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Guohe Huang

Researcher at Applied Science Private University

Publications -  1071
Citations -  30520

Guohe Huang is an academic researcher from Applied Science Private University. The author has contributed to research in topics: Stochastic programming & Fuzzy logic. The author has an hindex of 72, co-authored 979 publications receiving 25589 citations. Previous affiliations of Guohe Huang include Peking University & Beijing Normal University.

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Hydrologic Impacts of Ensemble-RCM-Projected Climate Changes in the Athabasca River Basin, Canada

TL;DR: In this article, the Providing Regional Climates for Impacts Studies (PRECIS) and the Regional Climate Model (RegCM) system as well as the Variable Infiltration Capacity (VIC) macroscale hydr...
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Removal of arsenic from water through ceramic filter modified by nano-CeO2: A cost-effective approach for remote areas.

TL;DR: The findings in this study provided convincing evidence for the use of CF-CeO2 as a high-efficiency, low-cost, and safe approach for water purification in the remote areas of developing countries.
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Dynamically-downscaled probabilistic projections of precipitation changes: A Canadian case study.

TL;DR: The results show that the projected changes in annual precipitation exhibit a certain degree of spatial variability with the median changes mostly bounded by 0% and 20%, implying that the annual precipitation over Ontario is more likely to increase in the context of global warming.
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An interval full-infinite programming method to supporting environmental decision-making

TL;DR: The IFIP method is applied to a solid waste management system to illustrate its performance in supporting decision-making and is capable of addressing uncertainties arising from not only the imprecise information but also complex relations to external impact factors.
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Robust regional low-carbon electricity system planning with energy-water nexus under uncertainties and complex policy guidelines

TL;DR: An interval multi-stage robust programming model is developed for regional low-carbon electric power system planning with energy-water nexus and helps to make robust strategies associated with risk control for capacity expansion, carbon capture and storage technology retrofitting, power generation, imported electricity, and water allocation for electricity generation.