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10篇 您的检索式:作者名="Chen Huanting"
    题名 作者 年代 出处 被引量
1The high-resolution climate recorded in the δ^(18)O of Porites lutea from the Nansha Islands of China显示文摘A Porites lutea core from Yongshu Reef of Nansha Islands covering 50 years growth history was ana-ly/ed for oxygen isotopic composition with monthly and seasonally resolution. The calibration of the δ18O with the instrumental temperature indicated that the coral δ18O is a good indicator for sea surface temperature (SST) and air temperature (t). It can be used to reconstruct the SST and air temperature of the Yongshu Reef sea area. In addition, the coral δ18O provides signatures for the intensity of the East Asia monsoon and it is a record for the activities of El Nino events. With the calibrated SST and air temperature formulas, the most recent fifty years SST and air temperature were reconstructed based on the coral δ18O, thus back up the understanding of the climate of Nansha Islands to 1950. far beyond the limit of the instrumental recording since September 1988. It was found that, in general, increasing 1℃ air temperature results in 0.24‰decrease in skeletal δ18O.YU Kefu, CHEN Tegu, HUANG Dingcheng, ZHAO Huanting, ZHONG Jinliang & LIU Dongsheng (LIU Tungsheng)South China Sea Institute of Oceanoiogy, Chinese Academy of Sciences. Guangzhou 510301, China:Geology and Geophysics Institute. Chinese Academy of Sciences, Beijing 100029, China 2001Chinese Science Bulletin2001,46,24:10
2Effect of oxygen plasma treatment on the nanofiltration performance of reduced graphene oxide/cellulose nanofiber composite membranes显示文摘Graphene based nanosheets have been widely used as building blocks for fabrication of superior separation membrane for water processing.In particular,membranes made of reduced graphene oxide(rGO)show better stability compared with graphene oxide(GO).However,densely stacked of rGO often results in low water flux.In this study,cellulose nanofibers(CNFs)were incorporated into the rGO laminates by vacuum filtration of dilute GO/CNF solution and thermal reduction at 150C for 1.5 h.The resulting rGO/CNF membrane was treated with oxygen plasma for 1–4 min to create nanopores on the membrane surface for the purpose of enhancing nano-filtration performance.The results showed that the optimum membrane performance was obtained by using the equal amount of GO(31.83 mg m^(-2))and CNFs accompanied by 3 min of plasma treatment,exhibiting a pure water permeance of 37.23.9 L m^(-2)h^(-1)bar^(-1)maintaining a rejection above 90%for Acid Fuchsin(1.2×1.1 nm),Rose Bengal(1.5×1.2 nm)and Brilliant Blue(2.2×1.7 nm).Shabin Mohammed Hanaa MHegab Ranwen Ou Shasha Liu Hongyu Ma Xiaofang Chen Tam Sridhar Huanting Wang 2021Green Chemical Engineering2021,2,1:3
3A New Noncontact Method for the Prediction of Both Internal Thermal Resistance and Junction Temperature of White Light- Emitting Diodes显示文摘Tao Xuehui Chen Huanting Li Sinan Hui S Y R 2012IEEE Transactions on Power Electronics2012,27,4:1
4Yangtze River of China: historical analysis of discharge variability and sediment flux显示文摘Zhongyuan Chen Jiufa Li Huanting Shen Wang Zhanghua 2001Geomorphology2001,,2:1
5Synthesis, morphology control, and properties of porous metal–organic coordination polymers显示文摘Limin Huang Huanting Wang Jinxi Chen Zhengbao Wang Jinyu Sun Dongyuan Zhao Yushan Yan 2002Microporous and Mesoporous Materials2002,,2:1
6Dynamic prediction of corre- lated color temperature and color rendering index of phosphor-coated white light-emitting diodes显示文摘Chen Huanting Hui S Y 2014IEEE Transactions on Industrial Electronics2014,61,2:1
7Yangtze River of China: Historical Analysis of Discharge Variability and Sediment Flux显示文摘Chen Zhongyuan Li Jiufa Shen Huanting 2001Geomorphology2001,41,:1
8Synthesis, morphology control, and properties of porous metal–organic coordination polymers显示文摘Limin Huang Huanting Wang Jinxi Chen Zhengbao Wang Jinyu Sun Dongyuan Zhao Yushan Yan 2002Microporous and Mesoporous Materials2002,,2:1
9Tuning the charge distribution and crystal field of iron single atoms via iron oxide integration for enhanced oxygen reduction reaction in zinc-air batteries显示文摘Metal-air batteries face a great challenge in developing efficient and durable low-cost oxygen reduction reaction(ORR)electrocatalysts.Single-atom iron catalysts embedded into nitrogen doped carbon(Fe-N-C)have emerged as attractive materials for potential replacement of Pt in ORR,but their catalytic performance was limited by the symmetrical electronic structure distribution around the single-atom Fe site.Here,we report our findings in significantly enhancing the ORR performance of Fe-N-C by moderate Fe_(2)O_(3) integration via the strong electronic interaction.Remarkably,the optimized catalyst(M-Fe_(2)O_(3)/Fe_(SA)@NC)exhibits excellent activity,durability and good tolerance to methanol,outperforming the benchmark Pt/C catalyst.When M-Fe_(2)O_(3)/Fe_(SA)@NC catalyst was used in a practical zinc-air battery assembly,peak power density of 155 mW cm^(-2)and specific capacity of 762 mA h g_(Zn)^(-1)were achieved and the battery assembly has shown superior cycling stability over a period of 200 h.More importantly,theoretical studies suggest that the introduction of Fe_(2)O_(3) can evoke the crystal field alteration and electron redistribution on single Fe atoms,which can break the symmetric charge distribution of Fe-N_(4) and thereby optimize the corresponding adsorption energy of intermediates to promote the O_(2)reduction.This study provides a new pathway to promote the catalytic performance of single-atom catalysts.Feifei Zhang Yinlong Zhu Yijun Zhong Jing Zou Yu Chen Lianhai Zu Zhouyou Wang Jack Jon Hinsch Yun Wang Lian Zhang Zongping Shao Huanting Wang 2023Journal of Energy Chemistry2023,,10:0
10Mixed-dimensional covalent organic framework membrane toward sustainable desalination显示文摘Membrane-based separation technologies have been widely used in extracting fresh water from various water sources,including seawater,brackish water,and wastewater,to address the shortage of clean and safe water worldwide[1].These technologies can produce high-quality water and are highly scalable.Xiaofang Chen Huanting Wang 2022Science China Chemistry2022,65,8:0
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