Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

Zhaolei Li

Biographic Data

ID7996214
NAMEZhaolei Li
GIVEN NAMESZhaolei
FAMILY NAMELi
SIGNATURELI Z
AFFILIATIONSChinese Academy of Sciences
ORCID0000-0001-8767-1277
VERIFIEDYes
TOTAL WORKS7
TOTAL CITATIONS0
AUTHOR COUNT7
EDITOR COUNT0
FIRST PUBLICATION YEAR2019
LATEST PUBLICATION YEAR2026
H-INDEX0
  • Synergistic effects of supplier resilience, information sharing, inventory management, and flexibility on supply chain resilience: A PLS-SEM and NCA approach

    Open Access•Muhammad Ali Aslam, Zhaolei Li et al.•ARTICLE•Humanities and Social Sciences…•2026

    Supply chain resilience is vital for companies looking to reduce disruptions and preserve operational continuity. In this context, Pakistan and China’s industrial sectors, with their complex supply chains, require effective measures to boost resilience and reduce disruptions. This study takes an innovative approach that employs Partial least square structural equation modeling (PLS-SEM) and Necessary Condition Analysis (NCA) to identify the criti…

  • To Build a Contextual Christian Ecological Ethics in China: A Response to the Encyclical Laudato Si’

    Open Access•Bin You, Zhaolei Li et al.•ARTICLE•Religions•2026

    Drawing on the encyclical Laudato Si’ issued by Pope Francis in 2015, this paper sketches a Christian ecological spirituality for Chinese cultural contexts. The paper first examines the meaning of ecological spirituality, analyzing its deep biblical roots and subsequent theological implications. It then develops a contextual Christian ecological ethics by exploring the significance of Laudato Si’ for ecological spirituality in China in conversati…

  • Effects of Organic Fertilizer Substitution on Soil Carbon Loss and Sedimentary Carbon Fractions

    Open Access•Hua Feng, Siqi Zhang et al.•ARTICLE•Land Degradation and Development•2026

    Application of organic fertilizer is a key strategy for soil carbon sequestration, yet its impact on the erosion selective transport and chemical quality of eroded organic carbon (OC) remains unclear. We investigated this using laboratory rainfall simulations on sloping cropland under three treatments: no fertilization (CK), chemical N/P (NP), and organic substitution (OMNP). Our results reveal a critical trade‐off between erosion quantity and ca…

  • Increasing meteorological drought under climate change reduces terrestrial ecosystem productivity and carbon storage

    Open Access•Zhaoqi Zeng, Wenxiang Wu et al.•ARTICLE•One Earth•2023

  • Satellite-observed decrease in the sensitivity of spring phenology to climate change under high nitrogen deposition

    Open Access•Xiaoyue Wang, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2020

    Spring phenology is a sensitive indicator of climate change and has substantial impacts on the carbon cycle. The global N cycle has been greatly disturbed by anthropogenic activities resulting in altered atmospheric N deposition worldwide. Research has been focused on the changes in the spring phenology and its covariations with climatic factors. However, the influences of N deposition on spring phenology have not been well documented to date. He…

  • The stoichiometry of soil microbial biomass determines metabolic quotient of nitrogen mineralization

    Open Access•Zhaolei Li, Zhaoqi Zeng et al.•ARTICLE•Environmental Research Letters•2020

    Soil nitrogen (N) mineralization is crucial for the sustainability of available soil N and hence ecosystem productivity and functioning. Metabolic quotient of N mineralization ( Q min ), which is defined as net soil N mineralization per unit of soil microbial biomass N, reflects the efficiency of soil N mineralization. However, it is far from clear how soil Q min changes and what are the controlling factors at the global scale. We compiled 871 ob…

  • Global soil acidification impacts on belowground processes

    Open Access•Cheng Meng, Dashuan Tian et al.•ARTICLE•Environmental Research Letters•2019

    With continuous nitrogen (N) enrichment and sulfur (S) deposition, soil acidification has accelerated and become a global environmental issue. However, a full understanding of the general pattern of ecosystem belowground processes in response to soil acidification due to the impacting factors remains elusive. We conducted a meta-analysis of soil acidification impacts on belowground functions using 304 observations from 49 independent studies, mai…

No prominent works on this page.

  • Global soil acidification impacts on belowground processes

    Open Access•Cheng Meng, Dashuan Tian et al.•ARTICLE•Environmental Research Letters•2019

    With continuous nitrogen (N) enrichment and sulfur (S) deposition, soil acidification has accelerated and become a global environmental issue. However, a full understanding of the general pattern of ecosystem belowground processes in response to soil acidification due to the impacting factors remains elusive. We conducted a meta-analysis of soil acidification impacts on belowground functions using 304 observations from 49 independent studies, mai…

  • Satellite-observed decrease in the sensitivity of spring phenology to climate change under high nitrogen deposition

    Open Access•Xiaoyue Wang, Chaoyang Wu et al.•ARTICLE•Environmental Research Letters•2020

    Spring phenology is a sensitive indicator of climate change and has substantial impacts on the carbon cycle. The global N cycle has been greatly disturbed by anthropogenic activities resulting in altered atmospheric N deposition worldwide. Research has been focused on the changes in the spring phenology and its covariations with climatic factors. However, the influences of N deposition on spring phenology have not been well documented to date. He…

  • The stoichiometry of soil microbial biomass determines metabolic quotient of nitrogen mineralization

    Open Access•Zhaolei Li, Zhaoqi Zeng et al.•ARTICLE•Environmental Research Letters•2020

    Soil nitrogen (N) mineralization is crucial for the sustainability of available soil N and hence ecosystem productivity and functioning. Metabolic quotient of N mineralization ( Q min ), which is defined as net soil N mineralization per unit of soil microbial biomass N, reflects the efficiency of soil N mineralization. However, it is far from clear how soil Q min changes and what are the controlling factors at the global scale. We compiled 871 ob…

  • Increasing meteorological drought under climate change reduces terrestrial ecosystem productivity and carbon storage

    Open Access•Zhaoqi Zeng, Wenxiang Wu et al.•ARTICLE•One Earth•2023

  • Synergistic effects of supplier resilience, information sharing, inventory management, and flexibility on supply chain resilience: A PLS-SEM and NCA approach

    Open Access•Muhammad Ali Aslam, Zhaolei Li et al.•ARTICLE•Humanities and Social Sciences…•2026

    Supply chain resilience is vital for companies looking to reduce disruptions and preserve operational continuity. In this context, Pakistan and China’s industrial sectors, with their complex supply chains, require effective measures to boost resilience and reduce disruptions. This study takes an innovative approach that employs Partial least square structural equation modeling (PLS-SEM) and Necessary Condition Analysis (NCA) to identify the criti…

  • To Build a Contextual Christian Ecological Ethics in China: A Response to the Encyclical Laudato Si’

    Open Access•Bin You, Zhaolei Li et al.•ARTICLE•Religions•2026

    Drawing on the encyclical Laudato Si’ issued by Pope Francis in 2015, this paper sketches a Christian ecological spirituality for Chinese cultural contexts. The paper first examines the meaning of ecological spirituality, analyzing its deep biblical roots and subsequent theological implications. It then develops a contextual Christian ecological ethics by exploring the significance of Laudato Si’ for ecological spirituality in China in conversati…

  • Effects of Organic Fertilizer Substitution on Soil Carbon Loss and Sedimentary Carbon Fractions

    Open Access•Hua Feng, Siqi Zhang et al.•ARTICLE•Land Degradation and Development•2026

    Application of organic fertilizer is a key strategy for soil carbon sequestration, yet its impact on the erosion selective transport and chemical quality of eroded organic carbon (OC) remains unclear. We investigated this using laboratory rainfall simulations on sloping cropland under three treatments: no fertilization (CK), chemical N/P (NP), and organic substitution (OMNP). Our results reveal a critical trade‐off between erosion quantity and ca…

Biology (4 works) · Environmental Science (4 works) · Agronomy (3 works) · Chemistry (3 works) · Climate change (3 works) · Ecology (3 works) · Ecosystem (3 works) · Nitrogen (3 works) · Soil carbon (3 works) · Soil organic matter (3 works)

Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae