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Xinhui Duan

Researcher at Hebei University of Technology

Publications -  46
Citations -  1009

Xinhui Duan is an academic researcher from Hebei University of Technology. The author has contributed to research in topics: Adsorption & Activated carbon. The author has an hindex of 11, co-authored 39 publications receiving 682 citations. Previous affiliations of Xinhui Duan include Kunming University of Science and Technology.

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Preparation of high surface area activated carbon from coconut shells using microwave heating.

TL;DR: Experimental results show that the BET surface area of activated carbons irrespective of the activation agent resulted in surface area in excess of 2000 m(2)/g, while the yield of the activated carbon compares well with the conventional heating methods.
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Synthesis of activated carbon fibers from cotton by microwave induced H3PO4 activation

TL;DR: In this paper, the preparation of activated carbon fiber (ACF) with cotton as raw precursor via microwave assisted H3PO4 activation was explored, where the influence of microwave power, activation time, and acid concentration on the properties of ACF was investigated.
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Environmental Applications of Diatomite Minerals in Removing Heavy Metals from Water

TL;DR: In this article, Diatomite, an eco-environmental functional material, has been proved to be a suitable material for heavy metals release into the environment, which could accumulate in living organisms, thus causing various diseases and disorders.
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Functionalized nanoflower-like hydroxyl magnesium silicate for effective adsorption of aflatoxin B1.

TL;DR: Functionalized nanoflower-like hydroxyl magnesium silicate (FNHMS) was synthesized for adsorption of AFB1 and demonstrates that FNHMS could be a promising adsorbent for removal of AFB1.
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Waste walnut shell valorization to iron loaded biochar and its application to arsenic removal

TL;DR: In this article, an iron loaded biochar (ILB) was prepared from waste walnut shell by microwave pyrolysis and its application for arsenic removal was attempted, which was characterized using X-ray diffraction, scanning electron microscopy and BET Surface area analyzer.