Highlights<'/> Selective colorimetric detection of dissolved ammonia in water via modified Berthelot's reaction on porous paper
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Selective colorimetric detection of dissolved ammonia in water via modified Berthelot's reaction on porous paper

机译:通过多孔纸上改良的Berthelot反应选择性比色法检测水中的溶解氨

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HighlightsNew ammonia determination method for water samples using the separation of ammonia gas followed by the Berthelot’s reaction.Involvement of water-assisted mechanism in the selective indophenol formation reaction between a solid sensing layer and gaseous ammonia.Fabrication of solid-state colorimetric ammonia sensors on a paper substrate.AbstractContinuous monitoring and rapid on-site determination of toxic ammonia in various aqueous systems are important for maintaining water quality and preserving the environment. Though several methods such as flow-based spectrophotometry are currently utilized for this purpose, there is still need for more selective ammonia determination. We present a new detection route for quantifying NH3in water samples by means of the evaporation of dissolved ammonia into headspace, followed by selective detection using a colorimetric sensor. Gaseous NH3detection is attained by the selective formation of blue indophenol dye through modified Berthelot’s reaction on porous paper. To optimize the sensing layer in terms of uniform and intense coloration, the water-soluble powder reagents were homogeneously dispersed in nonpolar cyclohexane and then deposited by a vacuum-assisted filtration on the paper substrate. The formation of indophenol blue was activated under highly humidified conditions through selective chemical reactions between solid-state Berthelot’s reagents and NH3. The colorimetric response of the low-cost paper sensors was saturated within 10min, and color change was observed by the naked eye for an ammonia solution of 10mg/L. Furthermore, the response magnitude was not affected by addition of 0.1wt% polar organic solvents (ethanol, acetone, dimethylformamide or acetic acid) or inorganic salts (NaCl, KCl, MgSO4or CaSO4), suggesting a good detection cross-selectivity.
机译: 突出显示 < ce:list-item id = “ lsti0005 ”> 新的水氨测定方法样品使用氨气分离,然后进行Berthelot反应。 水辅助机制参与固体传感层与气态氨之间选择性吲哚酚形成反应。 < / ce:列表项> 在纸质基材上制备固态比色氨传感器。< / ce:para> 摘要 各种水系统中连续监测和快速现场确定有毒氨水对于维持水质和保护水体至关重要环境。尽管目前使用几种方法(例如基于流式分光光度法)来实现此目的,但仍需要进行更具选择性的氨测定。我们提出了一种新的检测途径,通过将溶解的氨蒸发到顶空中来定量水样中的NH 3 ,然后使用比色传感器进行选择性检测。气态NH 3 的检测是通过在多孔纸上经过修饰的Berthelot反应选择性地形成蓝色吲哚酚蓝来实现的。为了在均匀和强烈的着色方面优化传感层,将水溶性粉末试剂均匀分散在非极性环己烷中,然后通过真空辅助过滤将其沉积在纸质基材上。固态Berthelot试剂与NH 3 之间的选择性化学反应可在高度潮湿的条件下激活吲哚酚蓝的形成。低成本纸张传感器的比色响应在10分钟内达到饱和,并且对于10mg / L的氨溶液,用肉眼观察到颜色变化。此外,响应强度不受添加0.1wt%极性有机溶剂(乙醇,丙酮,二甲基甲酰胺或乙酸)或无机盐(NaCl,KCl,MgSO 4的影响)的影响。 / ce:inf>或CaSO 4 ),表明检测交叉选择性很好。

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