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Siming You

Researcher at University of Glasgow

Publications -  75
Citations -  3155

Siming You is an academic researcher from University of Glasgow. The author has contributed to research in topics: Biochar & Catalysis. The author has an hindex of 21, co-authored 75 publications receiving 1373 citations. Previous affiliations of Siming You include Massachusetts Institute of Technology & Nanyang Technological University.

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Particulate emission from the gasification and pyrolysis of biomass: Concentration, size distributions, respiratory deposition-based control measure evaluation.

TL;DR: Sensitivity analysis showed that the particle removal efficiency was found to be most sensitive to the cyclone vortex finder diameter (D0), which could potentially serve as the basis for proposing health protective measures against the particulate pollution from gasification and pyrolysis technologies.
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Multifunctional superhydrophobic self-cleaning cotton fabrics with oil-water separation and dye degradation via thiol-ene click reaction

TL;DR: In this article, an environment-friendly fluorine-free modified cotton fabric (C-S-TiO2 cotton fabric) was successfully prepared by the combination of in-situ growth of TiO2 and hydrophobic modification with octadecyl methacrylate (ODMA) by thiol-ene click reaction.
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Geometry optimization and pressure analysis of a proton exchange membrane fuel cell stack

TL;DR: In this article, the authors investigated the optimal design of the inlet/outlet flow channel in the fuel cell stack with different geometric dimensions of the tube and intermediate zones (IZ).
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Optimal design of standalone hybrid renewable energy systems with biochar production in remote rural areas: A case study

TL;DR: In this article, a multi-objective optimization model for the design of standalone hybrid renewable energy systems (HRES) in remote rural areas is proposed to maximize the profits and the carbon abatement capability of the system by optimal process selection and sizing of HRES components including solar, wind, and biomass generation systems.