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4篇 您的检索式:作者名="Shigeshi"
    题名 作者 年代 出处 被引量
1Suppressive Effects of Interleukin-18 on Liver Function in Rat Liver Allografts显示文摘Shigeshi Ono Hideaki Obara Atsushi Takayanagi Minoru Tanabe Shigeyuki Kawachi Osamu Itano Masahiro Shinoda Minoru Kitago Taizo Hibi Tomohiro Chiba Wenlin Du Kenji Matsumoto Arno W. Tilles Martin L. Yarmush Sadakazu Aiso Nobuyoshi Shimizu Michiie Sakamoto 2012Journal of Surgical Research2012,,1:1
2Protective Effect of High-Mobility Group Box 1 Blockade on Acute Liver Failure in Rats显示文摘Kiminori Takano Masahiro Shinoda Minoru Tanabe Taku Miyasho Shingo Yamada Shigeshi Ono Yohei Masugi Koichi Suda Koichi Fukunaga Tetsu Hayashida Taizo Hibi Hideaki Obara Hiroya Takeuchi Shigeyuki Kawachi Kazufumi Kawasako Minoru Okamoto Hiroshi Yokota Ikur 2010Shock2010,,6:1
3Significant correlation of recruitable coronary collateral blood fiow determined by coronary wedge pressure with STsegment elevation during coronary occlusion显示文摘Shigeshi Kamikawa Kohichiro Lwasaki Keizo Yamamoto 2005Coronary Artery Disease2005,16,:1
4Coprecipitation mechanisms of Zn by birnessite formation and its mineralogy under neutral pH conditions显示文摘Birnessite(δ-Mn(IV)O_(2))is a great manganese(Mn)adsorbent for dissolved divalent metals.In this study,we investigated the coprecipitation mechanism of δ-MnO_(2) in the presence of Zn(II)and an oxidizing agent(sodium hypochlorite)under two neutral pH values(6.0 and 7.5).Themineralogical characteristics and Zn–Mn mixed products were compared with simple surface complexation by adsorption modeling and structural analysis.Batch coprecipitation experiments at different Zn/Mn molar ratios showed a Langmuir-type isotherm at pH 6.0,which was similar to the result of adsorption experiments at pH 6.0 and 7.5.X-ray diffraction and X-ray absorption fine structure analysis revealed triple-corner-sharing innersphere complexation on the vacant sites was the dominant Zn sorption mechanism on δ-MnO_(2) under these experimental conditions.A coprecipitation experiment at pH 6.0 produced some hetaerolite(ZnMn(Ⅲ)_(2)O_(4))and manganite(γ-Mn(Ⅲ)OOH),but only at low Zn/Mn molar ratios(<1).These secondary precipitates disappeared because of crystal dissolution at higher Zn/Mn molar ratios because they were thermodynamically unstable.Woodruffite(ZnMn(IV)_(3)O_(7)•2H_(2)O)was produced in the coprecipitation experiment at pH 7.5 with a high Zn/Mn molar ratio of 5.This resulted in a Brunauer–Emmett–Teller(BET)-type sorption isotherm,in which formation was explained by transformation of the crystalline structure ofδ-MnO_(2) to a tunnel structure.Our experiments demonstrate that abiotic coprecipitation reactions can induce Zn–Mn compound formation on theδ-MnO_(2) surface,and that the pH is an important controlling factor for the crystalline structures and thermodynamic stabilities.Shota Tajima Shigeshi Fuchida Chiharu Tokoro 2022Journal of Environmental Sciences2022,34,11:0
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