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Scott X Chang

Biographic Data

ID6569310
NAMEScott X Chang
GIVEN NAMESScott X
FAMILY NAMEChang
SIGNATURECHANG S X
AFFILIATIONSUniversity of Alberta
ORCID0000-0002-7624-439X
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS3
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2013
LATEST PUBLICATION YEAR2026
H-INDEX1
  • Carbon dioxide fertilization effect on rice yield is not sustained over multiple generations

    Open Access•Chuang Cai, Ye Tao et al.•ARTICLE•One Earth•2026

    Global crop production needs to increase to meet the growing demand for food. Rising atmospheric CO 2 concentration offers opportunities to increase global productivity via the CO 2 fertilization effect on C 3 crops (including rice, Oryza sativa L.). However, whether the CO 2 fertilization effect can be sustained over generations remains unclear. Here, we show that the CO 2 fertilization effects on aboveground biomass, aboveground nitrogen uptake…

  • Long-term climate warming substantially reduces global soil microbial richness

    Open Access•Pengfei Dang, Scott X Chang et al.•ARTICLE•One Earth•2025

  • Converting natural forests to tea plantations reduced soil phosphorus sorption capacity in subtropical China

    Open Access•Xinlin Wang, Haikuo Zhang et al.•ARTICLE•Land Degradation and Development•2024

    Converting natural forests to agricultural lands has been widespread globally due to increasing population and the demand for food. Phosphorus (P) is often applied to agricultural lands in excessive amounts which can saturate the natural P sorption capacity of the soil, leading to P leaching and subsequent off‐site water eutrophication. We studied the effect of land‐use conversion from natural forests to tea plantations on total soil P, P fractio…

  • Biochar affects greenhouse gas emissions in various environments: A critical review

    Open Access•Honghong Lyu, Hui Zhang et al.•ARTICLE•Land Degradation and Development•2022

    Biochar application to the soil is a novel approach to carbon sequestration. Biochar application affects the emission of greenhouse gases (GHGs), such as CO 2 , CH 4 , and N 2 O, from different environments (e.g., upland soils, rice paddies and wetlands, and composting environments). In this review, the effect of biochar on GHGs emissions from the above three typical environments are critically evaluated based on a literature analysis. First, the…

  • Land-Use Change Enhanced SOC Mineralization but Did Not Significantly Affect Its Storage in the Surface Layer

    Open Access•Haikuo Zhang, Xuli Zheng et al.•ARTICLE•International Journal of…•2022

    To achieve carbon (C) neutrality and mitigate climate change, it is crucial to understand how converting natural forests to agricultural plantations influences soil organic C (SOC) mineralization. In this study, we investigated the impact of converting evergreen broadleaf forests (EBF) to extensively managed Moso bamboo ( Phyllostachys edulis (Carriere) J. Houzeau) plantations (MBP) in subtropical China on SOC mineralization rate; the concentrati…

  • Land use mediates riverine nitrogen export under the dominant influence of human activities

    Open Access•Binhui Chen, Scott X Chang et al.•ARTICLE•Environmental Research Letters•2017

    Riverine nitrogen (N) export is a crucial process that links upstream and downstream ecosystems and coastal zones. However, the driving forces of riverine N export that is closely related to water N pollution are still not well understood. In this study, we used a mass balance approach to quantify the sources of N discharge and analyzed the effect of land use composition on riverine N export, taking Zhejiang Province, China as a case study. We fo…

  • Nitrate in groundwater of China: Sources and driving forces

    Open Access•Baojing Gu, Ying Ge et al.•ARTICLE•Global Environmental Change•2013•Cited by: 3

  • Nitrate in groundwater of China: Sources and driving forces

    Open Access•Baojing Gu, Ying Ge et al.•ARTICLE•Global Environmental Change•2013•Cited by: 3

  • Nitrate in groundwater of China: Sources and driving forces

    Open Access•Baojing Gu, Ying Ge et al.•ARTICLE•Global Environmental Change•2013•Cited by: 3

  • Land use mediates riverine nitrogen export under the dominant influence of human activities

    Open Access•Binhui Chen, Scott X Chang et al.•ARTICLE•Environmental Research Letters•2017

    Riverine nitrogen (N) export is a crucial process that links upstream and downstream ecosystems and coastal zones. However, the driving forces of riverine N export that is closely related to water N pollution are still not well understood. In this study, we used a mass balance approach to quantify the sources of N discharge and analyzed the effect of land use composition on riverine N export, taking Zhejiang Province, China as a case study. We fo…

  • Biochar affects greenhouse gas emissions in various environments: A critical review

    Open Access•Honghong Lyu, Hui Zhang et al.•ARTICLE•Land Degradation and Development•2022

    Biochar application to the soil is a novel approach to carbon sequestration. Biochar application affects the emission of greenhouse gases (GHGs), such as CO 2 , CH 4 , and N 2 O, from different environments (e.g., upland soils, rice paddies and wetlands, and composting environments). In this review, the effect of biochar on GHGs emissions from the above three typical environments are critically evaluated based on a literature analysis. First, the…

  • Land-Use Change Enhanced SOC Mineralization but Did Not Significantly Affect Its Storage in the Surface Layer

    Open Access•Haikuo Zhang, Xuli Zheng et al.•ARTICLE•International Journal of…•2022

    To achieve carbon (C) neutrality and mitigate climate change, it is crucial to understand how converting natural forests to agricultural plantations influences soil organic C (SOC) mineralization. In this study, we investigated the impact of converting evergreen broadleaf forests (EBF) to extensively managed Moso bamboo ( Phyllostachys edulis (Carriere) J. Houzeau) plantations (MBP) in subtropical China on SOC mineralization rate; the concentrati…

  • Converting natural forests to tea plantations reduced soil phosphorus sorption capacity in subtropical China

    Open Access•Xinlin Wang, Haikuo Zhang et al.•ARTICLE•Land Degradation and Development•2024

    Converting natural forests to agricultural lands has been widespread globally due to increasing population and the demand for food. Phosphorus (P) is often applied to agricultural lands in excessive amounts which can saturate the natural P sorption capacity of the soil, leading to P leaching and subsequent off‐site water eutrophication. We studied the effect of land‐use conversion from natural forests to tea plantations on total soil P, P fractio…

  • Long-term climate warming substantially reduces global soil microbial richness

    Open Access•Pengfei Dang, Scott X Chang et al.•ARTICLE•One Earth•2025

  • Carbon dioxide fertilization effect on rice yield is not sustained over multiple generations

    Open Access•Chuang Cai, Ye Tao et al.•ARTICLE•One Earth•2026

    Global crop production needs to increase to meet the growing demand for food. Rising atmospheric CO 2 concentration offers opportunities to increase global productivity via the CO 2 fertilization effect on C 3 crops (including rice, Oryza sativa L.). However, whether the CO 2 fertilization effect can be sustained over generations remains unclear. Here, we show that the CO 2 fertilization effects on aboveground biomass, aboveground nitrogen uptake…

Biology (5 works) · Chemistry (5 works) · Ecology (4 works) · Environmental Chemistry (4 works) · Environmental Science (4 works) · Soil Carbon and Nitrogen Dynamics (4 works) · Environmental Engineering (3 works) · Nitrogen (3 works) · Soil water (3 works) · Agronomy (2 works)

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