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zadetkov: 123
1.
  • Fungal necromass presents a... Fungal necromass presents a high potential for Mercury immobilization in soil
    Maillard, François; Pflender, Stéphane; Heckman, Katherine A. ... Chemosphere (Oxford), January 2023, 2023-01-00, 20230101, 2023-01, Letnik: 311
    Journal Article
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    Odprti dostop

    Past industrial activities have generated many contaminated lands from which Mercury (Hg) escapes, primarily by volatilization. Current phytomanagement techniques aim to limit Hg dispersion by ...
Celotno besedilo
2.
  • Beyond clay Beyond clay
    Rasmussen, Craig; Heckman, Katherine; Wieder, William R. ... Biogeochemistry, 02/2018, Letnik: 137, Številka: 3
    Journal Article
    Recenzirano
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    Improved quantification of the factors controlling soil organic matter (SOM) stabilization at continental to global scales is needed to inform projections of the largest actively cycling terrestrial ...
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3.
  • Apparent climate-mediated l... Apparent climate-mediated loss and fragmentation of core habitat of the American pika in the Northern Sierra Nevada, California, USA
    Stewart, Joseph A E; Wright, David H; Heckman, Katherine A PloS one, 08/2017, Letnik: 12, Številka: 8
    Journal Article
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    Contemporary climate change has been widely documented as the apparent cause of range contraction at the edge of many species distributions but documentation of climate change as a cause of ...
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4.
  • Networking our science to c... Networking our science to characterize the state, vulnerabilities, and management opportunities of soil organic matter
    Harden, Jennifer W.; Hugelius, Gustaf; Ahlström, Anders ... Global change biology, February 2018, Letnik: 24, Številka: 2
    Journal Article
    Recenzirano
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    Soil organic matter (SOM) supports the Earth's ability to sustain terrestrial ecosystems, provide food and fiber, and retains the largest pool of actively cycling carbon. Over 75% of the soil organic ...
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5.
  • Improving understanding of ... Improving understanding of soil organic matter dynamics by triangulating theories, measurements, and models
    Blankinship, Joseph C.; Berhe, Asmeret Asefaw; Crow, Susan E. ... Biogeochemistry, 08/2018, Letnik: 140, Številka: 1
    Journal Article
    Recenzirano

    Soil organic matter (SOM) turnover increasingly is conceptualized as a tension between accessibility to microorganisms and protection from decomposition via physical and chemical association with ...
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6.
  • Beyond bulk: Density fracti... Beyond bulk: Density fractions explain heterogeneity in global soil carbon abundance and persistence
    Heckman, Katherine; Hicks Pries, Caitlin E.; Lawrence, Corey R. ... Global change biology, February 2022, Letnik: 28, Številka: 3
    Journal Article
    Recenzirano

    Understanding the controls on the amount and persistence of soil organic carbon (C) is essential for predicting its sensitivity to global change. The response may depend on whether C is unprotected, ...
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7.
  • Fire History and Long-Term ... Fire History and Long-Term Carbon Accumulation in Hemi-boreal Peatlands
    Uhelski, Dominic M.; Kane, Evan S.; Heckman, Katherine A. ... Ecosystems (New York), 11/2023, Letnik: 26, Številka: 7
    Journal Article
    Recenzirano

    Fire can play an important role in peatlands by modifying plant communities and carbon (C) stocks. However, baseline disturbance data on peatland fire history are lacking in the hemi-boreal region. ...
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8.
  • Warming drives a ‘hummockif... Warming drives a ‘hummockification’ of microbial communities associated with decomposing mycorrhizal fungal necromass in peatlands
    Maillard, François; Fernandez, Christopher W.; Mundra, Sunil ... The New phytologist, June 2022, 2022-Jun, 2022-06-00, 20220601, Letnik: 234, Številka: 6
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    Summary Dead fungal mycelium (necromass) represents a critical component of soil carbon (C) and nutrient cycles. Assessing how the microbial communities associated with decomposing fungal necromass ...
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9.
  • Moisture-driven divergence ... Moisture-driven divergence in mineral-associated soil carbon persistence
    Heckman, Katherine A; Possinger, Angela R; Badgley, Brian D ... Proceedings of the National Academy of Sciences - PNAS, 02/2023, Letnik: 120, Številka: 7
    Journal Article
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    Mineral stabilization of soil organic matter is an important regulator of the global carbon (C) cycle. However, the vulnerability of mineral-stabilized organic matter (OM) to climate change is ...
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10.
  • Evidence for older carbon l... Evidence for older carbon loss with lowered water tables and changing plant functional groups in peatlands
    Stuart, Julia E. M.; Tucker, Colin L.; Lilleskov, Erik A. ... Global change biology, February 2023, 2023-02-00, 20230201, Letnik: 29, Številka: 3
    Journal Article
    Recenzirano

    A small imbalance in plant productivity and decomposition accounts for the carbon (C) accumulation capacity of peatlands. As climate changes, the continuity of peatland net C storage relies on rising ...
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zadetkov: 123

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