1,477,004
edits
(Created page with "{ "OpenAlex": { "id": "https://openalex.org/A5081435893", "orcid": "https://orcid.org/0000-0002-8096-1594", "display_name": "Gustaf Hugelius", "display_name_alternatives": [ "G. Hugelius", "Gustaf Hugelius", "Gustaf P. Hugelius" ], "works_count": 360, "cited_by_count": 16339, "summary_stats": { "2yr_mean_citedness": 7.322033898305085, "h_index": 58, "i10_index": 108 }, "ids": { "openalex"...") |
No edit summary |
||
Line 1,314: | Line 1,314: | ||
"created_date": "2023-07-21", | "created_date": "2023-07-21", | ||
"_id": "https://openalex.org/A5081435893" | "_id": "https://openalex.org/A5081435893" | ||
}, | |||
"ORCID": { | |||
"@context": "http://schema.org", | |||
"@type": "Person", | |||
"@id": "https://orcid.org/0000-0002-8096-1594", | |||
"mainEntityOfPage": "https://orcid.org/0000-0002-8096-1594", | |||
"givenName": "Gustaf", | |||
"familyName": "Hugelius", | |||
"@reverse": { | |||
"creator": [ | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.22541/au.170726683.31290879/v1", | |||
"name": "Soil nitrous oxide emissions across the northern high latitudes", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.22541/au.170726683.31290879/v1" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1111/sum.13004", | |||
"name": "Long\u2010term soil organic carbon changes after cropland conversion to grazed grassland in Southern Sweden", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1111/sum.13004" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.22541/essoar.169444320.01914726/v1", | |||
"name": "Two decades of permafrost region CO2, CH4, and N2O budgets suggest a small net greenhouse gas source to the atmosphere", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.22541/essoar.169444320.01914726/v1" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1002/2688-8319.12231", | |||
"name": "Floral resources in Swedish grasslands remain relatively stable under an experimental drought and are enhanced by soil amendments if regularly mown", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1002/2688-8319.12231" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41558-022-01566-4", | |||
"name": "Only halving emissions by 2030 can minimize risks of crossing cryosphere thresholds", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41558-022-01566-4" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1029/2022gb007487", | |||
"name": "Water Availability and Land Management Control Catchment\u2010Scale Agricultural Nitrogen and Phosphorous Use Efficiencies", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1029/2022gb007487" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41467-021-27101-1", | |||
"name": "Temperature effects on carbon storage are controlled by soil stabilisation capacities", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41467-021-27101-1" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41561-021-00769-2", | |||
"name": "No support for carbon storage of >1,000 GtC in northern peatlands", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41561-021-00769-2" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1080/01431161.2021.1897187", | |||
"name": "Aboveground biomass patterns across treeless northern landscapes", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1080/01431161.2021.1897187" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1029/2020ef001858", | |||
"name": "Mapping the Vulnerability of Arctic Wetlands to Global Warming", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1029/2020ef001858" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1029/2020gb006659", | |||
"name": "Permafrost Causes Unique Fine\u2010Scale Spatial Variability Across Tundra Soils", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1029/2020gb006659" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1126/sciadv.aaz5236", | |||
"name": "Spatial heterogeneity and environmental predictors of permafrost region soil organic carbon stocks", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1126/sciadv.aaz5236" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1029/2020ms002200", | |||
"name": "Reconstructing Past Global Vegetation With Random Forest Machine Learning, Sacrificing the Dynamic Response for Robust Results", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1029/2020ms002200" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41467-020-19208-8", | |||
"name": "A spatial emergent constraint on the sensitivity of soil carbon turnover to global warming", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41467-020-19208-8" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1073/pnas.1916387117", | |||
"name": "Large stocks of peatland carbon and nitrogen are vulnerable to permafrost thaw", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1073/pnas.1916387117" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41561-020-0607-0", | |||
"name": "Carbon loss from northern circumpolar permafrost soils amplified by rhizosphere priming", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41561-020-0607-0" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41558-020-0734-z", | |||
"name": "Reduced net methane emissions due to microbial methane oxidation in a warmer Arctic", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41558-020-0734-z" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1038/s41561-019-0526-0", | |||
"name": "Carbon release through abrupt permafrost thaw", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1038/s41561-019-0526-0" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1080/15230430.2019.1570784", | |||
"name": "Land cover and landform-based upscaling of soil organic carbon stocks on the Br\u00f8gger Peninsula, Svalbard", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1080/15230430.2019.1570784" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1002/2017gl075571", | |||
"name": "Permafrost Stores a Globally Significant Amount of Mercury", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1002/2017gl075571" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1111/gcb.13896", | |||
"name": "Networking our science to characterize the state, vulnerabilities, and management opportunities of soil organic matter", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1111/gcb.13896" | |||
} | |||
}, | |||
{ | |||
"@type": "CreativeWork", | |||
"@id": "https://doi.org/10.1002/2017jg004069", | |||
"name": "Short and Long\u2010Term Controls on Active Layer and Permafrost Carbon Turnover Across the Arctic", | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "doi", | |||
"value": "10.1002/2017jg004069" | |||
} | |||
} | |||
] | |||
}, | |||
"identifier": { | |||
"@type": "PropertyValue", | |||
"propertyID": "ResearcherID", | |||
"value": "C-9759-2011" | |||
} | |||
} | } | ||
} | } |