Search Results - "Yu, Hongbing"

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  1. 1

    A skeptic’s guide to “intercultural communication”—debunking the “intercultural” and rethinking “culture” by Yu, Hongbing

    Published in Language and semiotic studies (27-06-2023)
    “…Abstract Starting with a critique of so-called intercultural communication, the present paper contests and challenges the prevalent and dominant essentialist…”
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  2. 2

    A novel structure of scalable air-cathode without Nafion and Pt by rolling activated carbon and PTFE as catalyst layer in microbial fuel cells by Dong, Heng, Yu, Hongbing, Wang, Xin, Zhou, Qixing, Feng, Junli

    Published in Water research (Oxford) (01-11-2012)
    “…Single chambered air-cathode microbial fuel cells (MFCs) are promising to be scaled up as sustainable wastewater treatment systems. However, the current…”
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  3. 3

    Catalysis Kinetics and Porous Analysis of Rolling Activated Carbon-PTFE Air-Cathode in Microbial Fuel Cells by Dong, Heng, Yu, Hongbing, Wang, Xin

    Published in Environmental science & technology (04-12-2012)
    “…The microbial fuel cell (MFC), being an environment-friendly technology for wastewater treatment, is limited by low efficiency and high cost. Power output…”
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  4. 4

    Development of rolling tin gas diffusion electrode for carbon dioxide electrochemical reduction to produce formate in aqueous electrolyte by Wang, Qinian, Dong, Heng, Yu, Hongbing

    Published in Journal of power sources (20-12-2014)
    “…Carbon dioxide electrochemical reduction to produce formate (CERPF) basing on gas diffusion electrode (GDE) is a promising carbon cycle technology. However,…”
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  5. 5

    Production of furfural from xylose, xylan and corncob in gamma-valerolactone using FeCl3·6H2O as catalyst by Zhang, Luxin, Yu, Hongbing, Wang, Pan, Li, Yong

    Published in Bioresource technology (01-01-2014)
    “…•An efficient and ecologically viable strategy for furfural production was proposed.•Furfural yield of 79.6% from untreated corncob was achieved.•GVL is a…”
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  6. 6

    Conversion of xylan, d-xylose and lignocellulosic biomass into furfural using AlCl3 as catalyst in ionic liquid by Zhang, Luxin, Yu, Hongbing, Wang, Pan, Dong, Heng, Peng, Xinhong

    Published in Bioresource technology (01-02-2013)
    “…► AlCl3 was used as catalyst in ionic liquid to produce FUR from xylan and xylose firstly. ► AlCl3 was more effective than mineral acid in producing FUR from…”
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  7. 7

    Catalytic hydrolysis of lignocellulosic biomass into 5-hydroxymethylfurfural in ionic liquid by Wang, Pan, Yu, Hongbing, Zhan, Sihui, Wang, Shengqiang

    Published in Bioresource technology (01-03-2011)
    “…Production of 5-hydroxymethylfurfural (HMF) from cellulose catalyzed by solid acids and metal chlorides was studied in the 1-butyl-3-methylimidazolium chloride…”
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  8. 8

    Transient grating spectroscopy of thermal diffusivity degradation in deuterium implanted tungsten by Reza, Abdallah, Zayachuk, Yevhen, Yu, Hongbing, Hofmann, Felix

    Published in Scripta materialia (01-01-2020)
    “…Using transient grating spectroscopy, we measure thermal diffusivity and surface acoustic wave speed in tungsten exposed to different fluences of deuterium…”
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  9. 9

    Microstructural understanding of the oxidation of an austenitic stainless steel in high-temperature steam through advanced characterization by Shen, Zhao, Tweddle, David, Yu, Hongbing, He, Guanze, Varambhia, Aakash, Karamched, Phani, Hofmann, Felix, Wilkinson, Angus J., Moody, Michael P., Zhang, Lefu, Lozano-Perez, Sergio

    Published in Acta materialia (01-08-2020)
    “…It is well-known that steels always oxidize faster in the environments containing water vapour than in dry oxygen. Due to the difficulties in obtaining…”
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  10. 10

    Solid acids as catalysts for the conversion of d-xylose, xylan and lignocellulosics into furfural in ionic liquid by Zhang, Luxin, Yu, Hongbing, Wang, Pan

    Published in Bioresource technology (01-05-2013)
    “…•Furfural yield of 93.7% from xylan was achieved.•The reactions were conducted at atmospheric pressure.•All the treatments were heated-up by microwave.•Solid…”
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  11. 11

    Analysis of pollution materials generated from electrolytic manganese industries in China by Duan, Ning, Fan, Wang, Changbo, Zhou, Chunlei, Zhu, Hongbing, Yu

    Published in Resources, conservation and recycling (01-06-2010)
    “…There are 202 electrolytic manganese metal (EMM) industries in China with a total capacity of 1.88 million tons in 2008. This accounts for 98.58% of the…”
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  12. 12

    Mapping the full lattice strain tensor of a single dislocation by high angular resolution transmission Kikuchi diffraction (HR-TKD) by Yu, Hongbing, Liu, Junliang, Karamched, Phani, Wilkinson, Angus J., Hofmann, Felix

    Published in Scripta materialia (15-04-2019)
    “…The full lattice strain tensor and lattice rotations induced by a dislocation in pure tungsten were mapped using high-resolution transmission Kikuchi…”
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  13. 13

    Lack of anodic capacitance causes power overshoot in microbial fuel cells by Peng, Xinhong, Yu, Han, Yu, Hongbing, Wang, Xin

    Published in Bioresource technology (01-06-2013)
    “…•Power overshoot can be eliminated by sufficient anodic abiotic capacitance.•Abiotic capacitance of the anode is from micropores and mesopores.•Bacterial…”
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  14. 14

    3D reconstruction of the spatial distribution of dislocation loops using an automated stereo-imaging approach by Yu, Hongbing, Yi, Xiaoou, Hofmann, Felix

    Published in Ultramicroscopy (01-12-2018)
    “…•Automated stereo-imaging for reconstructing 3D spatial distribution of small dislocation loops from 2D TEM micrographs.•Less sensitive to experimental errors…”
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  15. 15

    Acidic and alkaline pretreatments of activated carbon and their effects on the performance of air-cathodes in microbial fuel cells by Wang, Xin, Gao, Ningshengjie, Zhou, Qixing, Dong, Heng, Yu, Hongbing, Feng, Yujie

    Published in Bioresource technology (01-09-2013)
    “…•The power density was increased by 16% when activated carbon was pretreated by KOH.•KOH pretreatment increased micropore area and decreased charge transfer…”
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  16. 16

    Observation of Transient and Asymptotic Driven Structural States of Tungsten Exposed to Radiation by Mason, Daniel R, Das, Suchandrima, Derlet, Peter M, Dudarev, Sergei L, London, Andrew J, Yu, Hongbing, Phillips, Nicholas W, Yang, David, Mizohata, Kenichiro, Xu, Ruqing, Hofmann, Felix

    Published in Physical review letters (24-11-2020)
    “…Combining spatially resolved x-ray Laue diffraction with atomic-scale simulations, we observe how ion-irradiated tungsten undergoes a series of nonlinear…”
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  17. 17

    Initiation and accommodation of primary twins in high-purity titanium by Qin, Hong, Jonas, John J., Yu, Hongbing, Brodusch, Nicolas, Gauvin, Raynald, Zhang, Xiyan

    Published in Acta materialia (01-06-2014)
    “…Uniaxial compression tests were carried out at room temperature and at strain rates of 0.001, 0.01, 0.1 and 1s−1 on samples of high-purity titanium. The…”
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  18. 18

    Time behavior and capacitance analysis of nano-Fe3O4 added microbial fuel cells by Peng, Xinhong, Yu, Hongbing, Ai, Lina, Li, Nan, Wang, Xin

    Published in Bioresource technology (01-09-2013)
    “…•Kinetic dynamics is dominant over thermodynamics on performance after Fe addition.•Maximum capacitance of 574.6Cm−2 is obtained at an optimal interval of…”
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  19. 19

    Simulated-sunlight-activated photocatalysis of Methylene Blue using cerium-doped SiO2/TiO2 nanostructured fibers by Liu, Yu, Yu, Hongbing, Lv, Zhenning, Zhan, Sihui, Yang, Jiangyao, Peng, Xinhong, Ren, Yixuan, Wu, Xiaoyan

    Published in Journal of environmental sciences (China) (01-10-2012)
    “…Cerium-doped SiO2/TiO2 nanostructured fibers were fabricated by electrospinning technology. The prepared fibers were characterized by thermogravimetric…”
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  20. 20

    Enhanced anode performance of microbial fuel cells by adding nanosemiconductor goethite by Peng, Xinhong, Yu, Hongbing, Wang, Xin, Gao, Ningshengjie, Geng, Lijuan, Ai, Lina

    Published in Journal of power sources (01-02-2013)
    “…Nano goethite with contents of 0, 2.5%, 5.0% and 7.5% (mass percentage) were added into activate carbon powder (AC) and rolled onto stainless steel mesh to…”
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