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用一种新型化学发光法测量超声水溶液中羟基自由基的产生量。

Measurement of hydroxyl radical production in ultrasonic aqueous solutions by a novel chemiluminescence method.

作者信息

Hu Yufei, Zhang Zhujun, Yang Chunyan

机构信息

Department of Chemistry, Institute of Analytical Science, Southwest University, Beibei, Chongqing 400715, PR China.

出版信息

Ultrason Sonochem. 2008 Jul;15(5):665-72. doi: 10.1016/j.ultsonch.2008.01.001. Epub 2008 Jan 15.

Abstract

Measurement methods for ultrasonic fields are important for reasons of safety. The investigation of an ultrasonic field can be performed by detecting the yield of hydroxyl radicals resulting from ultrasonic cavitations. In this paper, a novel method is introduced for detecting hydroxyl radicals by a chemiluminescence (CL) reaction of luminol-hydrogen peroxide (H2O2)-K5Cu(HIO6)2. The yield of hydroxyl radicals is calculated directly by the relative CL intensity according to the corresponding concentration of H2O2. This proposed CL method makes it possible to perform an in-line and real-time assay of hydroxyl radicals in an ultrasonic aqueous solution. With flow injection (FI) technology, this novel CL reaction is sensitive enough to detect ultra trace amounts of H2O2 with a limit of detection (3sigma) of 4.1 x 10(-11) mol L(-1). The influences of ultrasonic output power and ultrasonic treatment time on the yield of hydroxyl radicals by an ultrasound generator were also studied. The results indicate that the amount of hydroxyl radicals increases with the increase of ultrasonic output power (< or = 15 W mL(-1)). There is a linear relationship between the time of ultrasonic treatment and the yield of H2O2. The ultrasonic field of an ultrasonic cleaning baths has been measured by calculating the yield of hydroxyl radicals.

摘要

出于安全考虑,超声场的测量方法很重要。超声场的研究可以通过检测超声空化产生的羟基自由基的产率来进行。本文介绍了一种通过鲁米诺 - 过氧化氢(H₂O₂) - K₅[Cu(HIO₆)₂](DPC)的化学发光(CL)反应检测羟基自由基的新方法。根据H₂O₂的相应浓度,通过相对CL强度直接计算羟基自由基的产率。所提出的CL方法使得对超声水溶液中的羟基自由基进行在线实时检测成为可能。采用流动注射(FI)技术,这种新型CL反应灵敏度足够高,能够检测超痕量的H₂O₂,检测限(3σ)为4.1×10⁻¹¹ mol L⁻¹。还研究了超声发生器的超声输出功率和超声处理时间对羟基自由基产率的影响。结果表明,羟基自由基的量随着超声输出功率的增加(≤15 W mL⁻¹)而增加。超声处理时间与H₂O₂的产率之间存在线性关系。通过计算羟基自由基的产率对超声清洗槽的超声场进行了测量。

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