Showing 121 - 140 results of 22,205 for search '(( significantly ((lower decrease) OR (teer decrease)) ) OR ( significant soil increased ))', query time: 0.81s Refine Results
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    <b>Manure improves temperature sensitivity of soil organic carbon by increasing soil alphaproteobacteria, phenols, and pH and decreasing soil esters</b> by Andong Cai (5237024)

    Published 2024
    “…Manure increased soil stable organic compounds relative to CK and chemical fertilizer. …”
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    Meta-regression analysis showing a non-statistically significant upward trend in the rates of <i>T</i>-seroprevalence in humans with increasing contamination of soil with <i>Toxocara</i> eggs. by Ali Rostami (1919863)

    Published 2019
    “…<p>Meta-regression analysis showing a non-statistically significant upward trend in the rates of <i>T</i>-seroprevalence in humans with increasing contamination of soil with <i>Toxocara</i> eggs.…”
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    Soil-water characteristic curve test data. by Haotian Guo (6620120)

    Published 2023
    “…Under the same matric suction, the total cohesion increases with the decrease of temperature. At a positive temperature, the effective internal friction angle increases with the decrease of temperature. …”
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    GDS unsaturated soil triaxial test system. by Haotian Guo (6620120)

    Published 2023
    “…Under the same matric suction, the total cohesion increases with the decrease of temperature. At a positive temperature, the effective internal friction angle increases with the decrease of temperature. …”
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    Nitrogen increases soil organic carbon accrual and alters its functionality by Bo Tang (14313110)

    Published 2023
    “…We found that N addition, on average, significantly increased POC and MAOC pools by 16.4% and 3.7%, respectively. …”
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    Raw_data_N_adition_increased_SOC_PNAS.xlsx by Guoyong Yan (14273351)

    Published 2025
    “…Thus, we conducted a long-term N addition experiment in a boreal forest to investigate whether and how N addition affects SOC, as well as how this effect is regulated by plant-soil-microbe synergies. We found that SOC significantly increased with N addition, driven by the combined responses of plants, soil, and microbes. …”