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Shaobin Wang

Researcher at University of Adelaide

Publications -  976
Citations -  77076

Shaobin Wang is an academic researcher from University of Adelaide. The author has contributed to research in topics: Catalysis & Adsorption. The author has an hindex of 126, co-authored 872 publications receiving 52463 citations. Previous affiliations of Shaobin Wang include Yale University & Huawei.

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Natural zeolites as effective adsorbents in water and wastewater treatment

TL;DR: A review of the recent development of natural zeolites as adsorbents in water and wastewater treatment can be found in this paper, where the properties and modification of natural zerosite are discussed and the modified zerosites achieving higher adsorption capacity for organics and anions.
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Metal-free carbocatalysis in advanced oxidation reactions

TL;DR: This Account showcases the recent contributions to metal-free catalysis in advanced oxidation, including design of nanocarbon catalysts, exploration of intrinsic active sites, and identification of reactive species and reaction pathways, and offers perspectives on carbocatalysis for future environmental applications.
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Removal of dyes from aqueous solution using fly ash and red mud.

TL;DR: Fly ash and red mud have been employed as adsorbents for the removal of a typical basic dye, methylene blue, from aqueous solution and it is found that fly ash generally shows higher adsorption capacity than red mud.
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Catalytic removal of aqueous contaminants on N-doped graphitic biochars: inherent roles of adsorption and nonradical mechanisms.

TL;DR: This study not only provides robust and cheap carbonaceous materials for environmental remediation but also enables the first insight into the graphitic biochar-based nonradical catalysis.
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Persulfate Activation on Crystallographic Manganese Oxides: Mechanism of Singlet Oxygen Evolution for Nonradical Selective Degradation of Aqueous Contaminants.

TL;DR: One-dimension manganese dioxides (α- and β-MnO2) were discovered as effective PDS activators among the diverse manganes oxides for selective degradation of organic contaminants in wastewater and provides a novel catalytic system for selective removal of organic contamination in wastewater.