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No-till cropping systems and N fertilisation influences on organic matter composition of physical fractions of a subtropical Acrisol as assessed by analytical pyrolysis (Py-GC/MS)

机译:通过分析热解(Py-GC / MS)评估,免耕种植系统和氮肥对亚热带Acrisol物理组分有机物组成的影响

摘要

Aiming to investigate the influence of no-till cropping systems and nitrogen fertilisation on the organic matter composition of the whole soil, particulate organic matter (POM) and clay-size fraction of a subtropical Acrisol, Curie-point pyrolysis gas-chromatography/mass spectrometry (Py-GC/MS) was employed on samples from a long-term experiment of Southern Brazil. Furans, polyphenol derivatives (benzene, toluene and styrene), N-compounds (pyrrole and indole), lignin moieties (guaiacol and syringol derivatives) and aliphatic compounds were identified on the pyrograms. The whole soil of pigeon pea (Cajanus cajan) + maize (P + M) cropping system contained a higher number of lignin-derivatives and aliphatic moieties than the whole soil of grassland, bare soil and oat (Avena strigosa)/maize (O/M) cropping system. In POM fraction, most of the differences were also related to P + M cropping system, which contained higher styrene, indole and aliphatic biopolymers compared to the other cropping systems. The organic composition of clay fraction was not affected by cropping systems. The nitrogen fertilisation in P + M and O/M cropping systems did not change the quality of organic matter neither in whole soil nor in physical fractions. Lower signal intensities corresponding to lignin derivatives were observed for clay samples compared to those in the POM. The expressive signals of furans in the clay fraction indicate that polysaccharides are important constituents of the organic matter in this fraction. Possibly such labile compounds are being protected by organo-minerals interactions in clay. Curie-point Py-GC/MS analysis seems to be a useful tool for studying the organic matter quality of whole soil and physical fraction samples from different soil management systems.
机译:目的研究免耕耕作制度和氮肥对全土壤有机质组成,亚热带丙烯醛的颗粒有机质(POM)和黏土级分的影响,居里点热解气相色谱/质谱(Py-GC / MS)用于巴西南部长期实验的样品。在热解图中鉴定出了呋喃,多酚衍生物(苯,甲苯和苯乙烯),N化合物(吡咯和吲哚),木质素部分(愈创木酚和丁香酚衍生物)和脂肪族化合物。木豆(Cajanus cajan)+玉米(P + M)的整个土壤中,木质素衍生物和脂肪族部分的数量高于草地,裸土和燕麦(Avena strigosa)/玉米(O / M)种植系统。在POM分数中,大多数差异也与P + M种植系统有关,与其他种植系统相比,P + M种植系统包含更高的苯乙烯,吲哚和脂肪族生物聚合物。粘土部分的有机组成不受种植系统的影响。在P + M和O / M种植系统中,施氮不会改变整个土壤和物理部分的有机质。与POM相比,粘土样品的木质素衍生物信号强度较低。粘土级分中呋喃的表达信号表明多糖是该级分中有机物的重要成分。可能这种不稳定的化合物受到粘土中有机矿物相互作用的保护。居里点Py-GC / MS分析似乎是研究整个土壤和不同土壤管理系统的物理样品的有机物质量的有用工具。

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