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A gas-phase chemiluminescence-based analyzer for waterborne arsenic

机译:气相化学发光分析仪用于水性砷

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We show a practical sequential injection/ zone fluidics-based analyzer that measures waterborne arsenic. The approach is capable of differentiating between inorganic As(III) and As(V). The principle is based on generating AsH3 from the sample in a confined chamber by borohydride reduction at controlled pH, sparging the chamber to drive the AsH3 to a small reflective cell located atop a photomultiplier tube, allowing it to react with ozone generated from ambient air, and measuring the intense chemiluminescence that results. Arsine generation and removal from solution results in isolation from the sample matrix, avoiding the pitfalls encountered in some solution-based analysis techniques. The differential determination of As( III) and As( V) is based on the different pH dependence of the reducibility of these species to AsH3. At pH <= 1, both As( III) and As( V) are quantitatively converted to arsine in the presence of NaBH4. At a pH of 4- 5, only As( III) is converted to arsine. In the present form, the limit of detection (S/N = 3) is 0.05 mu g/L As at pH <= 1 and 0.09 mu g/L As( III) at pH similar to 4- 5 for a 3-mL sample. The analyzer is intrinsically automated and requires 4 min per determination. It is also possible to determine As( III) first at pH 4.5 and then determine the remaining As in a sequential manner; this requires 6 min. There are no significant practical interferences. A new borohydride solution formulation permits month-long reagent stability.
机译:我们展示了一种实用的基于顺序注入/区域射流的分析仪,可以测量水性砷。该方法能够区分无机As(III)和As(V)。原理是基于密闭室中的硼氢化物在受控pH值下从密闭室中的样品中生成AsH3,鼓吹该室以将AsH3驱动到位于光电倍增管顶部的小型反射池中,从而使其与周围空气产生的臭氧发生反应,并测量由此产生的强烈化学发光。 solution的生成和从溶液中去除会导致与样品基质隔离,从而避免了某些基于溶液的分析技术遇到的陷阱。 As(III)和As(V)的差异测定是基于这些物质对AsH3还原性的不同pH依赖性。在pH <= 1时,在NaBH4存在下,As(III)和As(V)都定量转化为a。在4-5的pH下,只有As(III)转化为to。在本形式中,检测限(S / N = 3)在pH <= 1时为0.05μg / L As,在3-mL中在pH类似于4-5时为0.09μg / L As(III)样品。分析仪本质上是自动化的,每次测定需要4分钟。也可以先在pH 4.5下确定As(III),然后以顺序方式确定剩余As。这需要6分钟。没有重大的实际干扰。新的硼氢化物溶液配方可使试剂稳定一个月。

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