什么是原子發(fā)射光譜儀。它是用在哪方面的,原子發(fā)射光譜儀用途?這是人們比較關(guān)心的問題。為了幫助您更好的理解原子發(fā)射光譜儀,小編為您做以下內(nèi)容介紹,希望能幫助您。
What is atomic emission spectrometer. It is used in what areas, atomic emission spectrometer uses? This is a question that people are more concerned about. In order to help you better understand the atomic emission spectrometer, small make up for you to do the following introduction, hoping to help you.
原子發(fā)射光譜儀是根據(jù)試樣中被測元素的原子或離子,在光源中被激發(fā)而產(chǎn)生特征輻射,通過判斷這種特征輻射波長及其強度的大小,對各元素進行定性分析和定量分析的儀器。
Atomic emission spectrometer is based on atomic or ionic elements measured in the sample, in the light source was inspired by the characteristics of radiation, radiation wavelength and intensity of the feature size, the instrument of qualitative analysis and quantitative analysis of each element.
用 途: 原子吸收光譜儀可測定多種元素,火焰原子吸收光譜法可測到10-9g/ml數(shù)量級,石墨爐原子吸收法可測到10-13g/ml數(shù)量級。其氫化物發(fā)生器可對八種揮發(fā)性原素汞、砷、鉛、硒、錫、碲、銻、鍺等進行微痕量測定。 因原子吸收光譜儀的靈敏、準確、簡便等特點,現(xiàn)已廣泛用于冶金、地質(zhì)、采礦、石油、輕工、農(nóng)業(yè)、醫(yī)藥、衛(wèi)生、食品及環(huán)境監(jiān)測等方面的常量及微痕量原素分析。
Uses: atomic absorption spectrometer can be used to determine the number of elements, flame atomic absorption spectrometry can be measured to 10-9g/ml orders of magnitude, graphite furnace atomic absorption spectrometry can be measured to 10-13g/ml orders of magnitude. The hydride generator of eight kinds of volatile elements of mercury, arsenic, selenium, lead, tin, tellurium, antimony, germanium and other micro trace determination. Because of the atomic absorption spectrometer is sensitive, accurate and simple characteristics, has been widely used in metallurgy, mining, geological analysis, petroleum, light industry, agriculture, medicine, health, food and environmental monitoring etc. the major and trace elements.
以上是小編為您具體介紹的原子發(fā)射光譜儀用途,針對以上內(nèi)容介紹,您是否認識了原子發(fā)射光譜儀,知道它的作用了吧。更多內(nèi)容介紹,您可以查看相關(guān)內(nèi)容知識,希望以上內(nèi)容能夠幫助您。
The above is a small series for you to introduce the atomic emission spectrometer specific purposes, for the above content, you know the atomic emission spectrometer, know that it's the role of it. More content, you can view the relevant content knowledge, I hope that the above content can help you.