Novel Platinum-Nickel Composite Trap for Simultaneous and Direct Determination of Mercury and Cadmium in Soil and Its Mechanism Study.
暂无分享,去创建一个
[1] Jianguo Jiang,et al. Evaluation of various microwave-assisted acid digestion procedures for the determination of major and heavy metal elements in municipal solid waste incineration fly ash , 2021, Journal of Cleaner Production.
[2] Guoying Chen,et al. Review of Miniaturized and Portable Optical Emission Spectrometry Based on Microplasma for Elemental Analysis , 2021, TrAC Trends in Analytical Chemistry.
[3] Xuefei Mao,et al. Analytical Methodologies for Agrometallomics: A Critical Review. , 2021, Journal of agricultural and food chemistry.
[4] Zhuohan Li,et al. Soil heavy metal pollution and food safety in China: Effects, sources and removing technology. , 2020, Chemosphere.
[5] Kestutis G. Bendinskas,et al. Linking metal (Pb, Hg, Cd) industrial air pollution risk to blood metal levels and cardiovascular functioning and structure among children in Syracuse, NY. , 2020, Environmental research.
[6] W. Fu,et al. Risk assessment, spatial patterns and source apportionment of soil heavy metals in a typical Chinese hickory plantation region of southeastern China , 2020 .
[7] Xue Yang,et al. Beyond mere pollution source identification: Determination of land covers emitting soil heavy metals by combining PCA/APCS, GeoDetector and GIS analysis , 2020 .
[8] X. Hou,et al. Recent trends in atomic fluorescence spectrometry towards miniaturized instrumentation-A review. , 2018, Analytica chimica acta.
[9] Guoying Chen,et al. In Situ Dielectric Barrier Discharge Trap for Ultrasensitive Arsenic Determination by Atomic Fluorescence Spectrometry. , 2018, Analytical chemistry.
[10] D. Beauchemin,et al. Solid sampling ETV-ICPOES coupled to a nebulization/pre-evaporation system for direct elemental analysis of glutinous rice by external calibration with standard solutions. , 2017, Food chemistry.
[11] Christopher P. Rhodes,et al. Tuning the Oxygen Reduction Activity and Stability of Ni(OH) 2 @Pt/C Catalysts through Controlling Pt Surface Composition, Strain, and Electronic Structure , 2017 .
[12] Guoying Chen,et al. Ambient-Temperature Trap/Release of Arsenic by Dielectric Barrier Discharge and Its Application to Ultratrace Arsenic Determination in Surface Water Followed by Atomic Fluorescence Spectrometry. , 2016, Analytical chemistry.
[13] Xiaogang Hao,et al. Electrochemical activity and stability of core-shell Fe 2 O 3 /Pt nanoparticles for methanol oxidation , 2013 .
[14] Yong Chen,et al. Assessment and source identification of trace metals in the soils of greenhouse vegetable production in eastern China. , 2013, Ecotoxicology and environmental safety.
[15] Janez Levec,et al. Catalytic surface development of novel nickel plate catalyst with combined thermally annealed platinum and alumina coatings for steam methane reforming , 2013 .
[16] V. Karanassios,et al. Micro- and nano-volume samples by electrothermal, near-torch vaporization sample introduction using removable, interchangeable and portable rhenium coiled-filament assemblies and axially-viewed inductively coupled plasma-atomic emission spectrometry , 2012 .
[17] C. Zheng,et al. A compact electrothermal-flame tandem atomizer for highly sensitive atomic fluorescence spectrometry , 2012 .
[18] S. Horiuchi,et al. Platinum colloid catalyzed etchingless gold electroless plating with strong adhesion to polymers , 2010 .
[19] Marianela Savio,et al. Study of matrix effects and spectral interferences in the determination of lead in sediments, sludges and soils by SR-ETAAS using slurry sampling. , 2010, Talanta.
[20] Jixin Liu,et al. Solid sampling graphite fibre felt electrothermal atomic fluorescence spectrometry with tungsten coil atomic trap for the determination of cadmium in food samples , 2010 .
[21] R. Dobrowolski,et al. Determination of tin in marine sediments by slurry sampling atomic absorption spectrometry with electrothermal atomization using a permanent modifier , 2010 .
[22] B. Welz,et al. Simultaneous determination of Cd and Fe in beans and soil of different regions of Brazil using high-resolution continuum source graphite furnace atomic absorption spectrometry and direct solid sampling. , 2009, Journal of agricultural and food chemistry.
[23] I. López-García,et al. Determination of traces of lead and cadmium using dispersive liquid-liquid microextraction followed by electrothermal atomic absorption spectrometry , 2009 .
[24] Á. Molina,et al. Potential step chronoamperometry at hemispherical mercury electrodes: The formation of thallium amalgams and the measurement of the diffusion coefficient of thallium in mercury , 2008 .
[25] J. Żukowska,et al. Methodological evaluation of method for dietary heavy metal intake. , 2008, Journal of food science.
[26] Bin Hu,et al. Dispersive liquid phase microextraction (DLPME) combined with graphite furnace atomic absorption spectrometry (GFAAS) for determination of trace Co and Ni in environmental water and rice samples. , 2008, Talanta.
[27] S. Cadore,et al. Determination of trace elements in liquid aspartame sweeteners by ICP OES and ICP-MS following acid digestion , 2007 .
[28] T. Laitinen,et al. Adsorption of mercury on gold and silver surfaces , 1999 .