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  1. Article ; Online: Large perturbations in CO2 flux and subsequent chemosynthesis are induced in agricultural soil by the addition of elemental sulfur

    Brian P. Kelleher / Paul V. Flanagan / Kris M. Hart / Andre J. Simpson / Seth F. Oppenheimer / Brian T. Murphy / Shane S. O’Reilly / Sean F. Jordan / Anthony Grey / Aliyu Ibrahim / Christopher C. R. Allen

    Scientific Reports, Vol 7, Iss 1, Pp 1-

    2017  Volume 11

    Abstract: Abstract The microbial contribution to soil organic matter has been shown to be much larger than previously thought and thus it plays a major role in carbon cycling. Among soil microorganisms, chemoautotrophs can fix CO2 without sunlight and can glean ... ...

    Abstract Abstract The microbial contribution to soil organic matter has been shown to be much larger than previously thought and thus it plays a major role in carbon cycling. Among soil microorganisms, chemoautotrophs can fix CO2 without sunlight and can glean energy through the oxidation of reduced elements such as sulfur. Here we show that the addition of sulfur to soil results in an initial surge in production of CO2 through microbial respiration, followed by an order of magnitude increase in the capture of carbon from the atmosphere as elemental sulfur is oxidised to sulfate. Thiobacillus spp., take advantage of specific conditions to become the dominant chemoautotrophic group that consumes CO2. We discern the direct incorporation of atmospheric carbon into soil carbohydrate, protein and aliphatic compounds and differentiate these from existing biomass. These results suggest that chemoautotrophs can play a large role in carbon cycling and that this carbon is heavily influenced by land management practises.
    Keywords Medicine ; R ; Science ; Q
    Subject code 550
    Language English
    Publishing date 2017-07-01T00:00:00Z
    Publisher Nature Portfolio
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  2. Article ; Online: Global dataset of soil organic carbon in tidal marshes

    Tania L. Maxwell / André S. Rovai / Maria Fernanda Adame / Janine B. Adams / José Álvarez-Rogel / William E. N. Austin / Kim Beasy / Francesco Boscutti / Michael E. Böttcher / Tjeerd J. Bouma / Richard H. Bulmer / Annette Burden / Shannon A. Burke / Saritta Camacho / Doongar R. Chaudhary / Gail L. Chmura / Margareth Copertino / Grace M. Cott / Christopher Craft /
    John Day / Carmen B. de los Santos / Lionel Denis / Weixin Ding / Joanna C. Ellison / Carolyn J. Ewers Lewis / Luise Giani / Maria Gispert / Swanne Gontharet / José A. González-Pérez / M. Nazaret González-Alcaraz / Connor Gorham / Anna Elizabeth L. Graversen / Anthony Grey / Roberta Guerra / Qiang He / James R. Holmquist / Alice R. Jones / José A. Juanes / Brian P. Kelleher / Karen E. Kohfeld / Dorte Krause-Jensen / Anna Lafratta / Paul S. Lavery / Edward A. Laws / Carmen Leiva-Dueñas / Pei Sun Loh / Catherine E. Lovelock / Carolyn J. Lundquist / Peter I. Macreadie / Inés Mazarrasa / J. Patrick Megonigal / Joao M. Neto / Juliana Nogueira / Michael J. Osland / Jordi F. Pagès / Nipuni Perera / Eva-Maria Pfeiffer / Thomas Pollmann / Jacqueline L. Raw / María Recio / Ana Carolina Ruiz-Fernández / Sophie K. Russell / John M. Rybczyk / Marek Sammul / Christian Sanders / Rui Santos / Oscar Serrano / Matthias Siewert / Craig Smeaton / Zhaoliang Song / Carmen Trasar-Cepeda / Robert R. Twilley / Marijn Van de Broek / Stefano Vitti / Livia Vittori Antisari / Baptiste Voltz / Christy N. Wails / Raymond D. Ward / Melissa Ward / Jaxine Wolfe / Renmin Yang / Sebastian Zubrzycki / Emily Landis / Lindsey Smart / Mark Spalding / Thomas A. Worthington

    Scientific Data, Vol 10, Iss 1, Pp 1-

    2023  Volume 14

    Abstract: Abstract Tidal marshes store large amounts of organic carbon in their soils. Field data quantifying soil organic carbon (SOC) stocks provide an important resource for researchers, natural resource managers, and policy-makers working towards the ... ...

    Abstract Abstract Tidal marshes store large amounts of organic carbon in their soils. Field data quantifying soil organic carbon (SOC) stocks provide an important resource for researchers, natural resource managers, and policy-makers working towards the protection, restoration, and valuation of these ecosystems. We collated a global dataset of tidal marsh soil organic carbon (MarSOC) from 99 studies that includes location, soil depth, site name, dry bulk density, SOC, and/or soil organic matter (SOM). The MarSOC dataset includes 17,454 data points from 2,329 unique locations, and 29 countries. We generated a general transfer function for the conversion of SOM to SOC. Using this data we estimated a median (± median absolute deviation) value of 79.2 ± 38.1 Mg SOC ha−1 in the top 30 cm and 231 ± 134 Mg SOC ha−1 in the top 1 m of tidal marsh soils globally. This data can serve as a basis for future work, and may contribute to incorporation of tidal marsh ecosystems into climate change mitigation and adaptation strategies and policies.
    Keywords Science ; Q
    Subject code 550 ; 333
    Language English
    Publishing date 2023-11-01T00:00:00Z
    Publisher Nature Portfolio
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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  3. Book ; Online: The Earl of Kent's case Ranger and Ashmead. In a writ of error in Parliament. To be argued on Saturday the 18th of April, 1702

    Kent, Anthony Grey / Ashmeade, Christopher

    1702  

    Keywords Inheritance and succession
    Language English
    Size Online-Ressource (1 sheet), 1/2°
    Publishing place London
    Document type Book ; Online
    Note English Short Title Catalog, T25157 ; Reproduction of original from British Library ; Title from docket title; drop-head title: 'Charles Ranger, plaintiff. Christopher Ashmead, defendant. In a writ of error in Parliament.' - Signed: Wm Cowper ; With reference to the appeal heard in the House of Lords between Christopher Ashmeade, plaintiff, and Charles Ranger, defendant
    Database Former special subject collection: coastal and deep sea fishing

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