参考文献
[1] 黄秀莲.环境分析与监测[M].北京:高等教育出版社,1989:52-53.
[2] 刁维萍,倪吾钟,倪天华,等.水环境重金属污染的现状及其评价[J].广东微量元素科学,2004,11(3):1-5.
[3] 李娜.腙类衍生物金属离子荧光探针及单核苷酸多态性荧光检测[D].北京:清华大学,2010:12-13.
[4] Narayanaswamy N,Govindaraju T. Aldazine-based colorimetric sensors for Cu2+and Fe3+[J].Sensors and Actuators B,2012,161:304-310.
[5] Yang Y Y,Cheng T Y,Zhu W P,et al.Highly Selective and Sensitive Near-Infrared Fluorescent Sensors for Cadmium in Aqueous Solution[J]. Org Lett,2011,13(2):264-267.
[6] Dodani S C,He Q W,Chang C J.A Turn-On Fluorescent Sensor for Detecting Nickel in Living Cells[J].J Am Chem Soc,2009,131:18020-18021.
[7] Jeong Y,Yoon J. Recent progress on fluorescent chemosensor for metal ions[J].Inorg Chim Acta,2012,381:2-14.
[8] 周崇松,兰昌云,范必威,刘文宏.金属离子在生命过程中的作用机制[J].广州化学,2005,30(1):58-63.
[9] Dai X,Compton R G. Gold nanoparticle modified electrodes show a reduced interference by Cu(Ⅱ)in the detection of As(Ⅲ)using anodics tripping voltammetry[J].Electroanalysis,2005,17(14):1325-1330.
[10] 高廷耀,顾国维.水污染控制工程[M].北京:高等教育出版社,1999.
[11] Dai X,Nekrassova O,Hyde M E,Compton R G. Anodic stripping voltammetry of arsenic(Ⅲ)using gold nanoparticle-modified electrodes[J]. Analytical Chemistry,2004,76(19):5924-5929.
[12] Simm A O,Banks C E,Compton R G. The electrochemical detection of arsenic(Ⅲ)at a silver electrode[J].Eletroanalrsis,2005,17(19):1727-1733.
[13] Ioannidou M D,Zachariadis G A,Anthemidis A N,et al.Direct determination of toxic trace metals in honey and sugars using inductively coupled plasma atomic emission spectrometry[J].Talanta,2005,65(1):92-97.
[14] Karami H,Mousavi M F,Yamini Y,et al.On-line preconcentration and simultaneous determination of heavy metal ions by inductively coupled plasma-atomic emission spectrometry[J].Anal Chim Acta,2004,509(1):89-94.
[15] Faraji M,Yamini Y,Saleh Y,et al.A nanoparticle-based solid-phase extraction procedure followed by flow injection inductively coupled plasma-optical emission spectrometry to determine some heavy metal ions in water samples[J].Anal Chim Acta,2010,659(1-2):172-177.
[16] 伍娟,龚琦,杨黄,等.铬(Ⅲ)和铬(Ⅵ)的离子交换纤维柱分离和电感耦合等离子体原子发射光谱法测定[J].冶金分析,2010,30(2):23-29.
[17] 谈建安,黑文龙,黄兴华,等.泡塑吸附-电感耦合等离子体发射光谱法测定矿石中的金[J].岩石测试,2009,28(2):147-150.
[18] 倪文山,姚明星,张萍,等.电感耦合等离子体原子发射光谱法测定矿石样品中钨[J].冶金分析,2009,29(11):57-60.
[19] 邓继,陈国海,郑晓红,等.密闭微波消解ICP-AEP法测定大气颗粒物中金属元素[J].环境监测管理与技术,2009,21(1):28-32.
[20] 李海峰,林日强,谢小玲.ICP-AES法测定土壤中的有效铜、锌、铁、锰[J].广东农业科学,2009(4):76-79.
[21] 李银保,彭湘君,张道英,等.微波消解-火焰原子吸收光谱法测定冬虫夏草中的微量元素[J].光谱实验室,2009,26(3):599-6018.
[22] Bai Hua-hua,Zhou Qing-xiang,Xie Guo-hong,et al.Temperature-controlled ionic liquid-liquid-phase microextraction for the pre-concentration of lead from environmental samples prior to flame atomic absorption spectrometry[J].Talanta,2010,80(5):1638-1642.
[23] 林焰,林宇,张炯涛,等.石墨炉原子吸收法测定饮用水样中铅和铬[J].冶金分析,2001,21(5):55-57.
[24] 朱亚路,张立伟,李青石.石墨炉原子吸收法测定水中的砷[J].中国公共卫生,2004,20(6):754-754.
[25] Faouzia E H,Angel M R,Miguel G.Determination of total arsenic in soft drinks by hydride generation atomic fluorescence spectrometry[J].Food Chemistry,2007,105(3):1195-1200.
[26] Liu L W,Deng H,Wu L,et al.UV-induced carbonyl generation with formic acid for sensitive determination of nickel by atomic fluorescence spectrometry[J].Talanta,2010,80(3):1239-1244.
[27] 莫晓玲,张志.氢化物发生-原子吸收光谱法测定食品中总砷含量[J].食品研究与开发,2009,30(2):105-111.
[28] 李丹,于静,钱玉萍.氢化物发生原子荧光法测定陆地水中痕量砷[J].资源环境与工程,2009,23(3):327-333.
[29] 柳瑞明.氢化物发生-原子荧光法测定牛黄解毒片中可溶性砷的含量[J].海峡药学,2010,22(4):67-68.
[30] 洪俩和.氢化物发生-原子荧光光度法同时测定中草药中砷和汞的含量[J].海峡药学,2007,19(2):62-63.
[31] 史玮,吴岩,霍岩石.氢化物原子荧光法定稻谷中无机砷的研究[J].谷物化学与品质分析,2009,38(2):39-44.
[32] 唐莲仙,吴晓,郑绍成.氢化物发生-原子荧光光谱法测定白酒中的痕量铅[J].化学分析计量,2008,17(2):34-37.
[33] Pesavento M,Biesuz R,Baffi F,et al.Determination of metal ions concentration and speciation in sea water by titration with an iminodiacetic resin[J]. Anal Chim Acta,1999,401(1):265-276.
[34] 丘山,丘星初,黄曙明,沙志勇.EDTA络合滴定法测定镀镍溶液中的镍含量[J].电镀与涂饰,2002,47-49.
[35] 王瑞斌,刘步明,王高祥.EDTA减量滴定法快速测定废水中汞[J].非金属矿,2007,30(2):54-58.
[36] Dai Shi-jun,Zhang Xin-shen,Yu Ling-yun,et a.l The determination of trace lead in drinking water by flow injection spectrophotometry[J].Spectrochimica Acta Part A:Molecular and BiomolecularSpectroscopy,2010,75(1):330-333.
[37] Su Ling,Li Jian-guo,MA Hong-bing,et a.l Determination of trace amounts of manganese in natural waters by flow injection stopped-flow catalytic kinetic spectrophotometry[J].Anal Chim Acta,2004,522(2):281-288.
[38] Badocco D,Pastore P,Favaro G,et al.Effect of eluent composition and pH and chemiluminescent reagent pH on ion chromatographic selectivity and luminol-based chemiluminescence detection of Co2+,Mn2+and Fe2+at trace levels[J].Talanta,2009,72(1):249-255.
[39] 冯琳.流动注射-抑制化学发光法测定镱(Ⅲ)[J].分析试验室,2009,28(8):104-106.
[40] 崔英,吕建晓.溴酸钾-鲁米诺体系流动注射化学发光法测定铬(Ⅵ)[J].冶金分析,2009,29(12):25-28.
[41] 董学芝,赵海兰,艾天宗,等.催化电位滴定法测定铬鞣剂中铬(Ⅲ)[J].分析化学研究简报,2001,29(1):77-79.
[42] Clark A C,Scollary G R.Determination of total copper in white wine by stripping potentiometry utilising medium exchange[J].Analytica Chimica Acta,2000,413(1-2):25-32.
[43] Locatelli C.Voltammetric methods for the simultaneous determination of trace metals in foods,plant tissues and soils[J].Journal of the Science of Food and Agriculture,2007,87:305-312.
[44] Long J,Yukio N.Cathodic stripping voltammetric determination of As(Ⅲ)with in situ plated bismuth-film electrode using the catalytic hydrogen wave[J].Analytica Chimica Acta,2007,593(1):1-6.
[45] Arain M A,Wattoo F H,Wattoo M H S,et al.Simultaneous determination of metal ions as complexes of pentamethylene dithiocarbamate in indus river water[J].PakistanArabian Journal of Chemistry,2009,2(1):43-48.
[46] 姜春燕,王继英,仇满德,等.离子色谱法同时测定几种金属离子[J].理化检验-化学分册,2006,42(8):654-655.
[47] Jimnez M S,Velarte R,Castillo J R.Performance of different preconcentration columns used in sequential injection analysis and inductively coupled plasmamass spectrometry for multielemental determination in sea water[J]. Spectrochimica Acta Part B:Atomic Spectroscopy,2002,57B(3):391-402.
[48] 王华建,黎艳红,丰伟悦,等.反相离子对色谱-电感耦合等离子体质谱联用技术测定水中痕量Cr(Ⅲ)与Cr(Ⅵ)[J].分析化学,2009,37(3):433-436.
[49] 严秀平,尹学博,余莉萍.原子质谱联用技术[M].北京:化学工业出版社,2005:184-230.
[50] Koleva B D,Benkhedda K,Ivannoa E,et al.Determination of trace elements in natural waters by inductively coupled plasma time of flight mass spectrometry after flow injection preconcentration in a knotted reactor[J]. Talanta,2007,71(1):44-50.
[51] 吴宏,金焰,田野,等.流动注射编结反应器在线分离富集技术在原子光谱中的应用[J].分析化学,2007,35(6):905-911.