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首页> 外文期刊>Arabian journal of geosciences >Spectroscopic and chromatographic investigation of soil organic matter composition for different agrosystems from arid saline soils from Southeastern Tunisia
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Spectroscopic and chromatographic investigation of soil organic matter composition for different agrosystems from arid saline soils from Southeastern Tunisia

机译:来自东南突尼斯干旱盐土壤土壤有机质组合物的光谱和色谱研究

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摘要

In Tunisia, several studies estimated the soil organic matter (SOM) stocks. However, little is known about SOM composition and dynamics especially in arid regions. Globally, arid soils of Tunisia are saline. This study aims to investigate the composition and stability of SOM in salt-affected soils under different vegetation covers in Southeastern Tunisia. Two depths are sampled in ten profiles from different localities. SOM composition was assessed by FTIR spectroscopy and gas chromatography-mass spectrometry (GC/MS). The results showed that, despite the differences of studied soils, SOM contents are low (< 20 g/kg) and decrease with soil depth. The lowest content of SOM is attributed to native soils which suggest that SOM in arid saline soils is mainly controlled by available litter input. FTIR spectroscopy revealed that SOM is predominated by polysaccharides, aliphatic C, and aromatic C. Polysaccharides and aliphatic C increased with soil depth for agricultural and native soils. However, aromatic C increased with soil depth for agricultural soils, while it decreased for native soils. Agricultural soils are enriched in aliphatic C and polysaccharides compared with native soils that had higher content of aromatic C. Thus, the chemical composition of SOM in arid saline soils is strongly influenced by litter input quality and decomposition rate of SOM. GC/MS analyses which showed the predominance of mid-chain n-alkanes confirm those finding. Because of their relative recalcitrance and/or their protection by association with soil minerals, polysaccharides, mid-chain n-alkanes, aliphatic C, and aromatic C may have crucial effect on SOM stabilization in arid saline soils.
机译:在突尼斯,几项研究估计了土壤有机物(SOM)股。然而,对于SOM组成和动态特别是在干旱地区的情况下知之甚少。在全球范围内,突尼斯的干旱土壤是盐水。本研究旨在探讨SOM在突尼斯东南部的不同植被覆盖下的盐受影响的土壤中的组成和稳定性。两个深度从不同地点的十个配置文件中采样。通过FTIR光谱和气相色谱 - 质谱(GC / MS)评估SOM组合物。结果表明,尽管研究了土壤的差异,但SOM含量低(<20g / kg),并随着土壤深度减少。 SOM的最低含量归因于本地土壤,表明干旱盐渍土中的SOM主要由可用的垃圾输入控制。 FTIR光谱显示,SOM由多糖,脂族C和芳族C.多糖和脂肪族C的占主导地位,而农业和天然土壤的土壤深度增加。然而,芳香族C随着农业土壤的土壤深度而增加,而原生土壤减少。与具有较高芳族C的天然土壤相比,农业土壤富含脂肪族C和多糖。因此,干旱盐渍土中SOM的化学成分受到凋落物的影响强烈影响SOM的分解率。 GC / MS分析显示中链N-烷烃的优势证实了那些发现。由于它们通过与土壤矿物质结合的相对核批量和/或它们的保护,多糖,中链N-烷烃,脂族C和芳族C可能对干旱盐渍土中的SOM稳定化至关重要。

著录项

  • 来源
    《Arabian journal of geosciences》 |2020年第13期|共13页
  • 作者单位

    Univ Gabes Fac Sci Gabes Res Unit Geosyst Georessources &

    Geoenvironm 3G Gabes 6072 Tunisia;

    Univ Gabes Fac Sci Gabes Res Unit Geosyst Georessources &

    Geoenvironm 3G Gabes 6072 Tunisia;

    Univ Paul Sabatier Univ Toulouse Fac Pharm Toulouse Lab IMRCP UMR CNRS 5623 118 Route Narbonne F-31062 Toulouse France;

    Univ Gabes High Inst Appl Biol Med Res Unit Valorizat Act Biomol Gabes Tunisia;

    Univ Gabes Fac Sci Gabes Res Unit Geosyst Georessources &

    Geoenvironm 3G Gabes 6072 Tunisia;

    Univ Gabes Fac Sci Gabes Res Unit Geosyst Georessources &

    Geoenvironm 3G Gabes 6072 Tunisia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

    Soil organic matter; FTIR; GC; MS; Salinity; Arid soils; Tunisia;

    机译:土壤有机物;FTIR;GC;MS;盐度;干旱的土壤;突尼斯;

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