![]() Subsequently, the sprayĬhamber temperature drifts along with theĮnvironmental temperature of the laboratory. Spectrometer warms up, there is a constant upwardĭrift in temperature. Signal drift is closely associated with the drift Temperature will not overload the plasma and willĪllow lower detection limits to be reached as Samples, very low uptake rates must be used. Limited as is often the case in certain clinical At typical uptake rates ofġ to 2 ml per minute, this would result in an Increasing spray chamber temperature increases Organic solvent that severely loads the plasma. ICP-MS Direct aspiration of naphtha, a volatile Two low temperature control applications are ICP-MS work was performed on a PerkinElmer ElanĦ000 and all ICP-OES work on a PerkinElmer Optima Monitors and controls spray chamber temperature,Īnd evaluates the device under a variety ofĬonditions for a variety of applications. This paper describes a novel system that both Quality results in a variety of sample types. On the ability of the system to achieve high ![]() The spray chamber can have a profound influence ![]() A New Versatile Programmable Temperature SprayĬhamber for ICP Jerry Dulude and Ron Stux (USA),įor both ICP-OES and ICP-MS, the temperature of
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