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A multisyringe flow-through sequential extraction system for on-line monitoring of orthophosphate in soils and sediments

机译:一种多注射流通顺序提取系统,用于在线监测土壤和沉积物中的正磷酸盐

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摘要

A fully automated flow-through microcolumn fractionation system with on-line post-extraction derivatization is proposed for monitoring of orthophosphate in solid samples of environmental relevance. The system integrates dynamic sequential extraction using 1.0 mol l-1 NH4Cl, 0.1 mol l-1 NaOH and 0.5 mol l-1 HCl as extractants according to the Hietjles-Lijklema (HL) scheme for fractionation of phosphorus associated with different geological phases, and on-line processing of the extracts via the Molybdenum Blue (MB) reaction by exploiting multisyringe flow injection as the interface between the solid containing microcolumn and the flow-through detector. The proposed flow assembly, capitalizing on the features of the multicommutation concept, implies several advantages as compared to fractionation analysis in the batch mode in terms of saving of extractants and MB reagents, shortening of the operational times from days to hours, highly temporal resolution of the leaching process, and the capability for immediate decision for stopping or proceeding with the ongoing extraction. Very importantly, accurate determination of the various orthophosphate pools is ensured by minimization of the hydrolysis of extracted organic phosphorus and condensed inorganic phosphates within the time frame of the assay. The potential of the novel system for accommodation of the harmonized protocol from the Standards, Measurement and Testing (SMT) Program of the Commission of the European Communities for inorganic phosphorus fractionation was also addressed. Under the optimized conditions, the lowest detectable concentration at the 3σ level was ≤ 0.02 mg P l-1 for both the HL and SMT schemes regardless of the extracting media. The repeatability of the MB assay was better than 2.5 % and the dynamic linear range extended up to 7.0 mg P l-1 in NH4Cl and NaOH media and 15 mg P l-1 whenever HCl is utilized as extractant for both the HL and SMT protocols.
机译:提出了具有在线萃取后衍生作用的全自动流通式微柱分级分离系统,用于监测与环境相关的固体样品中的正磷酸盐。该系统根据Hietjles-Lijklema(HL)方案集成了使用1.0 mol l-1 NH4Cl,0.1 mol l-1 NaOH和0.5 mol l-1 HCl作为萃取剂的动态顺序萃取,以分馏与不同地质相有关的磷,以及通过利用多注射器流动注射作为含固体的微柱和流通检测器之间的界面,通过钼蓝(MB)反应对提取物进行在线处理。拟议的流程组装,利用多换向概念的特征,与分批模式下的分馏分析相比,在节省萃取剂和MB试剂,将操作时间从数天缩短为数小时,具有较高的时间分辨率方面具有许多优势。浸出过程,以及立即决定停止或进行正在进行的提取的能力。非常重要的是,通过在测定的时间范围内将萃取的有机磷和缩合的无机磷酸盐的水解减至最少,可以确保准确确定各种正磷酸盐。还讨论了欧洲共同体委员会无机磷分级分离的标准,测量和测试(SMT)计划提供的适用于协调协议的新型系统的潜力。在优化条件下,无论采用哪种萃取介质,HL和SMT方案在3σ浓度下的最低可检测浓度均≤0.02 mg P l-1。 MB测定的重复性优于2.5%,并且在HCl和HL均用于HCl萃取剂时,在NH4Cl和NaOH介质中动态线性范围扩展至7.0 mg P l-1和15 mg P l-1 。

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