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Xiaodong Yang

Researcher at Ningbo University

Publications -  211
Citations -  3340

Xiaodong Yang is an academic researcher from Ningbo University. The author has contributed to research in topics: Biology & Computer science. The author has an hindex of 21, co-authored 78 publications receiving 1672 citations. Previous affiliations of Xiaodong Yang include Xinjiang University & Xiamen University.

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Allometric biomass equations for shrub and small tree species in subtropical China.

TL;DR: In this paper, a multispecies allometric D-H model was used to predict the aboveground biomass of shrubs and small trees in subtropical China without wet basic density data.
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Effect of financial development and technological innovation on green growth—Analysis based on spatial Durbin model

TL;DR: Wang et al. as discussed by the authors examined the spatial effect of financial development and technological innovation on green growth in China using the Spatial Durbin Model (SDM) based on the 30 provinces' panel data from 2011 to 2018.
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Ensemble machine-learning-based framework for estimating total nitrogen concentration in water using drone-borne hyperspectral imagery of emergent plants: A case study in an arid oasis, NW China.

TL;DR: The spectral response caused by nitrogen removal and water purification on emergent plants could be used to retrieve TN concentration in water with a DLF model framework, which offers a new perspective and a basic scientific support for water quality monitoring in arid regions.
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A direct borohydride fuel cell with a polymer fiber membrane and non-noble metal catalysts.

TL;DR: This work reports a DBFC in which a polymer fiber membrane was used, and metal oxides were used as cathode catalysts, meanwhile CoO was used as anode catalyst, and peak power density has been achieved at 65°C, which increases by a factor of 1.7 compared with classic DBFCs.
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Three-Dimensional Networks of S-Doped Fe/N/C with Hierarchical Porosity for Efficient Oxygen Reduction in Polymer Electrolyte Membrane Fuel Cells.

TL;DR: This work developed a highly active metal-organic framework-derived S-doped Fe/N/C catalyst [S-Fe/Z8/2-aminothiazole (2-AT)] prepared by thermal treatment that possesses a three-dimensional macro-meso-micro hierarchically porous structure and demonstrates remarkable ORR catalytic activity.