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Titlebook: Recent Developments in Mercury Science; David A. Atwood Book 2006 Springer-Verlag Berlin Heidelberg 2006 Cadmium.analytical chemistry.inor

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0081-5993 Overview: Presents critical reviews of the present position and future trends in modern chemical research concerned with chemical structure and bonding.Short and concise reports, each written by the world‘s ren978-3-642-06838-6978-3-540-34267-0Series ISSN 0081-5993 Series E-ISSN 1616-8550
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Probing Mercury Complex Speciation with Multinuclear NMR,ing to .Hg has been detected over as many as five bonds in coordination compounds with multidentate ligands permitting characterization of the species prevalent under slow ligand exchange conditions. In spite of geometric isomerization processes, these studies have enhanced the ability to relate δ. and .(.Hg.H) to structural trends.
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Mercury(II) Complexes with Thiacrowns and Related Macrocyclic Ligands,ddition, multinuclear NMR data on the complexes, with a particular attention to 199-Hg NMR,are included. Correlations between the ligand environment around the Hg(II) ion and 199-Hg NMR chemicalshifts are seen.
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Mercury Removal from Water,keted with the common name MetX, this ligand has been found effective in binding mercury in a variety of settings. This chapter will provide an overview of mercury removal technologies with an emphasis on the use of the new precipitant, MetX.
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Mercury Speciation in the Environment Using X-ray Absorption Spectroscopy,, and therefore can be used to study elementsin their complex original matrices. This method is ideal for the study of elements in soil, water,and biological tissue, without any prior chemical modification. Because speciation of mercury isquite dependent on the chemical environment, which includes f
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