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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Effects of mineral characteristics on content, composition, and stability of organic matter fractions separated from seven forest topsoils of different pedogenesis
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Effects of mineral characteristics on content, composition, and stability of organic matter fractions separated from seven forest topsoils of different pedogenesis

机译:矿物特征对7种不同成因森林表层土壤中有机质组分含量,组成和稳定性的影响

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Mineral topsoils possess large organic carbon (OC) contents but there is only limited knowledge on the mechanisms controlling the preservation of organic matter (OM) against microbial decay. Samples were taken from the uppermost mineral topsoil horizon (0 to 5 cm) of seven sites under mature deciduous forest showing OC contents between 69 and 164 g kg(-1) and a wide range in mineral characteristics. At first, organic particles and the water-extractable OM were removed from the soil samples. Thereafter, Na-pyrophosphate extractable organic matter (OM(PY)), assumed to be indicative for OM bound via cation mediated interactions, and the OM remaining in the extraction residue (OM(ER)), supposed to be indicative for OM occluded in mechanically highly stable micro-aggregates, were sequentially separated and quantified. The composition of OM(PY) and OM(ER) was analyzed by FTIR and their stability by C-14 measurements. The OC remaining in the extraction residues accounted for 38 to 59% of the bulk soil OC (SOC) suggesting a much larger relevance of OM(ER) for the OM dynamic in the analyzed soils as compared with OM(PY) that accounted for 1.6 to 7.5% of the SOC. The FUR analyses revealed a lower relative proportion of C=O groups in OM(ER) compared to OM(PY) indicating differences in the degree of microbial processing between these fractions. Correlation analyses suggest an increase in the stability of OM(PY) with the soil pH and contents of Na-pyrophosphate soluble Fe, Al, and Mg and an increase in the stability of OM(ER) with the soil pH and the contents of clay and oxalate-soluble Fe and Al. Despite the detected influence of soil mineral characteristics on the turnover of OM(PY) and OM(ER), the Delta C-14 signatures indicated mean residence times less than 100 years. The presence of less stabilized OM in these fractions can be derived from methodological uncertainties and/or the fast cycling compartment of mineral-associated OM. (C) 2015 Elsevier B.V. All rights reserved.
机译:矿物表层土具有较大的有机碳(OC)含量,但对控制有机物(OM)防止微生物腐烂的机理了解甚少。从成熟落叶林下七个地点的最高矿物表层土壤层(0至5厘米)中取样,显示OC含量在69至164 g kg(-1)之间,并且矿物特征范围广泛。首先,从土壤样品中去除有机颗粒和水可萃取的OM。此后,焦磷酸钠可萃取有机物(OM(PY))被认为指示通过阳离子介导的相互作用而结合的OM,而残留在萃取残留物中的OM(OM(ER))被认为指示了OM被闭塞。机械上高度稳定的微聚集体被顺序分离和定量。通过FTIR分析OM(PY)和OM(ER)的组成,并通过C-14测量其稳定性。萃取残留物中残留的OC占散装土壤OC(SOC)的38%至59%,这表明OM(ER)与被分析土壤中OM动态的相关性要强于OM(PY),后者占1.6%。达到SOC的7.5%。 FUR分析显示,与OM(PY)相比,OM(ER)中C = O基团的相对比例较低,表明这些馏分之间的微生物加工程度有所不同。相关分析表明,OM(PY)的稳定性随土壤pH值和焦磷酸钠可溶性Fe,Al和Mg含量的增加而增加,OM(ER)的稳定性随土壤pH值和黏土含量的增加而增加和草酸盐可溶的铁和铝。尽管检测到土壤矿物特征对OM(PY)和OM(ER)的周转有影响,但Delta C-14信号表明平均停留时间少于100年。这些馏分中稳定度较低的OM的存在可以源自方法学上的不确定性和/或与矿物相关的OM的快速循环室。 (C)2015 Elsevier B.V.保留所有权利。

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