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              當(dāng)前位置:首頁  >  技術(shù)文章  >  用于測定煤中硫的X 射線熒光光譜儀 Compass 4294 plus

              用于測定煤中硫的X 射線熒光光譜儀 Compass 4294 plus

              更新時間:2021-07-21      點(diǎn)擊次數(shù):1495

              用于測定煤中硫的能量色散 X 射線熒光光譜儀 Compass 4294 plus


              xrf分析儀的油樣制備步驟


              不同于化學(xué)法、庫侖滴定法、高溫燃燒中和法和紅外光譜法,現(xiàn)有國標(biāo)煤總硫含量測定方法需要化學(xué)試劑多、操作復(fù)雜、耗時長,我公司采用能量分散型X-射線熒光光譜儀 Compass 4294 plus 快速、無損且可靠地測定煤中的硫含量。該方法是一種相對分析方法,將未知樣品的光譜與硫含量已知的樣品進(jìn)行比較,進(jìn)行定量分析。應(yīng)用由實(shí)驗(yàn)確定 本方法分析了煤中硫的合適的制樣方法、制樣條件和測定條件;經(jīng)過樣品數(shù)據(jù)采集、光譜預(yù)處理和基體校正,建立相應(yīng)的校準(zhǔn)曲線。結(jié)果表明:該方法的制樣效果良好。在30 MPa和30 s的條件下,可獲得光滑的表面,不易斷裂;經(jīng)實(shí)驗(yàn)測定的硫元素測量管電壓和管電流分別為10 kV和300 μA;內(nèi)置真空裝置可有效控制光基體背景散射嚴(yán)重、硫特征譜線易被空氣吸收等問題;減小樣品粒徑與經(jīng)驗(yàn)系數(shù)法修正相結(jié)合,可減少基體效應(yīng)的影響;光譜平滑處理后,有效提高光譜分辨率,提高測量精度

              Energy Dispersive X-ray Fluorescence Spectrometer Compass 4294 plus for Determination of Sulfur in Coal


              oil sample prepare steps by xrf analyzer


              Different from the chemical method, coulometric titration, high temperature combustion neutralization method and infrared spectroscopy, the existing national standard coal total sulfur content measurement methods require many chemical reagents, complicated operations and long time-consuming, our company adopts energy dispersion type The X-ray fluorescence spectrometer Compass 4294 plus quickly, non-destructively and reliably determines the sulfur content in coal. This method is a relative analysis method that compares the spectrum of an unknown sample with a sample with a known sulfur content for quantitative analysis. The application is determined by experiments This method analyzes the appropriate sample preparation methods, sample preparation conditions and measurement conditions of sulfur in coal; after sample data collection, spectrum preprocessing and matrix correction, the corresponding calibration curve is established. The results show that: The sample preparation effect of the method is good. Under the conditions of 30 MPa and 30 s, a smooth surface and not easy to break can be obtained; the sulfur element measuring tube voltage and tube current determined by the experiment are 10 kV and 300 μA, respectively; built-in vacuum device It can effectively control the problems of severe background scattering of light matrix and easy absorption of sulfur characteristic spectrum lines by air; the combination of reducing sample particle size and empirical coefficient method correction can reduce the influence of matrix effect; smoothing the spectrum After processing, the spectral resolution is effectively enhanced and the measurement accuracy is improved


              Portable sulfur and chlorine in oil XRF analyzer (1)

              Compass300 xrf mineral analyzer.jpg



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