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Guangliang Zhang

Biographic Data

ID8290293
NAMEGuangliang Zhang
GIVEN NAMESGuangliang
FAMILY NAMEZhang
SIGNATUREZHANG G
AFFILIATIONSChina Shenhua Energy (China)
ORCID0000-0001-9992-1341
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2020
LATEST PUBLICATION YEAR2026
H-INDEX0
  • “Teach it” or “Embed it”? A Comparative Study of Psycho-Educational vs. Cultural-Educational Approaches on Students’ Positive Development

    Open Access•Zheng Chen, W Duan et al.•ARTICLE•Child & Youth Care Forum•2026

  • Effects of multi‐temporal environmental variables on SOC spatial prediction models in coastal wetlands of a Chinese delta

    Open Access•Yiming Xu, Bin Li et al.•ARTICLE•Land Degradation and Development•2022

    Mapping soil organic carbon (SOC) distributions in coastal wetlands plays an important role in assessing ecosystem services and investigating the global carbon cycle. Little research has explored the effects of environmental variables with seasonal variations on digital soil mapping (DSM). Our research utilized machine learning methods and established multiple prediction models of SOC based on multi‐temporal data from dry and wet seasons, and mon…

  • Shifts in the soil bacterial community along a salinity gradient in the Yellow River Delta

    Open Access•Qingqing Zhao, Junhong Bai et al.•ARTICLE•Land Degradation and Development•2020

    Soil salinization has rapidly encroached from the coastline to inland areas over the past two decades in the Yellow River Delta (YRD). Soil samples were collected from low‐ (LSW), medium‐ (MSW), and high‐ (HSW) salinity wetlands at a depth of 0–20 cm for 16S rRNA sequencing and bioinformatic analyses. The richness and α‐diversity indices were significantly lower in saline soils (ECe > 15 dS/m, HSW) than in soils those were not saline (ECe p 4) am…

No prominent works on this page.

  • Shifts in the soil bacterial community along a salinity gradient in the Yellow River Delta

    Open Access•Qingqing Zhao, Junhong Bai et al.•ARTICLE•Land Degradation and Development•2020

    Soil salinization has rapidly encroached from the coastline to inland areas over the past two decades in the Yellow River Delta (YRD). Soil samples were collected from low‐ (LSW), medium‐ (MSW), and high‐ (HSW) salinity wetlands at a depth of 0–20 cm for 16S rRNA sequencing and bioinformatic analyses. The richness and α‐diversity indices were significantly lower in saline soils (ECe > 15 dS/m, HSW) than in soils those were not saline (ECe p 4) am…

  • Effects of multi‐temporal environmental variables on SOC spatial prediction models in coastal wetlands of a Chinese delta

    Open Access•Yiming Xu, Bin Li et al.•ARTICLE•Land Degradation and Development•2022

    Mapping soil organic carbon (SOC) distributions in coastal wetlands plays an important role in assessing ecosystem services and investigating the global carbon cycle. Little research has explored the effects of environmental variables with seasonal variations on digital soil mapping (DSM). Our research utilized machine learning methods and established multiple prediction models of SOC based on multi‐temporal data from dry and wet seasons, and mon…

  • “Teach it” or “Embed it”? A Comparative Study of Psycho-Educational vs. Cultural-Educational Approaches on Students’ Positive Development

    Open Access•Zheng Chen, W Duan et al.•ARTICLE•Child & Youth Care Forum•2026

Ecology (2 works) · Environmental Science (2 works) · Wetland (2 works) · 16S ribosomal RNA (1 works) · Acidobacteria (1 works) · Bacteroidetes (1 works) · Biology (1 works) · Cartography (1 works) · Coastal wetland ecosystem dynamics (1 works) · Community structure (1 works)

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