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Development of a miniaturized diffusive gradients in thin films (DGT) device

机译:薄膜(DGT)装置中最小化扩散梯度的开发

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A miniaturized diffusive gradients in thin films (DGT) device with a sampling window which is 16 times smaller than the conventional DGT device was developed. Its main advantage is the reduced volume of solution necessary for deployment, which extends its potential applications. The design of the miniaturized DGT device was also improved compared with the conventional DGT device, such that the area of the diffusive gel layer that allows the diffusion of metal towards the binding gel layer has the same diameter as the opening in the cap of the device and no additional metal is accumulated due to lateral diffusion as is the case for the conventional device. A good correlation between the metal concentration directly measured and the concentration estimated with the help of the DGT equation was obtained using this device in synthetic solutions (10 μg L~(-1) Cd, 0.01 M NaNO3 pH 6). The capacity of the device for Cd was ~20 μg, potentially allowing long term measurements to be performed. Metal accumulation increased linearly with deployment time up to 28 h and showed the theoretically expected dependence on diffusive layer thickness. The diffusive boundary layer thickness of ~0.2 mm in stirred solution was considered for accurate quantification of concentration. There was no difference between concentrations of labile metal measured in natural waters using the new miniaturised devices and the conventional devices.
机译:开发了具有比常规DGT装置小16倍的采样窗口的薄膜(DGT)装置中的最小化扩散梯度。它的主要优点是减少了部署所需的解决方案量,从而扩展了其潜在的应用程序。与传统的DGT装置相比,小型化的DGT装置的设计也得到了改进,使得允许金属向结合凝胶层扩散的扩散凝胶层的面积与装置盖中的开口具有相同的直径。像传统设备一样,不会因横向扩散而积聚额外的金属。使用该装置在合成溶液(10μgL〜(-1)Cd,0.01 M NaNO3 pH 6)中,直接测量的金属浓度与借助DGT方程估算的浓度之间具有良好的相关性。该设备的Cd容量约为20μg,有可能允许进行长期测量。金属积累随着部署时间(长达28小时)线性增加,并显示出理论上对扩散层厚度的预期依赖性。为了精确定量浓度,认为在搅拌溶液中扩散边界层的厚度约为0.2 mm。使用新型小型化设备和常规设备在天然水中测得的不稳定金属浓度之间没有差异。

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