传统铁路电力设备人工巡检方式存在设备信息记录不清晰、不完整、设备履历表存放地点混乱、更新不及时的情况。从铁路运营生产、设备大修更新改造对既有电力设备数量及参数信息准确性要求出发,结合射频识别(Radio Frequency Identificat...传统铁路电力设备人工巡检方式存在设备信息记录不清晰、不完整、设备履历表存放地点混乱、更新不及时的情况。从铁路运营生产、设备大修更新改造对既有电力设备数量及参数信息准确性要求出发,结合射频识别(Radio Frequency Identification,RFID)技术特点,提出将其应用于铁路电力设备管理的基本技术方案:一方面提高铁路局供电段设备管理能力,另一方面为铁路大修改造工程提供及时准确的数据支撑。展开更多
Traditional low power-microwave plasma torch(MPT) excitation source of atomic emission spectrometry was shown to be good for the introduction of dry aerosols, but poor for wet sample aerosols. In this work, some sig...Traditional low power-microwave plasma torch(MPT) excitation source of atomic emission spectrometry was shown to be good for the introduction of dry aerosols, but poor for wet sample aerosols. In this work, some significant modifications have been made to traditional MPT. A new MPT excitation source working at kilowatt microwave power has been developed. The kilowatt MPT source can sustain stable plasmas with double or even more filaments, presenting a "bell" form, where the region around the converging point is the optimum region for analysis. The tolerance to aqueous aerosol of the torch is enhanced significantly compared to the traditional one. Therefore, the desolvation system that the low power MPT source has to be relied on can be gotten rid of. A set of favorable detection results have been obtained with direct wet sample aerosol introduction. The kilowatt MPT source is expected to become a practical excitation source for atomic emission spectrometry that will be widely used.展开更多
文摘传统铁路电力设备人工巡检方式存在设备信息记录不清晰、不完整、设备履历表存放地点混乱、更新不及时的情况。从铁路运营生产、设备大修更新改造对既有电力设备数量及参数信息准确性要求出发,结合射频识别(Radio Frequency Identification,RFID)技术特点,提出将其应用于铁路电力设备管理的基本技术方案:一方面提高铁路局供电段设备管理能力,另一方面为铁路大修改造工程提供及时准确的数据支撑。
文摘Traditional low power-microwave plasma torch(MPT) excitation source of atomic emission spectrometry was shown to be good for the introduction of dry aerosols, but poor for wet sample aerosols. In this work, some significant modifications have been made to traditional MPT. A new MPT excitation source working at kilowatt microwave power has been developed. The kilowatt MPT source can sustain stable plasmas with double or even more filaments, presenting a "bell" form, where the region around the converging point is the optimum region for analysis. The tolerance to aqueous aerosol of the torch is enhanced significantly compared to the traditional one. Therefore, the desolvation system that the low power MPT source has to be relied on can be gotten rid of. A set of favorable detection results have been obtained with direct wet sample aerosol introduction. The kilowatt MPT source is expected to become a practical excitation source for atomic emission spectrometry that will be widely used.