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Jordi Sardans

Biographic Data

ID1962745
NAMEJordi Sardans
GIVEN NAMESJordi
FAMILY NAMESardans
SIGNATURESARDANS J
AFFILIATIONSCentre for Research on Ecology and Forestry Applications
ORCID0000-0003-2478-0219
VERIFIEDYes
TOTAL WORKS15
TOTAL CITATIONS2
AUTHOR COUNT15
EDITOR COUNT0
FIRST PUBLICATION YEAR2016
LATEST PUBLICATION YEAR2026
H-INDEX1
  • Depth‐Dependent Soil C: N:P Stoichiometry in Robinia pseudoacacia Mixed Versus Pure Stands and Its Drivers in the Chinese Loess Hilly Region

    Open Access•Senbao Lu, Yarong Sun et al.•ARTICLE•Land Degradation and Development•2026

    Soil carbon (C): nitrogen (N): phosphorus (P) stoichiometry, which reflects nutrient availability, responds species‐specifically to mixed‐species afforestation. However, how mixed species affect soil C:N:P stoichiometry with depth remains poorly understood. This knowledge gap is critical in the Loess Hilly Region, where understanding depth‐dependent nutrient dynamics is essential for ecological restoration and sustainable management. Here, we inv…

  • Salinity Enhances Soil Organic Carbon Stability in Hyper‐Arid Deserts via Increased Mineral‐Association Carbon and Microbial Carbon Use Efficiency

    Open Access•Jichao Zhang, Ji-Chao Zhang et al.•ARTICLE•Land Degradation and Development•2026

    Soil organic carbon (SOC) serves as the principal carbon reservoir in terrestrial ecosystems, significantly influencing soil quality and ecological processes. Typically characterized by slow mineralization rates and low external carbon inputs, saline soils generally exhibit low SOC storage. However, the effect of soil salt accumulation on SOC stability in hyper‐arid desert ecosystems remains poorly understood. This study employed the halophyte Ca…

  • Afforestation With Xerophytic Shrubs Promoted Soil Organic Carbon Stability in a Hyper‐Arid Environment of Desert

    Open Access•Guangxing Zhao, Akash Tariq et al.•ARTICLE•Land Degradation and Development•2025

    In desert ecosystems, afforestation with xerophytic shrubs has the potential to significantly increase soil nutrient levels by mitigating wind and soil erosion. Nevertheless, further investigation is required to elucidate the changes in soil organic carbon (SOC) fractions and stability on different soil depths with afforestation years. We collected soil samples from the 0–20, 20–60, and 60–100 cm depths of three xerophytic shrublands ages (3, 7, …

  • Shrub Afforestation Increases Microbial‐Derived Carbon in Arid Regions

    Open Access•Mengfei Cong, Zhihao Zhang et al.•ARTICLE•Land Degradation and Development•2025

    Soil organic carbon (SOC) primarily originates from microbial and plant‐derived carbon (C). Afforestation activities significantly influence the retention of these C sources. However, in arid regions where SOC is particularly sensitive to external disturbance, the impact of afforestation on microbial‐ and plant‐derived C, and their relative contributions to SOC, remains poorly understood. To address this knowledge gap, we investigated the relativ…

  • Potential impacts of pandemics on global warming, agricultural production, and biodiversity loss

    Open Access•Yuankang Xiong, Rong Wang et al.•ARTICLE•One Earth•2024

    come from teaching and research institutions in France or abroad, or from public or private research centers. L'archive ouverte pluridisciplinaire HAL, est destine au dpt et la diffusion de documents scientifiques de niveau recherche, publis ou non, manant des tablissements d'enseignement et de recherche franais ou trangers, des laboratoires publics ou privs

  • Future hotter summer greatly increases residential electricity consumption in Beijing: A study based on different house layouts and shared socioeconomic pathways

    Open Access•Qiyuan Hu, Jiayue Tang et al.•ARTICLE•Sustainable Cities and Society•2023

  • Individual and mixed effects of slag and biochar on soil aggregates and their carbon concentration and on fungal community structure in subtropical early‐ and late‐cropping paddy fields

    Open Access•Qiang Jin, Weiqi Wang et al.•ARTICLE•Land Degradation and Development•2022

    Aggregates are the basis for the formation of a good soil structure. Soil fungi community plays an important role in soil nutrient transformation, soil aggregate formation and ecological balance of the plant–soil system. However, little is known about the multi‐year response of soil aggregates, their carbon concentrations and fungal community structure to different exogenous agents in double cropping paddy fields in southern China. Therefore, we …

  • Identifying a suitable revegetation method for soil organic carbon, nitrogen, and phosphorus sequestration: A 16‐year in situ experiment on abandoned farmland in a semiarid area of the Loess Plateau, …

    Open Access•Xin Song, Chao Fang et al.•ARTICLE•Land Degradation and Development•2022

    Legume pasture species have been widely used to re‐establish vegetation cover and control soil erosion in semiarid degraded ecosystems. Nevertheless, the long‐term effects of revegetation on aboveground biomass (AB) and the soil properties under different topographies remain unclear. We conducted a 16‐year in situ experiment to evaluate soil properties and biomass dynamics under fallow, sweet clover ( Melilotus officinalis L.) and alfalfa ( Medic…

  • A systematic global stocktake of evidence on human adaptation to climate change

    Open Access•Lea Berrang-Ford, A R Siders et al.•ARTICLE•Nature Climate Change•2021

  • Influences of international agricultural trade on the global phosphorus cycle and its associated issues

    Open Access•Fei Lun, Jordi Sardans et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 3

  • Multiple trade‐offs between maximizing yield and minimizing greenhouse gas production in Chinese rice croplands

    Open Access•Weiqi Wang, Chun Wang et al.•ARTICLE•Land Degradation and Development•2020

    Globally, paddy fields are a major anthropogenic source of greenhouse gas (GHG) emissions from agriculture. There is, however, limited understanding of relationships between GHG production with fertilizer management, rice varieties, and soil variables. This information is crucial for minimizing the climatic impacts of rice agriculture. Here, we examined the relationships between soil GHG production and management practices throughout China. The c…

  • Country-Level Relationships of the Human Intake of N and P, Animal and Vegetable Food, and Alcoholic Beverages with Cancer and Life Expectancy

    Open Access•Josep Peñuelas, Tamás Krisztin et al.•ARTICLE•International Journal of…•2020

    Our analyses, thus, yielded four generally consistent conclusions. First, the excessive intake of terrestrial animal food, especially the levels of protein, N, and P, is associated with higher prevalence of cancer, whereas equivalent intake from vegetables is associated with lower prevalence. Second, no consistent relationship was found for food N:P ratio and cancer prevalence. Third, the consumption of alcoholic beverages correlates with prevale…

  • Using research networks to create the comprehensive datasets needed to assess nutrient availability as a key determinant of terrestrial carbon cycling

    Open Access•Sara Vicca, Benjamin D Stocker et al.•ARTICLE•Environmental Research Letters•2018

    A wide range of research shows that nutrient availability strongly influences terrestrial carbon (C) cycling and shapes ecosystem responses to environmental changes and hence terrestrial feedbacks to climate. Nonetheless, our understanding of nutrient controls remains far from complete and poorly quantified, at least partly due to a lack of informative, comparable, and accessible datasets at regional-to-global scales. A growing research infrastru…

  • Revisiting the role of high‐energy Pacific events in the environmental and cultural history of Easter Island (Rapa Nui)

    Open Access•Olga Margalef, José Antonio Álvarez Gómez et al.•ARTICLE•Geographical Journal•2018•References: 72

    Pacific islands are spread over thousands of kilometres of the Pacific Basin and are characterised by similar ecological features but very diverse geologic origins, from steep volcanoes to flat coral atolls. Several climatic phases have been shared across the region within the last 1,000 years. Numerous and abrupt societal and cultural changes during the same period have been described for islands separated by thousands of kilometres. Conspicuous…

  • Typhoon enhancement of N and P release from litter and changes in the litter N: P ratio in a subtropical tidal wetland

    Open Access•Weiqi Wang, Jordi Sardans et al.•ARTICLE•Environmental Research Letters•2016

    Litter production and decomposition are key processes controlling the capacity of wetland to store and cycle carbon (C) and nutrients. Typhoons deposit large amounts of green and semi-green (between green and withered) plant tissues and withered litter(normal litter) on wetland soils, generating a pulse of litter production. Climatic models project an increase in typhoon intensity and frequency. Elucidating the impacts of typhoons on C, N and P c…

  • Influences of international agricultural trade on the global phosphorus cycle and its associated issues

    Open Access•Fei Lun, Jordi Sardans et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 3

  • Typhoon enhancement of N and P release from litter and changes in the litter N: P ratio in a subtropical tidal wetland

    Open Access•Weiqi Wang, Jordi Sardans et al.•ARTICLE•Environmental Research Letters•2016

    Litter production and decomposition are key processes controlling the capacity of wetland to store and cycle carbon (C) and nutrients. Typhoons deposit large amounts of green and semi-green (between green and withered) plant tissues and withered litter(normal litter) on wetland soils, generating a pulse of litter production. Climatic models project an increase in typhoon intensity and frequency. Elucidating the impacts of typhoons on C, N and P c…

  • Using research networks to create the comprehensive datasets needed to assess nutrient availability as a key determinant of terrestrial carbon cycling

    Open Access•Sara Vicca, Benjamin D Stocker et al.•ARTICLE•Environmental Research Letters•2018

    A wide range of research shows that nutrient availability strongly influences terrestrial carbon (C) cycling and shapes ecosystem responses to environmental changes and hence terrestrial feedbacks to climate. Nonetheless, our understanding of nutrient controls remains far from complete and poorly quantified, at least partly due to a lack of informative, comparable, and accessible datasets at regional-to-global scales. A growing research infrastru…

  • Revisiting the role of high‐energy Pacific events in the environmental and cultural history of Easter Island (Rapa Nui)

    Open Access•Olga Margalef, José Antonio Álvarez Gómez et al.•ARTICLE•Geographical Journal•2018•References: 72

    Pacific islands are spread over thousands of kilometres of the Pacific Basin and are characterised by similar ecological features but very diverse geologic origins, from steep volcanoes to flat coral atolls. Several climatic phases have been shared across the region within the last 1,000 years. Numerous and abrupt societal and cultural changes during the same period have been described for islands separated by thousands of kilometres. Conspicuous…

  • Multiple trade‐offs between maximizing yield and minimizing greenhouse gas production in Chinese rice croplands

    Open Access•Weiqi Wang, Chun Wang et al.•ARTICLE•Land Degradation and Development•2020

    Globally, paddy fields are a major anthropogenic source of greenhouse gas (GHG) emissions from agriculture. There is, however, limited understanding of relationships between GHG production with fertilizer management, rice varieties, and soil variables. This information is crucial for minimizing the climatic impacts of rice agriculture. Here, we examined the relationships between soil GHG production and management practices throughout China. The c…

  • Country-Level Relationships of the Human Intake of N and P, Animal and Vegetable Food, and Alcoholic Beverages with Cancer and Life Expectancy

    Open Access•Josep Peñuelas, Tamás Krisztin et al.•ARTICLE•International Journal of…•2020

    Our analyses, thus, yielded four generally consistent conclusions. First, the excessive intake of terrestrial animal food, especially the levels of protein, N, and P, is associated with higher prevalence of cancer, whereas equivalent intake from vegetables is associated with lower prevalence. Second, no consistent relationship was found for food N:P ratio and cancer prevalence. Third, the consumption of alcoholic beverages correlates with prevale…

  • A systematic global stocktake of evidence on human adaptation to climate change

    Open Access•Lea Berrang-Ford, A R Siders et al.•ARTICLE•Nature Climate Change•2021

  • Influences of international agricultural trade on the global phosphorus cycle and its associated issues

    Open Access•Fei Lun, Jordi Sardans et al.•ARTICLE•Global Environmental Change•2021•Cited by: 2•References: 3

  • Individual and mixed effects of slag and biochar on soil aggregates and their carbon concentration and on fungal community structure in subtropical early‐ and late‐cropping paddy fields

    Open Access•Qiang Jin, Weiqi Wang et al.•ARTICLE•Land Degradation and Development•2022

    Aggregates are the basis for the formation of a good soil structure. Soil fungi community plays an important role in soil nutrient transformation, soil aggregate formation and ecological balance of the plant–soil system. However, little is known about the multi‐year response of soil aggregates, their carbon concentrations and fungal community structure to different exogenous agents in double cropping paddy fields in southern China. Therefore, we …

  • Identifying a suitable revegetation method for soil organic carbon, nitrogen, and phosphorus sequestration: A 16‐year in situ experiment on abandoned farmland in a semiarid area of the Loess Plateau, …

    Open Access•Xin Song, Chao Fang et al.•ARTICLE•Land Degradation and Development•2022

    Legume pasture species have been widely used to re‐establish vegetation cover and control soil erosion in semiarid degraded ecosystems. Nevertheless, the long‐term effects of revegetation on aboveground biomass (AB) and the soil properties under different topographies remain unclear. We conducted a 16‐year in situ experiment to evaluate soil properties and biomass dynamics under fallow, sweet clover ( Melilotus officinalis L.) and alfalfa ( Medic…

  • Future hotter summer greatly increases residential electricity consumption in Beijing: A study based on different house layouts and shared socioeconomic pathways

    Open Access•Qiyuan Hu, Jiayue Tang et al.•ARTICLE•Sustainable Cities and Society•2023

  • Potential impacts of pandemics on global warming, agricultural production, and biodiversity loss

    Open Access•Yuankang Xiong, Rong Wang et al.•ARTICLE•One Earth•2024

    come from teaching and research institutions in France or abroad, or from public or private research centers. L'archive ouverte pluridisciplinaire HAL, est destine au dpt et la diffusion de documents scientifiques de niveau recherche, publis ou non, manant des tablissements d'enseignement et de recherche franais ou trangers, des laboratoires publics ou privs

  • Afforestation With Xerophytic Shrubs Promoted Soil Organic Carbon Stability in a Hyper‐Arid Environment of Desert

    Open Access•Guangxing Zhao, Akash Tariq et al.•ARTICLE•Land Degradation and Development•2025

    In desert ecosystems, afforestation with xerophytic shrubs has the potential to significantly increase soil nutrient levels by mitigating wind and soil erosion. Nevertheless, further investigation is required to elucidate the changes in soil organic carbon (SOC) fractions and stability on different soil depths with afforestation years. We collected soil samples from the 0–20, 20–60, and 60–100 cm depths of three xerophytic shrublands ages (3, 7, …

  • Shrub Afforestation Increases Microbial‐Derived Carbon in Arid Regions

    Open Access•Mengfei Cong, Zhihao Zhang et al.•ARTICLE•Land Degradation and Development•2025

    Soil organic carbon (SOC) primarily originates from microbial and plant‐derived carbon (C). Afforestation activities significantly influence the retention of these C sources. However, in arid regions where SOC is particularly sensitive to external disturbance, the impact of afforestation on microbial‐ and plant‐derived C, and their relative contributions to SOC, remains poorly understood. To address this knowledge gap, we investigated the relativ…

  • Depth‐Dependent Soil C: N:P Stoichiometry in Robinia pseudoacacia Mixed Versus Pure Stands and Its Drivers in the Chinese Loess Hilly Region

    Open Access•Senbao Lu, Yarong Sun et al.•ARTICLE•Land Degradation and Development•2026

    Soil carbon (C): nitrogen (N): phosphorus (P) stoichiometry, which reflects nutrient availability, responds species‐specifically to mixed‐species afforestation. However, how mixed species affect soil C:N:P stoichiometry with depth remains poorly understood. This knowledge gap is critical in the Loess Hilly Region, where understanding depth‐dependent nutrient dynamics is essential for ecological restoration and sustainable management. Here, we inv…

  • Salinity Enhances Soil Organic Carbon Stability in Hyper‐Arid Deserts via Increased Mineral‐Association Carbon and Microbial Carbon Use Efficiency

    Open Access•Jichao Zhang, Ji-Chao Zhang et al.•ARTICLE•Land Degradation and Development•2026

    Soil organic carbon (SOC) serves as the principal carbon reservoir in terrestrial ecosystems, significantly influencing soil quality and ecological processes. Typically characterized by slow mineralization rates and low external carbon inputs, saline soils generally exhibit low SOC storage. However, the effect of soil salt accumulation on SOC stability in hyper‐arid desert ecosystems remains poorly understood. This study employed the halophyte Ca…

Ecology (13 works) · Biology (12 works) · Environmental Science (12 works) · Soil Carbon and Nitrogen Dynamics (8 works) · Agronomy (6 works) · Climate change (5 works) · Soil carbon (5 works) · Soil water (5 works) · Agriculture (4 works) · Carbon fibers (4 works)

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