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biorad ag50w x8  (Bio-Rad)


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    Structured Review

    Bio-Rad biorad ag50w x8
    Biorad Ag50w X8, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 2261 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/biorad+ag50w+x8/AG+50W-X8+Cation+Exchange+Resin/10__5382_slash_econgeo__5154-119-5-5
    Average 96 stars, based on 2261 article reviews
    biorad ag50w x8 - by Bioz Stars, 2026-09
    96/100 stars

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    other:

    Article Title: Timescales of magma ascent and degassing and the role of crustal assimilation at Merapi volcano (2006–2010), Indonesia: Constraints from uranium-series and radiogenic isotopic compositions
    Article Snippet: Sr and REE 307 fractions were separated using a cationic column containing Biorad® AG50W-X8 (200-400 308 mesh) cationic exchange resin, after which Sm and Nd were separated using EIChrom® LN-309 spec resin following the column procedure given by Pin et al. (1997).

    Article Title: Identification and prediction of mixed water sources in adjacent limestone aquifers based on conventional hydrochemistry and strontium isotopes
    Article Snippet: 1 Anhui Province Intelligent Underground Exploration and Environmental Geotechnical Engineering Research Center, College of Civil Engineering, Anhui Jianzhu University, Hefei 230601, Anhui, China.. 2 Shaanxi Key Laboratory of Prevention and Control Technology for Coal Mine Water Hazard, Xian 710061, Shanxi, China.. 3 School of Architecture and Urban Planning, Anhui Jianzhu University, Hefei 230601, Anhui, China.

    Article Title: Resetting of Mg isotopes between calcite and dolomite during burial metamorphism: Outlook of Mg isotopes as geothermometer and seawater proxy
    Article Snippet: The first stage ion exchange procedure is the same as the reported procedure used for K isotope analysis (Li et al., 2016b), that a sample dissolved in 0.5 mL 1.5N HNO3 was loaded onto a quartz glass column that contained 1 mL Biorad cation exchange resin AG50W-X12 (100-200 mesh), and eluted using 1.5N HNO3 to remove Ca, Na, Al and other cations from Mg. For the second stage column chemistry, the samples were dissolved in 0.5 mL mixed acid (0.2N HNO3 + 0.05N HF) and loaded onto a custom-made Teflon column that contained 0.2 mL Biorad AG50W-X8 (100-200 mesh) cation exchange resin, the resin was successively eluted using the mixed acid (0.2N HNO3 + 0.05N HF), 1N HNO3, and 1.5N HNO3 to remove K, Ti and remanent Na, Al. After these two column treatments, matrix elements were less than 1% of Mg and recovery was greater than 95%.

    Article Title: The timing of prograde metamorphism in the Pontiac Subprovince, Superior craton; implications for Archean geodynamics and gold mineralization
    Article Snippet: Accepted Manuscript The Timing and Extent of Prograde Metamorphism in the Pontiac Subprovince, Superior Craton; Implications for Archean Geodynamics and Gold Mineralization Nicolas Piette-Lauzière, Carl Guilmette, Audrey Bouvier, Stéphane Perrouty, Pierre Pilote, Nicolas Gaillard, Philip Lypaczewski, Robert L. Linnen, Gema R. Olivo PII: S0301-9268(18)30288-2 DOI: https://doi.org/10.1016/j.precamres.2018.10.016 Reference: PRECAM 5196 To appear in: Precambrian Research Received Date: 25 May 2018 Revised Date: 23 October 2018 Accepted Date: 30 October 2018 Please cite this article as: N. Piette-Lauzière, C. Guilmette, A. Bouvier, S. Perrouty, P. Pilote, N. Gaillard, P. Lypaczewski, R.L.. Linnen, G.R.. Olivo, The Timing and Extent of Prograde Metamorphism in the Pontiac Subprovince, Superior Craton; Implications for Archean Geodynamics and Gold Mineralization, Precambrian Research (2018), doi: https://doi.org/10.1016/j.precamres.2018.10.016 This is a PDF file of an unedited manuscript that has been accepted for publication.

    Article Title: Lithium Inventory of the Cerro Galán Volcanic System (Argentina): The Role of Magmatism as a Source for Li-Bearing Brine Deposits
    Article Snippet: The first stage used a BioRad AG50W-X8 (mesh 200–400) cation-exchange resin in 2.1-mL columns, employing an 80% methanol-1 M HNO3 mixture for Li elution.

    Isolation:

    Article Title: Mantle flow, volatiles, slab-surface temperatures and melting dynamics in the north Tonga arc-Lau back-arc basin
    Article Snippet: .. Samples analyzed for Sr and Nd isotopes at Macquarie University (ND40, ND58, ND67) were dissolved using a HF-HNO3 mix in Teflon beakers at 180 C. Sr was isolated by a single pass through Teflon columns containing Biorad® AG50W-X8 (200–400 mesh) cationic exchange resin. .. The Nd fraction was purified using EIChrom® LN-spec resin according to the method of Pin and Zalduegui [1997].

    Chromatography:

    Article Title: High 3 He/ 4 He in central Panama reveals a distal connection to the Galápagos plume
    Article Snippet: These included a two-pass Pb separation and cleanup using 100-μl Teflon microcolumns filled with BIORAD © AG 1 × 8 (100 to 200 mesh) resin that equilibrated with 1 M HBr for highest Pb retention and from which Pb is released with 1 mL 6N HCl. .. The rest of the sample collected during Pb chromatography was then loaded in 2.5N HCl into 6-mL quartz glass columns filled with BIORAD © AG50W-X8 (100 to 200 mesh) resin to separate Sr. ..



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    Ion chromatography procedure for group separation of REE in this study, modified from <xref ref-type= Tanaka et al. (2018) ." width="250" height="auto" />
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    Image Search Results


    Ion chromatography procedure for group separation of REE in this study, modified from <xref ref-type= Tanaka et al. (2018) ." width="100%" height="100%">

    Journal: Frontiers in Chemistry

    Article Title: Development of an analytical method for accurate and precise determination of rare earth element concentrations in geological materials using an MC-ICP-MS and group separation

    doi: 10.3389/fchem.2022.906160

    Figure Lengend Snippet: Ion chromatography procedure for group separation of REE in this study, modified from Tanaka et al. (2018) .

    Article Snippet: Cation-exchange resin Biorad ® AG50W-X8 (200–400 mesh) and 2-hydroxyisobutric acid (HIBA, Tokyo Chemical Industry Co., LTD.) were used for the REE concentration and group separation.

    Techniques: Ion Chromatography, Modification

    Ion chromatography procedure for group separation of REE in this study, modified from <xref ref-type= Tanaka et al. (2018) ." width="100%" height="100%">

    Journal: Frontiers in Chemistry

    Article Title: Development of an analytical method for accurate and precise determination of rare earth element concentrations in geological materials using an MC-ICP-MS and group separation

    doi: 10.3389/fchem.2022.906160

    Figure Lengend Snippet: Ion chromatography procedure for group separation of REE in this study, modified from Tanaka et al. (2018) .

    Article Snippet: Each separated REE group was clear and had no tailing of the neighboring fractions during measurement by using the MC-ICP-MS. Two-step cation-exchange column chromatographic processes using Biorad AG50W X-8 resin (200–400 mesh) and diluted HCl and HIBA solutions are summarized in .

    Techniques: Ion Chromatography, Modification