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  • 產(chǎn)品名稱:6400-TSG Total Sulfur in Fuel Gas Analyzer 燃料中總硫氣體分析儀

  • 產(chǎn)品型號:6400-TSG
  • 產(chǎn)品廠商:其它品牌
  • 產(chǎn)品文檔:
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簡單介紹:
6400-TSG Total Sulfur in Fuel Gas Analyzer 燃料中總硫氣體分析儀 使用紫外熒光檢測技術(shù) 6400專業(yè)的火焰燃燒器采用模塊,現(xiàn)場證實紫外熒光技術(shù)(FCCM)檢測氣體流中的所有含硫化合物。該分析儀包括采樣調(diào)節(jié)系統(tǒng),以妥善處理,維護(hù)量極小的樣本組成,其中包括燃料/可燃?xì)怏w的品種
詳情介紹:
6400-TSG Total Sulfur in Fuel Gas Analyzer 燃料中總硫氣體分析儀
使用紫外熒光檢測技術(shù)
6400專業(yè)的火焰燃燒器采用模塊,現(xiàn)場證實紫外熒光技術(shù)(FCCM)檢測氣體流中的所有含硫化合物。該分析儀包括采樣調(diào)節(jié)系統(tǒng),以妥善處理,維護(hù)量極小的樣本組成,其中包括燃料/可燃?xì)怏w的品種.
優(yōu)勢。
范圍從0-200 ppb到百分之水平 - 高達(dá)10 ppb的低檢測。
連續(xù)閱讀更新 - 無開關(guān)閥服務(wù)。
非消耗品傳感技術(shù)。
高溫火焰的FCCM確保完成硫的轉(zhuǎn)化。
沒有FCCM維修**兩年服務(wù)的預(yù)期。
沒有純粹的氧作為一種實用工具所需的氣體。
單個和多個測序流配置。
I類1區(qū)(1區(qū))和I級2區(qū)(2區(qū))配置。
6400天生操作理論。
目前的**硫化合物(如硫化氫,DMS的,職業(yè)導(dǎo)向,CH3SH,二硫化碳等)轉(zhuǎn)換成二氧化硫(SO2)的**控制下,溫度和流量的條件。
二氧化硫+高壓1 - 。>二氧化硫*-> +高壓2 **%%**.二氧化硫SO2是當(dāng)暴露在紫外線光能量,hv1,它創(chuàng)建了一個“興奮”的二氧化硫,二氧化硫的形式*.在高一,激發(fā)態(tài)分子的振動能級,二氧化硫*,將很快就會來的*低水平振動能量通過碰撞失去其他分子。當(dāng)熒光分子返回到它的電子基態(tài)。該所發(fā)出的光,hv2,強(qiáng)度成正比的總硫含量的樣本中發(fā)現(xiàn)。
當(dāng)熒光分子返回到它的電子基態(tài)。該所發(fā)出的光,hv2,強(qiáng)度成正比的總硫含量的樣本中發(fā)現(xiàn)。
大的型號6400 -天生火焰燃燒器采用了模塊(FCCM),它提供了下一個氫火焰強(qiáng)度目前完全燃燒含硫化合物轉(zhuǎn)化。該FCCM方法*適合的應(yīng)用場合氣相分析樣品可以是穩(wěn)態(tài)或有氫氣或碳?xì)浠衔锏暮坎町惡艽蟆?/span>此外,F(xiàn)CCM辦法還規(guī)定一個真正的不斷的分析提供了一個總樣氣中的硫含量現(xiàn)狀的實時顯示。該FCCM是生吃或未經(jīng)提煉的燃料氧化能力不焦化,不載氣或開關(guān)閥是必要的。
轉(zhuǎn)換后的樣氣干燥,然后遞過來的紫外熒光分析儀6400E型二氧化硫分析哪里發(fā)生,可以方便地為總硫顯示。
應(yīng)用領(lǐng)域:
煉油廠(蒸汽甲烷重整,火炬 - 第1118,傳入燃料).
天然氣加工廠(硫化氫 - 酸性氣體的去除).
碳二氧化質(zhì)量控制(德驅(qū)馳)。

Series 6400-TSG Total Sulfur in Fuel Gas Analyzer

Using UV-Fluorescence detection technology

Series 6400-TSG Total Sulfur Analyzer
Download the brochure

The 6400-TSG utilizes a flame combustion converter module (FCCM) with field-proven UV-Fluorescence technology to detect all sulfur compounds in a gas stream. The analyzer includes sample conditioning system to properly handle a variety of sample compositions, including fuel/combustible gases, with minimal maintenance.

Advantages
  • Ranges from 0-200 ppb to percent levels - detection as low as 10 ppb
  • Continuous reading updates - no switching valve to service
  • Non-consumable sensing technology
  • High-temperature flame of FCCM ensures complete sulfur conversion
  • No maintenance of FCCM expected in first two years of service
  • No pure oxygen required as a utility gas
  • Single and multiple sequenced stream configurations available
  • Class I Div 1 (Zone 1) and Class I Div 2 (Zone 2) configurations available
6400-TSG Theory of Operation

The undesirable sulfur compounds present (i.e. H2S, DMS, COS, CH3SH, CS2, etc) are converted into sulfur dioxide (SO2) under precisely controlled temperature and flow conditions.

SO2 + hv1 -> SO2*-> SO2 + hv2


When SO2 is exposed to UV light energy, hv1, it creates an "excited" form of sulfur dioxide, SO2*. A molecule in a high, vibrational level of the excited state, SO2*, will quickly fall to its lowest vibrational level by losing energy to other molecules through collision. Fluorescence occurs when the molecule returns to its electronic ground state. The intensity of the emitted light, hv2, is directly proportional to the total sulfur content found in the sample.

TAI'S Model 6400-TSG utilizes a flame combustion converter module (FCCM) which provides a complete combustion conversion of the sulfur compounds present under the intensity of a hydrogen flame. The FCCM approach is best suited for gas phase applications where the analyzed sample is either steady-state or having a wide variation in the hydrogen or hydrocarbon content. Furthermore, the FCCM approach also provides a truly continuous analysis providing a real-time indication of the total sulfur content present in the sample gas. The FCCM is capable of oxidizing raw or unrefined fuels without coking and no carrier gas or switching valves are necessary.

The converted sample gas is dried, then fed to the Model 6400E UV Fluorescence Analyzer where the SO2 Analysis takes place and is conveniently displayed as Total Sulfur.

Applications Areas:

  • Refinery (Steam Methane Reformer, Flare - Rule 1118, Incoming Fuel)
  • Natural Gas Processing Plants (H2S - acid gas removal)
  • Carbon Dioxide Quality Control (CDQC)















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