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Determinants of soil organic matter chemistry in maritime temperate forest ecosystems

机译:海洋温带森林生态系统中土壤有机质化学的决定因素

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While the influence of climate, vegetation, management and abiotic site factors on total carbon budgets and turn-over is intensively assessed, the influences of these ecosystem properties on the chemical complexity of soil organic matter (SOM) remains poorly understood. This study addresses the chemical composition of NaOH-extracted SOM from maritime temperate forest sites in Flanders (Belgium) by pyrolysis-GC/MS. The studied forests were chosen based on dominant tree species (Pinus sylvestris, Fagus sylvatica, Quercus robur and Populus spp.), soil texture and soil-moisture conditions. Differences in extractable-SOM pyrolysis products were correlated to site variables including dominant tree species, management of the woody biomass, site history, soil properties, total carbon stocks and indicators for microbial activity. Despite of a typical high intercorrelation between these site variables, the influence of the dominant tree species is prominent. The extractable-SOM composition is strongly correlated to litter quality and available nutrients. In nutrient-poor forests with low litter quality, the decomposition of relatively recalcitrant compounds (i.e. short and mid-chain alkanes/alkenes and aromatic compounds) appears hampered, causing a relative accumulation of these compounds in the soil. However, if substrate quality is favorable, no accumulations of recalcitrant compounds were observed, not even under high soil-moisture conditions. Former heathland vegetation still had a profound influence on extractable-SOM chemistry of young pine forests after a minimum of 60 years.
机译:尽管对气候,植被,管理和非生物站点因素对总碳预算和周转的影响进行了深入评估,但这些生态系统特性对土壤有机物(SOM)的化学复杂性的影响仍然知之甚少。这项研究通过热解-GC / MS研究了从比利时弗兰德斯的海洋温带森林站点中提取的NaOH的SOM的化学组成。所研究的森林是根据优势树种(樟子松,青冈,阔叶栎和胡杨属),土壤质地和土壤湿度条件选择的。可提取的SOM热解产物的差异与场地变量相关,包括优势树种,木质生物量的管理,场地历史,土壤特性,总碳储量和微生物活性指标。尽管这些位点变量之间通常具有很高的相互关系,但优势树种的影响仍然很明显。可提取的SOM组成与垃圾质量和可用养分密切相关。在凋落质量低的营养贫瘠的森林中,相对顽固的化合物(即短链和中链烷烃/烯烃和芳香族化合物)的分解似乎受到阻碍,导致这些化合物在土壤中相对积累。但是,如果基质质量良好,则即使在高土壤湿度条件下也没有观察到顽固化合物的积累。至少60年后,以前的欧石南丛生植被仍然对年轻松树林的可提取SOM化学产生深远影响。

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