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Effects of sample pretreatment and particle size on the determination of nitrogen in soil by portable LIBS and potential use on robotic-borne remote Martian and agricultural soil analysis systems

机译:样品预处理和粒径对携带机器人远程火星和农业土壤分析系统的便携式客厅含氮测定的影响

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摘要

Field determination of nitrogen in soil is of interest for both terrestrial and Martian applications. Improved management of soil nitrogen levels on Earth could benefit global food production, whilst the determination of soil nitrogen on Mars is required to assess the planet's future habitability. In this study, a mobile laser induced breakdown spectroscopy (LIBS) system with a 1064 nm Nd:YAG laser delivering 25 mJ per pulse was used to assess the effects of sample pretreatment on the measurement of nitrogen in soil. Although pelletisation was preferred, simply milling the sample to <100 mm particle size - which may be more feasible on a remote rover-based analytical platform - improved the spectra obtained. Ablation craters formed in targets prepared from different particle size fractions of the same commercially-available topsoil showed a clear trend in morphology, with smaller particles yielding more uniform craters with fewer fractures. The LIBS emission intensity at 746.83 nm followed a similar trend to results obtained for total nitrogen content in the soil particle size fractions by microanalysis (Perkin Elmer CHN Elemental Analyser) and was well-correlated (R-2 = 0.94) with soil nitrate determined by ion chromatography (Dionex DX-100). Although correlations were less good when analysing field soil samples collected from central Scotland (R-2 = 0.82 for comparison between LIBS and microanalysis) the study nevertheless demonstrates the potential of portable LIBS for measurement of soil nitrogen content.
机译:陆地和火星应用的土壤中氮的田间测定。改善地球上土壤氮水平的管理可以使全球粮食生产受益,同时需要测定火星的土壤氮气来评估地球的未来居民。在该研究中,使用1064nm Nd:YAG激光递送每脉冲的1064nm Nd:YAG激光器的移动激光诱导的击穿光谱(Libs)系统来评估样品预处理对土壤中氮的测量的影响。尽管优选颗粒化,但简单地将样品研磨到<100mm粒度 - 在基于远程流动站的分析平台上可能更加可行 - 改善了所获得的光谱。在由不同粒度级分的不同粒度级分的靶中形成的消融陨石坑在形态学的明显趋势上显示出明显的趋势,较小的颗粒产生更均匀的裂缝,骨折较少。 LIBS发射强度为746.83 nm,然后通过微杀菌(Perkin Elmer CHN元素分析仪)对土壤粒度级别的总氮含量获得的结果相似的趋势,并且具有良好相关的(R-2 = 0.94),具有土壤硝酸盐离子色谱(Dionex DX-100)。虽然在分析从中央苏格兰(R-2 = 0.82的场地样品中,相关性的相关性较少,但研究仍然证明了用于测量土壤氮含量的便携式LIB的潜力。

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  • 来源
    《RSC Advances》 |2018年第64期|共9页
  • 作者单位

    Univ Strathclyde Dept Design Manufacture &

    Engn Management Space Mechatron Syst Technol Lab Glasgow Lanark Scotland;

    Univ Strathclyde Dept Design Manufacture &

    Engn Management Space Mechatron Syst Technol Lab Glasgow Lanark Scotland;

    Univ Strathclyde Dept Pure &

    Appl Chem WestCHEM Glasgow Lanark Scotland;

    China Acad Launch Vehicle Technol Beijing Peoples R China;

    China Acad Launch Vehicle Technol Beijing Peoples R China;

    Univ Strathclyde Dept Pure &

    Appl Chem WestCHEM Glasgow Lanark Scotland;

    STFC RAL Space Rutherford Appleton Lab Didcot Oxon England;

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  • 正文语种 eng
  • 中图分类 化学;
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