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    date : 2015-05-20 01:10|hit : 375
    Article] Industrial application of green chromatography-I. Separation and analysis of niacinamide in skincare creams using pure water as the mobile phase
    DocNo of ILP: 2105

    Doc. Type: Article

    Title: Industrial application of green chromatography-I. Separation and analysis of niacinamide in skincare creams using pure water as the mobile phase

    Authors: Yanga, Y; Strickland, Z; Kapalavavi, B; Marple, R; Gamsky, C

    Full Name of Authors: Yanga, Yu; Strickland, Zackary; Kapalavavi, Brahmam; Marple, Ronita; Gamsky, Chris

    Keywords by Author: Pure water chromatography; High-temperature water chromatography; Subcritical water chromatography; HPLC; Niacin; Niacinamide; 4-Acetamidophenol; Skincare cream; Industrial application; Procter & Gamble

    Keywords Plus: TEMPERATURE LIQUID-CHROMATOGRAPHY; FLAME IONIZATION DETECTION; SUBCRITICAL WATER; SUPERHEATED WATER; STATIONARY PHASES; ACID; HPLC; HYDROCARBONS; EXTRACTION; ABSORBENCY

    Abstract: In this work, chromatographic separation of niacin and niacinamide using pure water as the sole component in the mobile phase has been investigated. The separation and analysis of niacinamide have been optimized using three columns at different temperatures and various flow rates. Our results clearly demonstrate that separation and analysis of niacinamide from skincare products can be achieved using pure water as the eluent at 60 degrees C on a Waters XTerra MS C18 column, a Waters XBridge C18 column, or at 80 degrees C on a Hamilton PRP-1 column. The separation efficiency, quantification quality, and analysis time of this new method are at least comparable with those of the traditional HPLC methods. Compared with traditional HPLC, the major advantage of this newly developed green chromatography technique is the elimination of organic solvents required in the HPLC mobile phase. In addition, the pure water chromatography separations described in this work can be directly applied in industrial plant settings without further modification of the existing HPLC equipment. (c) 2011 Elsevier B.V. All rights reserved.

    Cate of OECD: Chemical sciences

    Year of Publication: 2011

    Business Area: other

    Detail Business: medicine & science

    Country: Netherlands

    Study Area:

    Name of Journal: TALANTA

    Language: English

    Country of Authors: [Yanga, Yu; Strickland, Zackary; Kapalavavi, Brahmam] E Carolina Univ, Dept Chem, Greenville, NC 27858 USA; [Marple, Ronita; Gamsky, Chris] Procter & Gamble Co, Global Analyt Capabil Org, Cincinnati, OH 45241 USA

    Press Adress: Yanga, Y (reprint author), E Carolina Univ, Dept Chem, Greenville, NC 27858 USA.

    Email Address: yangy@ecu.edu

    Citaion:

    Funding: Procter Gamble Company; Golden LEAF Foundation

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    Number of Citaion: 35

    Publication: ELSEVIER SCIENCE BV

    City of Publication: AMSTERDAM

    Address of Publication: PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS

    ISSN: 0039-9140

    29-Character Source Abbreviation: TALANTA

    ISO Source Abbreviation: Talanta

    Volume: 84

    Version: 1

    Start of File: 169

    End of File: 174

    DOI: 10.1016/j.talanta.2010.12.044

    Number of Pages: 6

    Web of Science Category: Chemistry, Analytical

    Subject Category: Chemistry

    Document Delivery Number: 734OC

    Unique Article Identifier: WOS:000288342400027

    [ÀÌ °Ô½Ã¹°Àº HyeJung Mo¡¦´Ô¿¡ ÀÇÇØ 2015-05-20 14:26:05 GAMBLING¿¡¼­ À̵¿ µÊ]
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