首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Coupling pyrolysis with mid-infrared spectroscopy (Py-MIRS) to fingerprint soil organic matter bulk chemistry
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Coupling pyrolysis with mid-infrared spectroscopy (Py-MIRS) to fingerprint soil organic matter bulk chemistry

机译:将热解与中红外光谱(Py-MIRS)耦合以指纹识别土壤有机质

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摘要

A novel method coupling pyrolysis with mid-infrared spectroscopy (Py-MIRS) was developed to characterize soil organic matter (SOM) chemistry in soils. The pyrolyzer was interfaced to the MIR spectrometer by means of a Brill cell (TM) (CDS Analytica). The set-up generates pyrolysis fingerprint spectra from which individual pyrolysis products can be related to SOM bulk chemistry. Py-MIRS development involved the testing of experimental conditions like pyrolysis temperature (550, 700, 1000 degrees C), heating rate (20 degrees C s(-1) and 20 degrees C ms(-1)) and time (15, 30 and 60 s) using reference standard compounds ranging from carbohydrates to phenols varying in chemical and structural composition like levoglusogan, gluten, tannin, syringol, pectin and leucine falling within different compound categories (carbohydrates, amino acids, proteins, phenols, etc.) as well as soil samples. Pyrolysis yields of prominent specific functional groups, like aliphatics (C-H stretching at 2930 cm(-1)) and C=C aromatics (1510 cm(-1)), varied with pyrolysis temperature, heating rate and time. The preferred settings for high pyrolysis yield and minimized secondary reactions were obtained at a pyrolysis temperature of 700 degrees C, heating rate of 20 degrees C ms(-1) and heating time of 30 s. The suitability of Py-MIRS to detect changes in SOM composition was evaluated by comparing Py-MIRS results to Diffuse Reflectance Fourier Transform mid-Infrared Spectroscopy (DRIFTS) results. Soil samples taken from the Static Fertilization Experiment, Bad Lauchstadt, Germany (Chernozem) revealed a major SOM contribution of the peak at 1750 cm(-1) (C=O), followed by peaks at 950 (C-H), 1510 (C=C), 1176 (C-H, O-H) cm(-1), with smaller contributions from the 2930 (C-H) and 3015 (CH4) cm(-1) peaks, apart from a dominant CO2 peak. Using the preferred pyrolysis settings, Py-MIRS as well as DRIFTS results further indicated that soils receiving organic (e.g. farmyard manure) inputs were highly enriched in aliphatic groups, while their absence favored the accumulation of carboxyl and aromatic groups as well as polysaccharides. Py-MIRS allowed via semi-quantification of pyrolysis products a rapid monitoring of SOM bulk chemistry with a high degree of reproducibility. It was concluded that Py-MIRS represents a fast, effective and reproducible technique to characterize changes in the SOM bulk chemistry as a result of management practices. It also allows to minimize acknowledged constraints of other analytical techniques used to characterize SOM bulk chemistry such as mineral interferences and associated secondary reactions.
机译:开发了一种将热解与中红外光谱法(Py-MIRS)结合的新方法,以表征土壤中的土壤有机物(SOM)化学性质。通过Brill池(TM)(CDS Analytica)将热解器与MIR光谱仪连接。该设置会生成热解指纹图谱,从中可以将各个热解产物与SOM本体化学联系起来。 Py-MIRS的开发涉及测试实验条件,例如热解温度(550、700、1000摄氏度),加热速率(20摄氏度(-1)和20摄氏度(-1))和时间(15、30和60 s)使用化学组成和结构组成各异的参考标准化合物,如碳水化合物,面筋,单宁,丁香酚,果胶和亮氨酸,它们属于不同的化合物类别(碳水化合物,氨基酸,蛋白质,酚等)以及土壤样品。诸如脂肪族化合物(C-H在2930 cm(-1)处拉伸)和C = C芳香族化合物(1510 cm(-1))等突出的特定官能团的热解产率随热解温度,加热速率和时间而变化。在700℃的热解温度,20℃ms(-1)的加热速率和30 s的加热时间下可获得高热解产率和最小化副反应的优选设置。通过将Py-MIRS结果与漫反射傅里叶变换中红外光谱(DRIFTS)结果进行比较,评估了Py-MIRS检测SOM成分变化的适用性。从德国巴特劳特施塔特(Chernozem)的静态施肥实验获得的土壤样品显示,SOM的主要贡献峰出现在1750 cm(-1)(C = O),随后是950(CH),1510(C = C),1176(CH,OH)cm(-1),2930(CH)和3015(CH4)cm(-1)峰的贡献较小,除了主要的CO2峰。使用优选的热解设置,Py-MIRS和DRIFTS结果进一步表明,接受有机(例如农家粪肥)输入的土壤高度富含脂肪族基团,而缺乏它们则有利于羧基和芳香族基团以及多糖的积累。通过热解产物的半定量,Py-MIRS可以快速监测SOM本体化学,并具有高度的可重复性。结论是,Py-MIRS代表了一种快速,有效和可重现的技术,可表征由于管理实践而导致的SOM本体化学变化。它还可以最大程度地减少用于表征SOM本体化学特性的其他分析技术(例如矿物干扰和相关的副反应)的公认限制。

著录项

  • 来源
    《Journal of Analytical & Applied Pyrolysis》 |2018年第8期|176-184|共9页
  • 作者单位

    Univ Hohenheim, Inst Agr Sci Trop, Hans Ruthenberg Inst, D-70593 Stuttgart, Germany;

    Univ Hohenheim, Inst Agr Sci Trop, Hans Ruthenberg Inst, D-70593 Stuttgart, Germany;

    Univ Hohenheim, Inst Agr Sci Trop, Hans Ruthenberg Inst, D-70593 Stuttgart, Germany;

    INRA, Unite Mixte Rech Ecosys, Funct Ecol & Ecotoxicol Agroecosyst, Campus ParisAgroTech, F-78850 Paris, France;

    UFZ Helmholtz Ctr Environm Res, Dept Soil Ecol, D-06120 Halle, Germany;

    Swedish Univ Agr Sci SLU, Dept Ecol, Box 7044, S-75007 Uppsala, Sweden;

    Univ Hohenheim, Inst Crop Sci, D-70593 Stuttgart, Germany;

    Univ Hohenheim, Inst Agr Sci Trop, Hans Ruthenberg Inst, D-70593 Stuttgart, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pyrolysis; Mid-infrared spectroscopy; Soil organic matter; Fertilization;

    机译:热解;中红外光谱;土壤有机质;施肥;

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