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Environmentally friendly method for determination of ammonia nitrogen in fertilisers and wastewaters based on flow injection-spectrophotometric detection using natural reagent from orchid flower

机译:基于兰花花天然试剂的流动注射分光光度法测定肥料和废水中氨氮的环保方法

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Crude aqueous extract from the orchid Dendrobium Sonia earsakul' was utilised as a natural product reagent in flow injection analysis (FIA) incorporating a gas diffusion unit (GD) for the determination of ammonia nitrogen. Sample solution was injected into a NaOH donor stream to generate ammonia gas (NH3). In the GD unit, NH3 diffused across a PTFE gas-permeable membrane into the acceptor stream of the orchid extract. As the result, the aqueous orchid reagent became more alkaline and its colour changed from purple to green. The change in the colour of orchid acceptor correlated with the concentration of ammonia nitrogen in the sample and its absorbance monitored by a spectrophotometer at 600nm. Ammonia nitrogen in chemical fertiliser samples and wastewater samples from agricultural fields were determined and reported as %N (w/w) and mg N L-1, respectively. For chemical fertilisers which contained high content of ammonia nitrogen, a flow rate of 1.0mL min(-1) and injection volume of 100 mu L were used with a linear range of 5-40mmol L-1 and detection limit of 2.12mmol L-1. However, a higher sensitivity was required for wastewater samples having low ammonia nitrogen content. The flow rate was reduced to 0.3mL min(-1) and the injection volume increased to 1000 mu L. As a result, detection limit of 0.76mmol L-1 was achieved with linear range of 1-5mmol L-1. The results of our method agreed well with that using the OPA method employing fluorescence detection.
机译:兰花石end Sonia earsakul'的粗制水提取物被用作流动注射分析(FIA)中的天然产物试剂,该分析仪结合了气体扩散单元(GD)用于测定氨氮。将样品溶液注入NaOH供体物流中以生成氨气(NH3)。在GD装置中,NH3穿过PTFE透气膜扩散到兰花提取物的受体流中。结果,水性兰花试剂变得更碱性,并且其颜色从紫色变为绿色。兰花受体颜色的变化与样品中氨氮的浓度相关,并通过分光光度计在600nm处监测其吸光度。测定了化肥样品和农田废水样品中的氨氮,并将其分别报告为%N(w / w)和mg N L-1。对于氨氮含量高的化肥,使用1.0mL min(-1)的流速和100μL的注入量,线性范围为5-40mmol L-1,检测极限为2.12mmol L- 1。但是,对于氨氮含量低的废水样品,需要更高的灵敏度。流速降低至0.3mL min(-1),进样量增加至1000μL。结果,线性范围为1-5mmol L-1时,检测极限为0.76mmol L-1。我们的方法的结果与采用荧光检测的OPA方法的结果非常吻合。

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