Jonathan E. Strivens
Pacific Northwest National Laboratory
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Featured researches published by Jonathan E. Strivens.
RSC Advances | 2015
Horng-Bin Pan; Li-Jung Kuo; Jordana R. Wood; Jonathan E. Strivens; Gary A. Gill; Christopher J. Janke; Chien M. Wai
Conditioning of polymer fiber adsorbents grafted with amidoxime and carboxylic acid groups is necessary to make the materials hydrophilic for sequestering uranium from seawater. Spectroscopic techniques were employed to study the effectiveness of the traditional KOH conditioning method (2.5% KOH at 80 °C) on recently developed high-surface-area amidoxime-based polymer fiber adsorbents developed at Oak Ridge National Laboratory. FTIR spectra reveal that the KOH conditioning process removes the proton from the carboxylic acids and also converts the amidoxime groups to carboxylate groups in the adsorbent. With prolonged KOH treatment (>1 h) at 80 °C, physical damage to the adsorbent material occurs which can lead to a significant reduction in the adsorbents uranium adsorption capability in real seawater during extended exposure times (>21 days). The physical damage to the adsorbent can be minimized by lowering the KOH conditioning temperature. For high-surface-area amidoxime-based adsorbents, 20 min of conditioning in 2.5% KOH at 80 °C or 1 h of conditioning in 2.5% KOH at 60 °C appears sufficient to achieve de-protonation of the carboxylic acid with minimal harmful effects to the adsorbent material. The use of NaOH instead of KOH can also reduce the cost of the base treatment process required for conditioning the amidoxime-based sorbents with minimal loss of adsorption capacity (≤7%).
Industrial & Engineering Chemistry Research | 2016
Gary A. Gill; Li-Jung Kuo; Chris Janke; Jiyeon Park; Robert T. Jeters; George T. Bonheyo; Horng-Bin Pan; Chien Wai; Tarang Khangaonkar; Laura Bianucci; Jordana R. Wood; Marvin G. Warner; Sonja M. Peterson; David G. Abrecht; Richard T. Mayes; Costas Tsouris; Yatsandra Oyola; Jonathan E. Strivens; Nicholas J. Schlafer; R. Shane Addleman; Wilaiwan Chouyyok; Sadananda Das; Jungseung Kim; Ken O. Buesseler; Crystal Breier; Evan D’Alessandro
Industrial & Engineering Chemistry Research | 2016
Horng-Bin Pan; Li-Jung Kuo; Chien M. Wai; Naomi Miyamoto; Ruma Joshi; Jordana R. Wood; Jonathan E. Strivens; Christopher J. Janke; Yatsandra Oyola; Sadananda Das; Richard T. Mayes; Gary A. Gill
Industrial & Engineering Chemistry Research | 2016
Li-Jung Kuo; Christopher J. Janke; Jordana R. Wood; Jonathan E. Strivens; Sadananda Das; Yatsandra Oyola; Richard T. Mayes; Gary A. Gill
Industrial & Engineering Chemistry Research | 2016
Jiyeon Park; Gary A. Gill; Jonathan E. Strivens; Li Jung Kuo; Robert T. Jeters; Andrew Avila; Jordana R. Wood; Nicholas J. Schlafer; Christopher J. Janke; Erin A. Miller; Mathew Thomas; R. Shane Addleman; George T. Bonheyo
Industrial & Engineering Chemistry Research | 2016
Jordana R. Wood; Gary A. Gill; Li-Jung Kuo; Jonathan E. Strivens; Key-Young Choe
Industrial & Engineering Chemistry Research | 2016
Jiyeon Park; Robert T. Jeters; Li-Jung Kuo; Jonathan E. Strivens; Gary A. Gill; Nicholas J. Schlafer; George T. Bonheyo
Industrial & Engineering Chemistry Research | 2017
Austin Ladshaw; Li-Jung Kuo; Jonathan E. Strivens; Jordana R. Wood; Nicholas J. Schlafer; Sotira Yiacoumi; Costas Tsouris; Gary A. Gill
Industrial & Engineering Chemistry Research | 2017
Li-Jung Kuo; Horng-Bin Pan; Chien M. Wai; Margaret Flicker Byers; Erich Schneider; Jonathan E. Strivens; Christopher J. Janke; Sadananda Das; Richard T. Mayes; Jordana R. Wood; Nicholas J. Schlafer; Gary A. Gill
Journal of Radioanalytical and Nuclear Chemistry | 2016
Martin E. Keillor; Leah M. Arrigo; Jill M. Brandenberger; Janet M. Cloutier; Gregory C. Eiden; J. E. Fast; Zachary S. Finch; Gary A. Gill; Todd W. Hossbach; Cory T. Overman; Brienne N. Seiner; Jonathan E. Strivens