[1]SCHIPPERSA,HEDRICHS,VASTERSJ,etal.Biomining:Metalrecoveryfromoreswithmicroorganisms[J].AdvBiochemEngBiotechnol,2014,141:1-47.
[2]MARIOV,AXELS,SABRINAH,etal.Progressinbioleaching:Fundamentalsandmechanismsofmicrobialmetalsulfideoxidation-partA[J].AppliedMicrobiologyandBiotechnology,2022,106:6933-6952.
[3]高金昌.生物冶金技术在黄金工业生产中的应用现状及发展趋势[J].黄金,2008,29(10):36-40.
[4]SANDW,GEHRKET,JOZSAPG.SchippersA(Bio)chemistryofbacterialleaching-directvs.indirectbioleaching[J].Hydrometallurgy,2001,59:159-175.
[5]TRIBUTSCHH.Directversusindirectbioleaching[J].Hydrometallurgy,2001,59(2/3):177-185.
[6]ROHWERDERT,GEHRKT,KINZLEK,etal.BioleachingreviewpartA:Progressinbioleaching:fundamentalsandmechanismsofbacterialmetalsulfideoxidation[J].ApplMicrobiolBiotechnol,2003,63:239-248.
[7]GOLYSHINAOV.Environmental,biogeographic,andbiochemicalpatternsofarchaeaofthefamilyFerroplasmaceae[J].AppliedandEnvironmentMicrobiology,2011,77:5071-5078.
[8]KONDRATEVAT,PIVOVAROVAT,TSAPLINAⅠ,etal.Diversityofthecommunitiesofacidophilicchemolithotrophicmicroorganismsinnaturalandtechnogenicecosystems[J].Microbiology,2012,81:1-24.
[9]黄海炼,黄明清,刘伟芳,等.生物冶金中浸矿微生物的研究现状[J].湿法冶金,2011,30(3):184-189.
[10]刘佳晨,刘金辉,徐玲玲,等.生物浸矿微生物群落结构研究进展[J].稀有金属,2021,45(10):1258-1268.
[11]李宏煦,王淀佐.生物冶金中的微生物及其作用[J].有色金属,2003,55(2):58-63.
[12]张磊,郭学益,田庆华,等.难处理金矿预处理方法研究进展及工业应用[J].黄金,2021,42(6):60-68.
[13]王文潜,邢启智.难浸金矿细菌预处理在北美的研究开发[J].黄金科学技术,1995,3(6):15-20.
[14]VANASWEGENPC,VANNIEKERKJ,OLIVIERW.TheBIOXTMprocessforthetreatmentofrefractorygoldconcentrates[M].Berlin:BerlinHeidelberg,2007:1-33.
[15]ENFORSSO,JAHICM,ROZKOVA,etal.Physiologicalresponsestomixinginlargescalebioreactors[J].Journalofbiotechnology,2001,85(2):175-185.
[16]CLARKME,BATTYJD,VANBUURENCB,etal.Biotechnologyinmineralsprocessing:Technologicalbreakthroughscreatingvalue[J].Hydrometallurgy,2006,83(1/2/3/4):3-9.
[17]黄强.难浸金矿石细菌氧化工艺应用的进展[J].国外黄金参考,2000(7/8):38-45.
[18]FRANCISCOF,ROBERTO,AXELS.Progressinbioleaching:PartB,applicationsofmicrobialprocessesbythemineralsindustries[J].AppliedMicrobiologyandBiotechnology,2022,106:5913-5928.
[19]兰兴华.金和基本金属生物浸出的新进展[J].世界有色金属,2002(5):28-31.
[20]姚国成,阮仁满,温建康.难处理金矿的生物预氧化技术及工业应用[J].矿产综合利用,2003(1):33-39.
[21]LIJF,YANGHY,TONGLL,etal.Someaspectsofindustrialheapbioleachingtechnology:Frombasicstopractice[J].MineralProcessingandExtractiveMetallurgyReview,2022,43(4):510-528.
[22]ROBERTOFF.Commercialheapbiooxidationofrefractorygoldores-RevisitingNewmont’ssuccessfuldeploymentatCarlin[J].MineralsEngineering,2017,106:2-6.
[23]YANGHL,KANGWL,ZHANGL,etal.Industrializationprogressofbioleachingtechnology(Ⅱ)[J].MordenMining,2010,4:6-10.
[24]涂博.高砷高硫难处理金矿提金新方法研究[D].武汉:武汉理工大学,2014.
[25]高军雷,伍红强,辛金秀,等.某高砷高硫难处理金矿生物氧化新工艺研究[J].现代矿业,2022,38(7):155-158.
[26]NATALYAV,FOMCHENKO.Two-stagebiochemicaloxidationofrefractorysulfideoreconcentratecontaininggold[J].Hydrometallurgy,2010,101(1/2):28-34.
[27]张玉秀,郭德庚,李媛媛,等.含砷难处理金精矿生物预氧化过程中砷价态的变化及其对细菌的影响[J].黄金科学技术,2017,25(4):106-112.
[28]ZHANGSQ,YANGHY,TONGLL,etal.Two-stagechemical-biologicaloxidationprocessforlow-graderefractorygoldconcentratewithhigharsenicandsulfur[J].MineralsEngineering,2023,191:107976.
[29]金世斌,马金瑞,郝福来.金精矿生物氧化过程中砷的氧化行为初探[J].黄金,2009,30(8):41-43.
[30]刘顺亮,李泽兵,史维浚,等.特殊离子对嗜酸性铁氧化混合菌活性的影响研究[J].稀有金属,2019,43(8):854-862.
[31]FANGD,ZHOULX.EffectofsludgedissolvedorganicmatteronoxidationofferrousironandsulfurbyAcidithiobacillusferrooxidansandAcidithiobacillusthiooxidans[J].WaterAirandSoilPollution,2006,171(1/2/3/4):81-94.
[32]卓文康,苏文瑶,王淡君,等.镉、锰、镍、铅对嗜酸氧化亚铁硫杆菌活性的影响[J].广东化工,2021,48(10):64-65.
[33]张成桂,张倩,王晶,等.阴离子对嗜酸氧化亚铁硫杆菌生长和硫氧化活性的影响[J].中国有色金属学报,2009,19(6):2237-2242.
[34]李倩,田彦文,李建中.生物氧化提金废水中的Fe、As共沉淀[J].化工环保,2010,30(6):520-522.
[35]陈亚静,杨洪英,佟琳琳,等.含砷矿石细菌氧化液除砷实验及砷钙渣稳定性研究[J].黄金科学技术,2018,26(1):124-129.
[36]段敏静,梁长利,许宝泉,等.生物提金氧化液中铁的选择性沉淀[J].黄金科学技术,2017,25(6):121-126.
[37]孙光勇,王卫亭,杨军,等.含砷金矿细菌氧化提金废渣综合回收砷[J].有色金属(冶炼部分),2011,12(4):11-14.
[38]HADIP,XUM,LINCSK,etal.Wasteprintedcircuitboardrecyclingtechniquesandproductutilization[J].JournalofHazardousMaterials,2015,283:234-243.
[39]张世镖,李健,赵国惠,等.废弃线路板中金属循环利用技术研究进展[J].黄金,2021,32(42):79-82.
[40]HUANGK,GUOJ,XUZ.Recyclingofwasteprintedcircuitboards:AreviewofcurrenttechnologiesandtreatmentstatusinChina[J].JournalofHazardousMaterials,2009,164:399-408.
[41]NIMJ,XIAOHX,CHIY,etal.Combustionandinorganicbromineemissionofwasteprintedcircuitboardsinahightemperaturefumace[J].WasteManagement,2012,32:568-574.
[42]郭学益,刘静欣,田庆华,等.有色金属复杂资源低温碱性熔炼原理与方法[J].有色金属科学与工程,2013,4(2):8-13.
[43]BIENTINESIM,PRTARCAL.Comparativeenvironmentalanalysisofwastebrominatedplasticthermaltreatments[J].WasteManagement,2009,29:1095-1102.
[44]张世镖,张修超,郝福来,等.一种含锡废料中锡的回收方法:CN201910937618.3[P].2019-12-27.
[45]张修超,张世镖,郝福来,等.一种从废旧电路板中回收稀贵金属的方法:CN202210030186.X[P].2022-04-08.
[46]邱冠周,刘学端.用生物技术的钥匙开启矿产资源利用的大门[J].中国有色金属学报,2019,29(9):1848-1858.
[47]李敏.生物冶金技术研究综述[J].山西冶金,2014,37(1):9-10.
[48]SEREDKINM,ZABOLOTSKYA,JEFFRESSG.Insiturecovery,analternativetoconventionalmethodsofmining:Exploration,resourceestimation,environmentalissues,projectevaluationandeconomics[J].OreGeologyReviews,2016,79:500-515.
[49]刘新星,王国华,谢建平,等.难处理含硫金精矿生物预氧化方法的强化工艺[J].中国有色金属学报,2015,25(8):2218-2225.
[50]崔日成.不同类型高砷难处理金矿的细菌氧化提金工艺研究[D].沈阳:东北大学,2011.