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Xiao Zhang

Researcher at Taiyuan University of Technology

Publications -  21
Citations -  277

Xiao Zhang is an academic researcher from Taiyuan University of Technology. The author has contributed to research in topics: Denitrification & Anammox. The author has an hindex of 7, co-authored 21 publications receiving 138 citations. Previous affiliations of Xiao Zhang include Gifu University & Ontario Ministry of Transportation.

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Evaluation of thermo-mechanical properties of graphene/carbon-nanotubes modified asphalt with molecular simulation

TL;DR: In this article, a comparative study was conducted to determine the effects of graphene and carbon nanotubes on the thermo-mechanical properties of asphalt binder using molecular simulations and experiments.
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Promoting the nitrogen removal of anammox process by Fe-C micro-electrolysis.

TL;DR: In this study, a process that combines iron-carbon micro-electrolysis (IC-ME) with the anammox process was successfully established for promoting nitrogen removal, especially the removal of nitrate by-product.
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A bilayer media bioretention system for enhanced nitrogen removal from road runoff

TL;DR: Bilayer media bioretention systems are worth promoting in cities where nitrogen in urban runoff poses a threat to the receiving surface water, due to the systems' remarkable performance in nitrogen removal, simple structure, and easy implementation.
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Evaluation on Self-healing Mechanism and Hydrophobic Performance of Asphalt Modified by Siloxane and Polyurethane

TL;DR: In this paper, the self-healing mechanism and hydrophobic performance of asphalt modified by siloxane and polyurethane (ASP) were studied by dynamic shear rheology (DSR), fluorescence microscope (FM), atomic force microscope (AFM), the fracturehealing-re-fracture test and molecular simulations.
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Effects of pyrolysis parameters on physicochemical properties of biochar and bio-oil and application in asphalt

TL;DR: In this article, different temperatures and N2 flow velocities were used in the fast pyrolysis process to evaluate the yield of biochar and bio-oil, and the obtained results indicate that pyroplysis temperature increases the purity of inorganic oxide in biochar, and N 2 flow velocity promotes the carbon yield of carbon.