Data for manuscript: 'Drought reduces formation, but enhances persistence, of mineral-associated organic matter in a grassland soil'
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Supporting data for the manuscript: Sokol, N.W., Foley, M., Blazewicz, S.J., DiDonato, N. Kew, W., Paša-Tolić, L.,Estera-Molina, K. Firestone, M., Greenlon, A., Hungate, B.A., Slessarev, E., Pett-Ridge, J. 2026. Drought reduces formation, but enhances persistence, of mineral-associated organic matter in a grassland soil. Global Change Biology.
本数据集为下述论文的支撑数据:Sokol, N.W.、Foley, M.、Blazewicz, S.J.、DiDonato, N.、Kew, W.、Paša-Tolić, L.、Estera-Molina, K.、Firestone, M.、Greenlon, A.、Hungate, B.A.、Slessarev, E.、Pett-Ridge, J. 2026年发表于《全球变化生物学(Global Change Biology)》的《干旱降低草原土壤中矿物结合态有机质(mineral-associated organic matter)的形成,但增强其留存持久性》一文。
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Zenodo创建时间:
2026-02-05



