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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Liquid waveguide spectrophotometric measurement of nanomolar ammonium in seawater based on the indophenol reaction with o-phenylphenol (OPP)
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Liquid waveguide spectrophotometric measurement of nanomolar ammonium in seawater based on the indophenol reaction with o-phenylphenol (OPP)

机译:基于邻苯酚(OPP)的吲哚酚反应的液体波导光度法测定海水中的纳摩尔铵

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摘要

We describe a highly sensitive colorimetric method for the determination of nanomolar concentrations of ammonium in seawater based on the indophenol reaction with o-phenylphenol [(1,1'-biphenyl)-2-ol, abbreviated as OPP]. OPP is available as non-toxic, stable flaky crystals with no caustic odor and has some advantages over phenol in practical use. The method was established by using a gas-segmented continuous flow analyzer equipped with two types of long path liquid waveguide capillary cell, LWCCs (100 cm and 200 cm) and an UltraPath (200 cm), which have inner diameters of 0.55 mm and 2 mm, respectively. The reagent concentrations, flow rates of the pumping tubes, and reaction path and temperature were determined on the basis of a manual indophenol blue method with OPP (Kanda, Water Res. 29 (1995) 2746-2750). The sample mixed with reagents that form indophenol blue dye was measured at 670 nm. Aged subtropical surface water was used as a blank, a matrix of standards, and the carrier. The detection limits of the analytical systems with a 100 cm LWCC, a 200 cm LWCC, and a 200 cm UltraPath were 6, 4, and 4 nM, respectively. These systems had high precision ( < 4% at 100 nM) and a linear dynamic range up to 200 nM. Non-linear baseline drift did not occur when using the UltraPath system. This is due to the elimination of cell clogging because of the larger inner diameter of the UltraPath compared to the LWCCs. The UltraPath system is thus more suitable for long-term measurements compared with the LWCC systems. The results of the proposed sensitive colorimetry and a conventional colorimetry for the determination of seawater samples showed no significant difference. The proposed analytical systems were applied to underway surface monitoring and vertical observation in the oligotrophic South Pacific. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们描述了一种高灵敏度的比色法,用于基于与邻苯基苯酚[(1,1'-联苯)-2-醇,缩写为OPP]的吲哚酚反应确定海水中纳摩尔浓度的氨。 OPP可以作为无毒,稳定的片状晶体使用,没有腐蚀性气味,并且在实际使用中比酚具有一些优势。该方法是通过使用气体分段连续流动分析仪建立的,该分析仪配备了两种长径液体波导毛细管池:LWCC(100 cm和200 cm)和UltraPath(200 cm),其内径为0.55 mm和2毫米。基于OPP的手动吲哚酚蓝法(Kanda,Water Res.29(1995)2746-2750),确定试剂浓度,泵管的流速,反应路径和温度。与形成吲哚酚蓝染料的试剂混合的样品在670 nm处测量。老化的亚热带地表水被用作空白,标准基质和载体。 100 cm LWCC,200 cm LWCC和200 cm UltraPath的分析系统的检出限分别为6、4和4 nM。这些系统具有高精度(在100 nM时<4%)和高达200 nM的线性动态范围。使用UltraPath系统时不会发生非线性基线漂移。这是因为与LWCC相比,UltraPath的内径更大,从而消除了细胞堵塞。因此,与LWCC系统相比,UltraPath系统更适合于长期测量。拟议的比色法和常规比色法测定海水样品的结果没有显着差异。拟议的分析系统被应用于贫营养南太平洋的正在进行的地面监测和垂直观测。 (C)2015 Elsevier B.V.保留所有权利。

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