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Simultaneous measurements of arsenic and sulfide using diffusive gradients in thin films technique (DGT)

机译:使用薄膜技术中的扩散梯度同时测量砷和硫化物

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Diffusive gradients in thin films technique (DGT) is a dynamically passive sampling technique which has been applied increasingly to the environmental monitoring field. In the preliminary period, the DGT with zirconium hydroxide-silver iodide as the binding phase (ZrO-AgI DGT) has been developed for the determination of sulfide (S(II)). On this basis, this paper developed its determination method for inorganic arsenite (As(III)) to further realize the simultaneous and high-resolution measurements of labile inorganic As and S(II) in sediments. ZrO-AgI binding gel had a strong ability in adsorbing and fixing As(III), showing a linear increase in the initial 12.5 min. After saturation of S(II) on ZrO-AgI binding gel, the adsorption rate and adsorption capacity of As(III) reduced by 8 and 14%, respectively. A stable elution rate (89.1 +/- 2.2%) was obtained by extraction of As(III) on the binding gel using a mixture solution of 1.0 M NaOH and 1.0 M H2O2 (1:1). The DGT capacity of As(III) determined by the ZrO-AgI DGT was 23.6 gcm(-2). DGT uptakes of As(III) were independent of pH (4.0-9.0) and ionic strength (0.01-100 mM), and they did not interfere with each other during the uptake process. Simultaneous measurements of labile As and S(II) in four sediment cores of Taihu Lake (China) with ZrO-AgI DGT showed that they had similarly vertical distributions in the top 16-mm layer in one core and in the whole profile up to the 35 mm depth in two cores. It likely reflected a simultaneous release of As and S(II) in sediments by synchronous reduction of As-hosted oxidized iron and sulfate, respectively. The simultaneous decreases of labile As and S(II) from their co-precipitation (e.g., As2S3) were not obvious in deeper sediment layer through the measurement with ZrO-AgI DGT.
机译:薄膜中的扩散梯度技术(DGT)是一种动态被动采样技术,已越来越多地应用于环境监测领域。在初期阶段,已开发出以氢氧化锆-碘化银为结合相的DGT(ZrO-AgI DGT)用于测定硫化物(S(II))。在此基础上,本文发展了其对无机砷(As(III))的测定方法,以进一步实现对沉积物中不稳定的无机As和S(II)的同时高分辨率测定。 ZrO-AgI结合凝胶具有很强的吸附和固定As(III)的能力,在开始的12.5分钟内呈线性增加。在ZrO-AgI结合凝胶上饱和S(II)后,As(III)的吸附速率和吸附容量分别降低了8%和14%。通过使用1.0 M NaOH和1.0 M H2O2(1:1)的混合溶液在结合凝胶上萃取As(III),可获得稳定的洗脱率(89.1 +/- 2.2%)。由ZrO-AgI DGT测定的As(III)的DGT容量为23.6 gcm(-2)。 As(III)的DGT摄取量与pH(4.0-9.0)和离子强度(0.01-100 mM)无关,并且在摄取过程中它们不会相互干扰。用ZrO-AgI DGT同时测量太湖(中国)四个沉积岩心中不稳定的As和S(II),结果表明,它们在一个岩心的顶部16 mm层和整个剖面直至顶部都具有相似的垂直分布。两芯深度为35毫米。它可能反映出分别通过同时还原砷中的氧化铁和硫酸盐而同时释放出沉积物中的砷和硫(II)。通过ZrO-AgI DGT的测量,在较深的沉积层中,共沉淀(例如,As2S3)中不稳定的As和S(II)同时减少并不明显。

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