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Impact of expected global warming on C mineralization in maritime Antarctic soils: results of laboratory experiments

机译:预期的全球变暖对海洋南极土壤中碳矿化的影响:实验室实验的结果

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AbstractThis study concerned the fragility of maritime Antarctic soils under increasing temperature, using the C dynamics and structural characteristics of humic substances as indicators. Working with four representative soils from King George Island (Lithic Thiomorphic Cryosol (LTC1 and LTC2), Ornithogenic Cryosol (OG) and Gelic Organosol (ORG)) we evaluated the total organic C and nitrogen contents, the oxidizable C and humic substances. Soil samples were incubated to assess the amount of C potentially mineralizable at temperatures typical of an Antarctic summer (5–14°C). Humic acids showed a higher aliphatic character and a smaller number of condensed aromatic groups, which suggests that these molecules from Antarctic soils are generally less resistant to microbial degradation than humic acids molecules from other regions. Based on 13C NMR spectra of MAS and CP/MAS, samples of soil humic acids of mineral soils (LTC1 and LTC2) have a higher content of aliphatic C, and heteroatom C, with lower levels of carbonyl and aromatic C, when compared with organic matter-rich soils (OG and ORG). Increasing incubation temperature led to a higher rate of mineralizable C in all soils. A sequence of soil fragility was suggested - LTC1 and LTC2 > OG > ORG - which showed a correlation with the Q10 coefficient and the ratio of labile and recalcitrant C fractions of soil organic matter (R2 = 0.83).
机译:摘要本研究以腐殖质的C动力学和结构特征为指标,研究了温度升高引起的海洋南极土壤的脆弱性。我们研究了乔治国王岛的四种代表性土壤(硫亚硫型低温溶胶(LTC1和LTC2),鸟类致冷剂(OG)和Gelic有机溶胶(ORG)),评估了总有机碳和氮含量,可氧化的C和腐殖质。温育土壤样品以评估在南极夏季(5–14°C)的典型温度下可能矿化的C量。腐殖酸表现出更高的脂族特性和更少的稠合芳族基团,这表明与来自其他地区的腐殖酸分子相比,来自南极土壤的这些分子通常对微生物降解的抵抗力更弱。根据MAS和CP / MAS的13C NMR光谱,与有机相比,矿物土壤(LTC1和LTC2)的土壤腐殖酸样品具有较高的脂肪族C和杂原子C含量,而羰基和芳族C含量较低富含物质的土壤(OG和ORG)。孵育温度的升高导致所有土壤中矿化碳的比率更高。提出了土壤脆弱性序列-LTC1和LTC2> OG> ORG-它们与Q10系数和土壤有机质中不稳定和顽固C组分的比率相关(R2 = 0.83)。

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