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Hui Kong

Researcher at Beijing Institute of Technology

Publications -  33
Citations -  1108

Hui Kong is an academic researcher from Beijing Institute of Technology. The author has contributed to research in topics: Hydrogen production & Solar energy. The author has an hindex of 12, co-authored 24 publications receiving 438 citations. Previous affiliations of Hui Kong include Tsinghua University & Chinese Academy of Sciences.

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Non-precious-metal catalysts for alkaline water electrolysis: operando characterizations, theoretical calculations, and recent advances

TL;DR: The most recent advances in NPCs for AWE were systematically reviewed, emphasizing the application of in situ/operando experimental methods and density functional theory (DFT) calculations in their understanding and development.
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Carbon-based electrocatalysts for sustainable energy applications

TL;DR: Carbon-based materials have multiple advantages including abundant sources, tunable molecular structures, high electronic conductivity, and environmental compatibility as mentioned in this paper. But, there is no systematic review yet covering all the general methods to boost carbon-based electrocatalysts for ORR/OER/HER, and reporting their most recent progress.
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Thermodynamic analysis on mid/low temperature solar methane steam reforming with hydrogen permeation membrane reactors

TL;DR: In this article, a numerical model of solar-driven methane reforming reaction in a palladium (Pd) membrane reactor with vacuum pump and compressor is established, and an optimal conversion rate range of methane for efficient solar methane membrane reforming is calculated, and the net solar-to-fuel efficiency can reach as high as 38.25% at 400
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Experimental investigation of heat transfer and flow characteristics in finned copper foam heat sinks subjected to jet impingement cooling

TL;DR: In this article, the effects of heat sink height (H, 15, 30, 45, 60 mm), pore density of the inserted copper foam (PPI, pore per inch including 10, 20, and 30) and the gas flow Reynolds number (Re, varying from 2053 to 12737), were systematically investigated.
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A solar methane reforming reactor design with enhanced efficiency

TL;DR: In this paper, an efficiency-enhanced solar methane reforming reactor design, featuring cutoff wavelength coating over quartz window for incident solar energy, a compound parabolic concentrator (CPC) device for thermochemical performance enhancement and reticulated porous ceramics (RPC) structure of Ni/CeO2-ZrO2 used as the catalyst.