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Towards the improvement of UN N.5 test method for the characterization of substances which in contact with water emit flammable gases

机译:朝着改进联合国N.5测试方法的要求,该方法用于表征与水接触会释放出易燃气体的物质

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This paper deals with a sensitivity analysis of main parameters affecting the measurement of the gas flowrate emitted during testing substances for their potential to emit flammables gases in dangerous quantities where in contact with water, according to the UN N.5 test procedure. UN N.5 is described in the Manual of Tests and Criteria of United Nations (part of the Orange Book) (ONU Manual of Test and Criteria, 2008), serving both applications of international transport regulations as well as classifications of dangerous substances according to Globally the Harmonized System (GHS) and the derived regulation applying in the EU known as "CLP" Regulation (Regulation (EC) No 1271/2008). The main reason that justifies the present research is that the measurement of emitted gases is highly critical in the final classification resulting from the interpretation of the test results. Moreover, that idea has been raised to adapt the UN N.5 test protocol for classifying, in the future, substances that by contact with water would emit dangerous quantities of toxic gases. Experiments have been carried out to cover the analysis of the influence of ambient temperature, overall volume of glassware, nature of aqueous media, mass sample and sample-to-liquid mass ratio, since such parameters are not fixed within any defined range in the UN N.5 test procedure. The influence of the flow rate measuring device was also considered. Results confirm that the above mentioned parameters may play a significant role to such an extent as to finally alter the final classification resulting from the testing. Guiding principles have also been derived from our measurements and observations towards an improved and more robust UN test protocol in the future.
机译:本文根据联合国N.5试验程序,对影响测试物质释放的气体流量的主要参数进行了敏感性分析,这些物质在与水接触时可能释放出危险量的易燃气体。 UN N.5在《联合国测试和标准手册》(《橙皮书》的一部分)(ONU测试和标准手册,2008年)中有所描述,既适用于国际运输法规的应用,又适用于根据在全球范围内,统一制度(GHS)和在欧盟中应用的衍生法规称为“ CLP”法规(法规(EC)1271/2008号)。证明本研究合理的主要原因是排放气体的测量在对测试结果进行解释的最终分类中至关重要。此外,已经提出了这个想法,以适应联合国N.5测试规程,以便将来对与水接触会释放出危险量的有毒气体的物质进行分类。已进行实验以分析环境温度,玻璃器皿的总体积,水性介质的性质,质量样品和样品与液体的质量比的影响,因为此类参数未在联合国的任何定义范围内固定N.5测试程序。还考虑了流量测量装置的影响。结果证实,上述参数可能在某种程度上起着重要作用,以至于最终改变了测试产生的最终分类。从我们的测量和观察中也得出了指导原则,以便将来改进和完善联合国测试规程。

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