土壤中多种有机酸同时测定的高效液相色谱法

Determination of Organic Acids in Soil with High Performance Liquid Chromatography

  • 摘要:
    目的 土壤中多种有机酸同时测定,可以为陆地生态系统有机物周转和养分循环研究提供有效方法和重要数据。
    方法 通过对7种有机酸的色谱条件试验、样品前处理试验以及加标回收率试验,建立并优化了高效液相色谱法同时测定土壤中7种有机酸的测定方法。
    结果 采用AcclaimTM 120(C18,5 μm,4.6 × 250 mm)色谱柱,在30℃柱温,紫外检测波长210 nm,流动相为50.0 mM的Na2SO4溶液(甲烷磺酸调pH为2.65)与甲醇比为98∶2,进样量5 μL,在流速0.6 mL min−1时,进行等度洗脱分离。7种有机酸的色谱峰的不对称因子接近0.95 ~ 1.05,分离度均大于2.5,表明峰型较好,相邻两峰能够完全分离。理论塔板数均大于5000,表明色谱柱的柱效非常高。7种有机酸测定方法的加标回收率达到71.15% ~ 109.74%,空白加标重复样的相对标准偏差为0.95% ~ 4.68%,平行样的相对标准偏差为1.57% ~ 4.75%,各有机酸标准曲线相关系数均大于0.999。
    结论 高效液相色谱法同时测定多种有机酸含量的精确度较高,能满足土壤中有机酸定量测定的要求。

     

    Abstract:
    Objective The extensive analysis and determination of organic acids in soil or plants are crucial for supporting research on the organic matter turnover and nutrient cycling in terrestrial ecosystems.
    Method The optimized method for simultaneously determining 7 organic acids in soil by using High Performance Liquid Chromatography (HPLC) was established through experiments on chromatographic conditions, sample pretreatment and recovery rates of different samples.
    Result The method was validated by performing its linearity, recovery and precision. The separation was performed on an AcclaimTM 120 (C18, 5 μm, 4.6 × 250 mm) column at 30°C, 210 nm detection wavelength and isocratic elution with 50.0 mM Na2SO4 solution (adjusted to pH 2.65 with methanesulfonic acid) mixed with methanol in a ratio of 98:2 as mobile phase (0.6 mL min−1) and an injection sample’s volume of 5 μL. The chromatographic peaks of the 7 organic acids had asymmetry factors close to 0.95 ~ 1.05 and resolutions greater than 2.5, indicating good chromatographic peak shape and completed separation between two adjacent peaks. The theoretical plate numbers were all above 5000, demonstrating high column efficiency. The recovery rate of the added standard in soils and quartz sands ranged from 71.15% to 109.74%, the relative standard deviations for the blank samples with added standards ranged from 0.95% to 4.68%, while those for the parallel samples ranged from 1.57% to 4.75%, and the correlation coefficients for the calibration curves of all organic acids were greater than 0.999, indicating high precision of the instrument and method.
    Conclusion The High-performance Liquid Chromatography (HPLC) method for simultaneous determination of multiple organic acids was suitable for measuring the contents of organic acids in soil.

     

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