionsfortheglobalatmosphericmercurycycle[J].AtmosphericEnvironment,2003,37(36):5115-5124.
[17]LINDQVISTO,JOHANSSONK,BRINGMARKL.MercuryintheSwedishenvironment—Recentresearchoncauses,consequencesandcorrectivemethods[J].WaterAirSoilPollution,1991,55(1/2):1-261.
[18]SCHROEDERWH,MUNTHEJ.AtmosphericMercury:AnOverview[J].AtmosphericEnvironment,1998,32(5):809-822.
[19]LYNAMMM,DVONCHJT,HALLNL,etal.Spatialpatternsinwetanddrydepositionofatmosphericmercuryandtraceelementsincentralillinois,USA[J].EnvironmentalScienceandPollutionResearch,2014,21(6):4032-4043.
[20]钱建平,江文莹,牛云飞.矿山-河流系统中重金属污染的地球化学研究[J].矿物岩石地球化学通报,2010,29(1):74-82.
[21]段志斌,王济,安吉平,等.汞矿山废弃地土壤汞污染研究[J].环境科学与管理,2016,41(11):41-44.
[22]XUDM,FURB,LIUHQ,etal.CurrentknowledgefromheavymetalpollutioninChinesesmeltercontaminatedsoils,healthriskimplicationsandassociatedremediationprogressinrecentdecades:Acriticalreview[J].JournalofCleanerProduction,2020(prepublish):124989.
[23]洪春来,贾彦博,杨肖娥,等.农业土壤中汞的生物地球化学行为及其生态效应[J].土壤通报,2007,38(3):590-596.
[24]何振立,周启星,谢正苗.污染及有益元素的土壤化学平衡[M].北京:中国环境科学出版社,1998:244-276.
[25]DRESHAJA,MILLAKUB,GASHIA,etal.Concentrationoftoxicmetalsinagriculturallandandwheatculture(triticumaestivuml.)[J].JournalofEcologicalEngineering,2022,23(2):18-24.
[26]YANA,WANGYM,TANSN,etal.Phytoremediation:Apromisingapproachforrevegetationofheavymetal-pollutedland[J].FrontiersinPlantScience,2020,11:100359.
[27]李颖斯,孔静怡,彭志铎,等.汞金属污染土壤修复技术及应用实践[J].绿色科技,2021,23(18):132-136.
[28]IANNELLIR,MASIM,CECCARINIA,etal.Electrokineticremediationofmetal-pollutedmarinesediments:Experimentalinvestigationforplantdesign[J].ElectrochimActa,2015,181:146-159.
[29]FALCIGLIAPP,MALARBD,GRECOV,etal.SurfactantandMGDAenhanced-electrokinetictreatmentforthesimultaneousremovalofmercuryandPAHsfrommarinesediments[J].SeparationandPurificationTechnology,2017,175:330-339.
[30]ROBLESI,LOZANOMJ,SOLSS,etal.Electrokinetictreatmentofmercury-pollutedsoilfacilitatedbyethylenediaminetetraaceticacidcoupledwithareactorwithapermeablereactivebarrierofirontorecovermercury(Ⅱ)fromwater[J].ElectrochimActa,2015,181:68-72.
[31]CAMESELLEC,PENAA.Enhancedelectromigrationandelectro-osmosisfortheremediationofanagriculturalsoilcontaminatedwithmultipleheavymetals[J].ProcessSafetyandEnvironmentalProtection,2016,104:209-217.
[32]马小娜,王睿,徐圣君,等.汞污染土壤修复技术研究进展[J].煤炭与化工,2016,39(12):65-70,79.
[33]WANGJX,FENGXB,ANDERSONCWN,etal.Remediationofmercurycontaminatedsites—Areview[J].JournalofHazardousMaterials,2012,221/222:1-18.
[34]ZHAOT,ZHIYU,ZHANGJF,etal.Low-thermalremediationofmercury-contaminatedsoilandcultivationoftreatedsoil[J].EnvironmentalScienceandPollutionResearchInternational,2018,25(24):24135-24142.
[35]MAFJ,PENGCS,HOUDY,etal.Citricacidfacilitatedthermaltreatment:Aninnovativemethodfortheremediationofmercurycontaminatedsoil[J].JournalofHazardMater,2015,300:546-552.
[36]ZHAOT,WANGXR,YANGXJ,etal.ThermogravimetricandXRDstudyoftheeffectsofchloridesaltsonthethermaldecompositionofmercurycompounds[J].JournalofMaterCyclesandWasteManagement,2017,19(2):712-717.
[37]LEEES,CHOST,BACKSK,etal.Effectofsubstitutionreactionwithtinchlorideinthermaltreatmentofmercurycontaminatedtailings[J].EnvironmentalPollution,2020,264:114761.
[38]MEIHY,HUANGWF,WANGY,etal.Onestonetwobirds:bonecharasacost-effectivematerialforstabilizingmultipleheavymetalsinsoilandpromotingcrop
growth[J].ScienceoftheTotalEnvironment,2022,840(1):156163.
[39]OUHADIVR,YONGRN,DEIRANLOUM.Enhancementofcement-basedsolidification/stabilizationofalead-contaminatedsmectiteclay[J].JournalofHazardousMaterials,2021,403:123969.
[40]CHOJH,EOMYJ,LEETG.Stabilization/solidificationofmercury-contaminatedwasteashusingcalciumsodiumphosphate(CNP)andmagnesiumpotassiumphosphate(MKP)processes[J].JournalofHazardousMaterials,2014,279:474-482.
[41]LEETG,EOMYJ,LEECH,etal.Stabilizationandsolidificationofelementalmercuryforsafedisposaland/orlong-termstorage[J].JournaloftheAirandWasteManagementAssociation,2011,61:1057-1062.
[42]王祖波,何天容.不同硒化修复剂对稻田汞污染修复效果研究[J].中国环境科学,2019,39(10):4254-4261.
[43]WANGJX,XINGY,XIEYY,etal.Theuseofcalciumcarbonate-enrichedclaymineralsanddiammoniumphosphateasnovelimmobilizationagentsformercuryremediation:Spectralinvestigationsandfieldapplications[J].ScienceoftheTotalEnvironment,2019,646:1615-1623.
[44]王哲.地下水重金属污染成因及修复技术研究进展[J].科技与创新,2020(3):134-135.
[45]RAYAB,SELVAKUMARA.Laboratorystudiesontheremedi-ationofmercurycontaminatedsoils[J].RemediationJournal,2000,10(4):49-56.
[46]KLASSONKT,KORANLJ,GATESDD,etal.Removalofmercuryfromsolidsusingthepotassiumiodide/iodineleachingprocess[R].OakRidge:Oakridgenationallab,1997.
[47]MARRUGONEGRETEJ,MARRUGOMADRIDS,PINEDOHERNERNNDEZJ,etal.ScreeningofnativeplantspeciesforphytoremediationpotentialataHg-contaminatedminingsite[J].SciTotalEnviron,2016,542:809-816.
[48]ALIH,KHANE,SAJADMA.PhytoremediationofheavymetalsConceptsandapplications[J].Chemosphere,2013,91(7):869-881.
[49]ASHRAFS,ALIQ,ZAHIRZA,etal.Phytoremediation:Environmentallysustainablewayforreclamationofheavymetalpollutedsoils[J].EcotoxicologyandEnvironmentalSafety,2019,174:714-727.
[50]TAMASMT,MARTINOIAE.Molecularbiologyofmetalhomeostasisanddetoxification[M].BerlinHeidelberg:Springer,2006:299-340.
[51]XUJ,BRAVOAG,LAGERKVISTA,etal.Sourcesandremediationtechniquesformercurycontaminatedsoil[J].EnvironmentInternational,2015,74:42-53.
[52]GRIBOFFJ,WUNDERLINDA,MONFERRANMV.PhytofiltrationofAs3+,As5+,andHgbytheaquaticmacrophytePotamogetonpusillusL.,anditspotentialuseinthetreatmentofwastewater[J].InternationalJournalofPhytoremediation,2018,20:914-921.
[53]侯静,姜华,关晓欢,等.汞抗性花卉的筛选与牵牛对汞胁迫的响应[J].大连交通大学学报,2012,33(1):83-88,93.
[54]GOMESMVT,SOUZARRD,TELESVS,etal.PhytoremediationofwatercontaminatedwithmercuryusingTyphadomingensisinconstructedwetland[J].Chemosphere,2013,103(5):228-233.
[55]WANGJX,FENGXB,ANDERSONCWN,etal.Ammoniumthio-sulphateenhancedphytoextractionfrommercurycontaminatedsoil:resultsfromagreenhousestudy[J].JournalofHazardousMaterials,2011,186(1):119-127.
[56]LIUZC,WANGLA,DINGSM,etal.Enhancerassisted-phytoremediationofmercury-contaminatedsoilsbyOxaliscorniculateL.,andrhizospheremicroorganismdistributionofOxaliscorniculateL.[J].EcotoxicologyandEnvironmentalSafety,2018,160:171-177.
[57]WANGJX,FENGXB,ANDERSONCWN,etal.Remediationofmercurycontaminatedsites—Areview[J].JournalofHazardousMaterials,2012,221(1):1-18.
[58]USEPA.Treatmenttechnologiesformercuryinsoil,waste,andwater[M].WashingtonDC:USEPA,2007.
[59]SINHAA,KHARESK.MercurybioremediationbymercuryaccumulatingEnterobactersp.cellsanditsalginateimmobilizedapplication[J].Biodegradation,2012,23(1):25-34.
[60]TOMS,JUSTINR.Earthwormsacceleratethebiogeochemicalcyclingofpotentiallytoxicelements:Resultsofameta-analysis[J].SoilBiologyandBiochemistry,2020,148(prepublish).
[61]SIZMURT,HODSONME.Doearthwormsimpactmetalmobilityandavailabilityinsoil—Areview[J].EnvironmentalPollution,2009,157(7):1981-1989.
[62]陈旭飞,张池,高云华,等.蚯蚓在重金属污染土壤生物修复中的应用潜力[J].生态学杂志,2012,31(11):2950-2957.
[63]刘钊钊,黄沈发,唐浩.蚯蚓活动对汞污染土壤植物修复效果的影响[J].环境污染与防治,2018,40(8):866-869,874.
[64]EAPENS,DSOUZASF.Prospectsofgeneticengineeringofplantsforphytoremediationoftoxicmetals[J].BiotechnologyAdvances,2005,23:97-114.
[65]MEAGHERR.Phytoremediationoftoxicelementalandorganicpollutants[J].CurrentOpinioninPlantBiology,2000,3(2):153-162.
[66]ROJASLA,YANEZC,GONZALEZM,etal.Characterizationofthemetabolicallymodifiedheavymetal-resistantcupriavidusmetallicduransStrainMSR33generatedformercurybioremediation[J].PlosOne,2011,6(3):e17555.
[67]王萌,陈世宝,李娜,等.纳米材料在污染土壤修复及污水净化中应用前景探讨[J].中国生态农业学报,2010,18(2):434-439.
[68]GONGYY,LIUYY,XIONGZ,etal.Immobilizationofmercuryinfieldsoilandsedimentusingcarboxymethylcellulosestabilizedironsulfidenanoparticles[J].Nanotechnology,2012,23(29):294007.