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Titlebook: Ion Exchange Advances; Proceedings of IEX ’ M. J. Slater Conference proceedings 1992 United Kingdom Atomic Energy Authority & SCI 1992 Down

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發(fā)表于 2025-3-21 17:18:35 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Ion Exchange Advances
副標(biāo)題Proceedings of IEX ’
編輯M. J. Slater
視頻videohttp://file.papertrans.cn/476/475162/475162.mp4
圖書封面Titlebook: Ion Exchange Advances; Proceedings of IEX ’ M. J. Slater Conference proceedings 1992 United Kingdom Atomic Energy Authority & SCI 1992 Down
描述This volume contains the papers presented at the Sixth International Ion Exchange Conference organised by the SCI and held at Churchill College, Cambridge, UK, in July 1992. As on previous occasions, most recently in 1988, the organising committee did not engage plenary speakers but decided to solicit state-of-the-art contributions from the ion exchange community. This book contains the refereed papers presented at the meeting, whether in poster or oral form. Extra papers were presented at the meeting as posters because they were not available in time for refereeing purposes. The subject matter of the meeting and therefore the contents of the book is subdivided into seven separate topic areas as follows: resin developments; water treatment; fundamentals; biotechnology, food and pharmaceuticals; environmental and pollution control; membranes, inorganic materials and nuclear; and hydrometallurgy. The coverage of the meeting is similar to 1988 although there are fewer subdivisions on this occasion. The more restricted coverage this time reflects the smaller number of papers offered by authors. This is probably due to the world- wide industrial recession which has affected commercial d
出版日期Conference proceedings 1992
關(guān)鍵詞Downstream Processing; Fermentation; Filtration; amines; arsenic compounds; plants; polymer; preparation; pr
版次1
doihttps://doi.org/10.1007/978-94-011-2864-3
isbn_ebook978-94-011-2864-3
copyrightUnited Kingdom Atomic Energy Authority & SCI 1992
The information of publication is updating

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Comb-Like Polyethylene Oxide Polymers as Chelating Agents for Mercuric (II) Chloride: Study of The Cght , the type of end groups and the solvent. To take advantage of this unique property, the synthesis of hydrogels by polymerization of acrylates or methacrylates of short PEO chains (macromers) is carried out and the formation of mercuric complexes is discussed. The stoichiometry of the different
板凳
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Preparation and Chromate Selectivity of Weakly Basic Ion Exchangers Based on Macroporous Polyacrylonse ion exchange resins. Capacities up to 7.6 meq/g were obtained with diethylenetriamine. The resins are resistant to attack by acidic or alkaline chromate solutions. They are selective for Cr(VI) over sulfate and chloride, although less so than commercial strong base resins. Because of their stabil
地板
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Comparison of Strong Base Resin Typesnolamine (Type-III) and N,N dimethyl-isopropanolamine (Type-IIIiso). These lesser known resins have been compared with the established resins. Type-II resins are often preferred to the original Type-I resins, because of higher regeneration efficiency. Their main drawbacks are poorer silica removal a
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The Properties and Advantages of Uniform Particle Size Ion Exchange Resinsese resins over conventional (polydisperse) resins is explained in terms of their kinetic and physical properties and their improved performance demonstrated by comparitive tests. Application of these resins in three major areas is described: (i) water softening, (ii) water demineralisation and (iii
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The Separation Of Component Ion Exchange Resins of Narrow Size Grading in Mixed Bed Exchangers, and arations, it is important to eliminate residual attraction between beads, and to reduce hindered settling. The use of resin density difference between the component resins, rather than particle size difference, can result in superior performance.
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發(fā)表于 2025-3-23 05:45:29 | 只看該作者
Improvements in Regeneration, Resin Separations, Resin Residuals Removal in Condensate Polishingions, resin and chemical cross contamination, resin residuals removals, and excessive use of regenerants will be reviewed. utilities and semi-conductor manufacturers require more stringent performance in respect to obtaining lower residuals or leakages below 0.1 pg/L. An economical improved Four Tan
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