H
Huaqiang Chu
Researcher at Anhui University of Technology
Publications - 100
Citations - 2132
Huaqiang Chu is an academic researcher from Anhui University of Technology. The author has contributed to research in topics: Combustion & Chemistry. The author has an hindex of 19, co-authored 79 publications receiving 1103 citations. Previous affiliations of Huaqiang Chu include Huazhong University of Science and Technology & National Research Council.
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Biochar as a low-cost adsorbent for aqueous heavy metal removal: A review
TL;DR: In this article, the effects of physicochemical properties such as pore distribution, element composition, pH value, specific surface area, cation exchange capacity and surface functional groups on the adsorption of heavy metals by biochar under different raw materials and pyrolysis temperatures are discussed.
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Effects of simultaneous hydrogen enrichment and carbon dioxide dilution of fuel on soot formation in an axisymmetric coflow laminar ethylene/air diffusion flame
TL;DR: In this article, the effects of adding hydrogen and carbon dioxide simultaneously to fuel on soot formation in an axisymmetric laminar coflow ethylene/air diffusion flame at atmospheric pressure were investigated.
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Biofuel production from microalgae: a review
TL;DR: Biofuel production from microalgae is reviewed, including cultivation, harvesting, drying, extraction and conversion of microalgal lipids, which can be achieved by two-stage culture strategies, which is a win–win approach because it solves the conflicts between cell growth and biomass accumulation.
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Calculations of gas thermal radiation transfer in one-dimensional planar enclosure using LBL and SNB models
TL;DR: In this article, the spectral database was used to evaluate the accuracy of line-by-line results of the spectral model for thermal radiation transfer in planar-plate enclosures with real gases.
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Effect of methane addition to ethylene on the morphology and size distribution of soot in a laminar co-flow diffusion flame
TL;DR: In this article, the characteristics of soot in the diffusion flames of methane and ethylene under different oxygen concentrations and the influence of mixing methane in ethylene on soot generation were investigated using thermophoretic sampling and subsequent transmission electron microscopy image analysis.