首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Molecular features of organic matter in diagnostic horizons from andosols as seen by analytical pyrolysis
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Molecular features of organic matter in diagnostic horizons from andosols as seen by analytical pyrolysis

机译:分析热解法从雄激素中诊断视野中有机物的分子特征

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Andosols are usually formed from volcanic substrates, with thick A horizons high in organic carbon mainly in the form of stabilized humic fractions. The peculiar properties of these soils are, to large extent, affected by poorly crystalline materials like allophanes, imogolite and other Fe and Al oxyhydroxides that induce intense organo-mineral interactions which are considered to play a relevant role in OM protection against biodegradation as regards other soils developed under similar climatic conditions. Little is known about the molecular composition of this stabilized OM in a soil scenario often considered as an efficient C-sink in terms of C sequestration processes. Whole soil samples in addition to isolated humic and fulvic acids from organic A horizons of three soils with andic properties and one non-andic soil (Sodic Cambisol) from the island of Tenerife (Canary Islands, Spain) were analysed by double shot pyrolysis-gas chromatography-mass spectrometry (Py-GC/MS) in order to get some insight on the molecular composition of different structural domains of progressive structural stability. Clear differences were found between soils, both in thermal desorption and pyrolysis behaviour of humic substances. In general the results suggest large yields of aliphatic (both alkyl and carbohydrate-derived pyrolysis compounds) pointing to high-performance processes of incorporation of aliphatic humic constituents in andosols probably favoured by interactions with amorphous minerals, whereas in non-andic soils the latter are comparatively less stabilized and are removed in early pyrolysis stages as if they occurred as loosely joined, thermoevaporation-released products. In fact, compared to Cambisol, humic and fulvic acids from andic soils led to comparatively richer pyrograms and compound assemblages. The lack of similar amounts of these loosely joined, mainly aliphatic structures after thermal desorption of the whole andic soils indicate an origin for humic substances based on rapid sequestration of C-forms of recent (litter or microbial) origin.
机译:雄激素通常由火山基质形成,有机碳含量较高的A层较厚,主要是稳定的腐殖质馏分形式。这些土壤的特殊性质在很大程度上受到结晶性较差的物质的影响,例如别铝烷,依云母以及其他氢氧化铁和铝的氢氧化物,这些物质会引起强烈的有机矿物质相互作用,这些相互作用被认为对有机材料的抗微生物降解具有重要作用。在类似气候条件下发育的土壤。对于在土壤中通常被认为是固碳过程中有效的碳汇的土壤情境,这种稳定OM的分子组成知之甚少。通过双次热解气分析了来自特内里费岛(西班牙加那利群岛)的三种具有柱状特性的土壤和一种非柱状土壤(Sodic Cambisol)以及有机A层中分离的腐殖酸和富里酸的全土壤样品。色谱-质谱联用(Py-GC / MS),以便对渐进式结构稳定性的不同结构域的分子组成有所了解。在土壤之间的腐殖质的热解吸和热解行为方面存在明显差异。总的来说,这些结果表明脂肪族化合物(烷基和碳水化合物衍生的热解化合物)的收率很高,这表明高性能的将脂肪族腐殖质成分掺入安定溶胶的过程可能与无定形矿物相互作用,而在非安迪奇土壤中则是后者。稳定性较差,在热解早期就被除去,就好像它们是松散连接的,热蒸发释放的产物一样。实际上,与坎比索尔相比,来自安迪奇土壤的腐殖酸和黄腐酸导致了相对更丰富的热解图和化合物组合。在整个安迪奇土壤热解吸后,缺乏相似数量的这些松散连接的,主要是脂肪族的结构,表明腐殖质的起源是基于对近期(凋落物或微生物)起源的C型的快速隔离。

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