共查询到19条相似文献,搜索用时 154 毫秒
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对化学需氧量(COD)测定标准方法的改进措施和干扰物质的消除进行了分类比较与探讨,并对COD在线自动监测进行了介绍,较为全面地阐述了COD测定方法的现状和研究动态.研究快速、准确、连续、无污染的COD测定方法在环境监测工作中具有重要的意义. 相似文献
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臭氧法海水化学需氧量(COD)现场快速分析技术研究 总被引:3,自引:0,他引:3
海水化学需氧量(COD)是海水中有机污染物的综合指标,是海洋环境监测最重要的项目之一,目前我国海洋环境污染日趋严重,现有的COD测量方法远远不能满足形式的需要,研制开发现场、快速、自动分析的COD测量技术势在必行,也是海水COD分析技术发展方向和发展趋势.在国家863计划的支持下,我们成功开发了臭氧法海水化学需氧量现场快速分析技术,并在此基础上研制了可用于现场的臭氧法海水化学需氧量测量仪(以下简称臭氧法测量仪).文章介绍了臭氧法海水化学需氧量现场快速分析技术原理,臭氧法测量仪实验室现场测试结果和海试现场情况.大量实验数据表明,臭氧法测量仪具有测量快速、结果准确、长时间不需维护等特点. 相似文献
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作为水体等污染程度的重要评价指标,化学需氧量的测定一直以来都是水体监测过程中相当重要的参数之一.本文重点就常见的化学需氧量测定方法--国标法、库伦滴定法以及快速消解分光光度法及其测定过程中的质量控制要点进行了探讨. 相似文献
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对于化学需氧量COD监测来说,其有三种监测方法:重铬酸钾法、快速消解分光光度法、快速回流消解-滴定法,本文针对这三种方法进行分析对比发现,他们测定值具有真实性,但是各自都有优缺点,以下本文将这些监测方法进行详细分析介绍。 相似文献
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化学需氧量是水体中有机物含量的重要指标。重铬酸钾法是测定化学需氧量的常规方法。在这个实验里,我们采用了COD的快速测定方法,对这种方法的准确度、精密度进行了分析,并对重铬酸钾法与快速测定法进行了对比实验,以验证其相关性。 相似文献
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Electrochemical in situ regeneration of granular activated carbon (GAC) saturated with phenol was experimentally investigated using a three-dimensional electrode reactor with titanium filter electrode arrays. The feasibility of the electrochemical regeneration has been assessed by monitoring the regeneration efficiency and chemical oxygen demand (COD). The influence of the applied current, the effluent flow rate, and the effluent path of the electrochemical cell have been systematically studied. Under the optimum conditions, the regeneration efficiency of GAC could reach 94% in 2 hr, and no significant declination was observed after five-time continuous adsorption-regeneration cycles. The adsorption of organic pollutants was almost completely mineralized due to electrochemical oxidation, indicating that this regeneration process is much more potentially cost-effective for application. 相似文献
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Electrochemical in situ regeneration of granular activated carbon (GAC) saturated with phenol was experimentally investigated using a three-dimensional electrode reactor with titanium filter electrode arrays. The feasibility of the electrochemical regeneration has been assessed by monitoring the regeneration efficiency and chemical oxygen demand (COD). The influence of the applied current, the effluent flow rate, and the effluent path of the electrochemical cell have been systematically studied. Under the optimum conditions, the regeneration efficiency of GAC could reach 94% in 2 hr, and no significant declination was observed after five-time continuous adsorption-regeneration cycles. The adsorption of organic pollutants was almost completely mineralized due to electrochemical oxidation, indicating that this regeneration process is much more potentially cost-effective for application. 相似文献
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