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- The flame ionization detector is used for the detection of the effluents. 用火焰離子化檢測器可以用來(lái)探測廢水。
- Method: CBPI-M25-0.25 capillary column and hydrogen flame ionization detector were selected. 方法:采用CBP1-M25-0.;25石英毛細管柱;檢測 器為氫火焰離子化檢測器。
- This method made use of hydrogen flame ionization detector(FID) and counted by area normalization method. 該方法采用氫火焰離子化檢測器,并用面積歸一化法進(jìn)行計算。
- Determination with gas chromatography/flame ionization detector(GC/FID) for dioxane in cosmetics was developed. 建立了用毛細管氣相色譜配氫火焰離子化檢測器測定洗滌和化妝品中二惡烷的方法。
- To avoid them,a new alternate method which combines thin layer chromatography(TLC)with hydrogen flame ionization detector(FID)is adopted. 為使其改進(jìn);采用薄層色譜(TLC)與氫火焰離子化檢測器(FID)相結合的新方法.
- Some kinds of micro organic amine in water were direct determined using gas chromatograph with hydrogen flame ionization detector(FID). 用配有氫火焰離子化檢測器(FID)的氣相色譜儀直接測定水中多種微量有機胺。
- In view of different volatile substance in beer, PEG column and FID (hydrogen flame ionization detector) were selected in the measurement. 針對啤酒酒中不同的揮發(fā)性物質(zhì)可選擇PEG柱和氫火焰離子化檢測器(FID)法進(jìn)行檢測;
- Each component ultimately reaches the Flame Ionization Detector, the most commonly used detector in GC (Air + Hydrogen gas, ratio 10:1). 每個(gè)組份最后都會(huì )到達火焰離子化檢測器,這是氣相色層分析最常用的檢測器(空氣+氫氣,比率是10:1)。
- As to GC with a workstation, this paper introduced a new method used to evaluate the uncertainty of calibration for detection limit by flame ionization detector. 本文針對帶工作站的GC介紹了氣相色譜儀氫火焰離子化檢測器檢測限校準的不確定度評定新方法。
- Method: The GC method using chromosorb WAW with 10%PEG-20M as the stationary phase,and the column temperature was 190 C. Hydrogen flame ionization detector was speci- fied. 方法:氣相色潛法,3mm×4m不銹鋼柱,10%25PEG-20M為固定液,Chromosorb WAW 60-80目擔體,FID檢測器,柱溫190℃;
- Hydrocarbon impurities in propylene were determined with capillary gas chromatography (GC) by using PLOT/ Al 2 0 3 quartz capillary column and flame ionization detector (FID). 以PLOT/Al2 O3 石英毛細管柱為分析柱 ,采用氫火焰離子化檢測器 ,建立了測定丙烯中烴類(lèi)雜質(zhì)含量的毛細管氣相色譜法。
- Abstract Trace amount of DBP and MBP in TBP-kerosene system is determined by gas chromatography with FID (Flame Ionization Detector) and fused silica capillary column. 摘要 用氣相色譜的氫火焰離子化檢測器及熔融石英毛細管柱測定在煤油體系中痕量的DBP(磷酸二丁酯)和MBP(磷酸一丁酯)。
- Enriched elution was injected directly into 2.0% DNP-2,5% Bentone/101 white support column to be separated,and then petected by flame ionization detector under constant temperature. 富集后的洗脫液直接注入2.;0%25DNP-2
- The composition of fatty acids in oil and fat was detected by gas chromatography and fire ionization detector (FID) at home, however, the reports about the separation and detection of triglyceride in oil and fat were very little. 摘要對油脂的分析,國內主要是采用氣相色譜分離和火焰離子化檢測器(FID)檢測其中的脂肪酸組成,而對甘油酯的分離和檢測報道較少,國外研究者利用色譜和質(zhì)譜聯(lián)用技術(shù)對甘油三酯的分離和檢測做了大量的研究。
- After used for a period of time, the flame ionization detector (FID) in Agilent 6890GC gas chromatograph in Zhuhai Power Station suffered from baseline abnormal noise and drift as well as declined sensitivity, which impacted its accuracy of detection. 珠海發(fā)電廠(chǎng)使用的Agilent6890GC型氣相色譜儀的火焰離子化檢測器(FID)在使用了一段時(shí)間后出現了基線(xiàn)異常噪聲和漂移,靈敏度下降,影響了檢測準確度。
- The impact of makeup gas for packed column on sensitivity of FID (Flame Ionization Detector) was studied with different concentration sample and different carrier gas flow in order to find out optimal sensitivity of Gas Chromatogram. 摘要本文研究氣相色譜填充柱在不同柱流量和不同濃度的苯系物樣品,使用尾吹氣對FID檢測器靈敏度的影響,以確定分析儀器的最佳靈敏度。
- Acrylic resin is diluted in ethyl acetate and the remnant monomer is well separated from it by gas chromatography and is quantificationally measured by hydrogen flame ionization detector (FID). 乙酸丁酯稀釋丙烯酸樹(shù)脂后,用氣相色譜法使丙烯酸樹(shù)脂中的各種殘余單體得到較好分離,再采用氫火焰離子化檢測器(FID)定量測定。
- A method is developed for determination of paclotrazol by gas chromatography on a 10% SE 30 chromatographic column with flame ionization detector using diisobutyl phthalate as a internal standard. 研究了多效唑的氣相色譜分析條件,選擇10%25SE-30為固定液,鄰苯二甲酸二異丁酯為內標,采用內標標準曲線(xiàn)法作為定量分析的方法。
- Both flame ionization detector and ultraviolet detector can be used as the detecting part of SubWC.Thus the range of its application and selection of optimal conditions are largely broadened. 檢測既可用氫火焰離子化檢測器檢測,也可用紫外檢測器檢測,極大地拓寬了色譜分離和最佳條件選擇的范圍。
- Methods:Tetrachloroethane in air was collected by activated carbon,desorped with carbon disulfide,separated by GDX-103 chromatography column,and detected by flame ionization detector. 方法:空氣中四氯乙烷用活性炭管采集,二硫化碳解吸,經(jīng)GDX-103色譜柱分離,氫火焰離子化檢測器檢測。