加工定制:是 | 品牌:ANSEROS | 型號:低濃度臭氧分析機,ANSEROS |
種類:德國臭氧老化機氣體分析機 | | |
ng>德國進口低濃度臭氧氣體檢測機ng>
ng> MP6060,量程0-100PPM.(可選量程0-1PPM,0-10PPM)ng>
ng> MP6020,量程0-1000PPMng>
ng>進口高精度臭氧檢測機MP,ng>
ng>LUM 0-0.5PPM,ng>
ng>SEN 0-1PPM.ng>
ng> ng>
ng>德國臭氧氣體分析機MP,ng>
ng>0-200MG/M3 0-2G/M3ng>
ng>(臭氧老化箱用臭氧檢測機)ng>
ng> ng>
ng>ng>ANSEROS MP德國ng>多量程高精度臭氧檢測機ng>
ng> ng>
ng>LNSHARK@163,.COM QQ 271601004ng>
低濃度臭氧分析機 技術參數:
檢測范圍:(MP6060 )0~2.000 0~20.00 0~200.0 mg O3/Nm3
(0-100ppm)
(MP6020 ) 0~2000 mg O3/Nm3 (0--1000ppm)
檢測精度:0.2 臭氧濃度范圍 3極
分辨率 0.01PPM
重 現 性:±0.2%
輸 出:0,4-20mA,串行接口RS232
零點偏移:0%(自動校零)
量程偏移:0%(微處理器控制)
帶鍵盤,帶20個字符LCD顯示器,4位有效數字
報警繼電器 4個繼電器給用戶用,6個繼電器鍵盤設置
電 源:220VAC 50Hz
可選顯示單位:ppm, mgO3/m3, mgO3/Nm3, ppm (V/V) , pphm, pphm (V/V)
壓力補償:自動
溫度補償:自動
氣體壓力:連續
外形尺寸:H135×W485×D365
重 量:10Kg
保 質 期:12個月
ng> ng>
ng>低濃度,高精度,長壽命,紫外線吸收法,連續測量,ng>
ng>0.001ppm-1ppm, 0.001-10ppm,0.001-100ppm .ng>
ng>0-200MG/M3,0-2G/M3
ng>ng>報警器
● 微處理器控制技術
● 最小可測得數值低於1ppb
● 獨特技術:無開關閥,隻用單一紫外光束
● 不需校準(生產時預設定)
● 為特殊應用配備常規設計的吸收匣
● 通過分析機采樣氣體的連續流動,確保數據準確無誤
● 數字式輸出信號:臭氧濃度、氣體壓力、氣體溫度
● 內置的臭氧發生器(可選)
● 符合下列標準:EPA、ISO、IOA、DIN、NFTng>
ng>醫療、除臭除味、環境、工業安全/衛生、研究與設計、材料測試、其他臭氧監測機的校準。 ng> |
ng> 運行原理ng>ng>測試原理:單光源非擴散式紫外吸收法,公認的光學系統ng> | ng>可顯示單位: ppm、mg O3/Nm3、g O3/Nm3、%重量ng> | ng>范圍:0~1.000, 0~10.00, 0~100.0ppm,0-1000PPM 0~1.000g(其它根據需要)ng> | ng>壓力補償:自動ng> | ng>溫度補償:自動ng> | ng>可重復性: 量程端值的± 0.2%ng> | ng>測量頻率: 實時ng> | ng>精確度: 讀數±0.2ng> | ng>數字輸出: RS232、IEEE、V24(臭氧濃度、壓力、溫度)ng> | ng>檢測極限: 10ppbng> | ng>模擬輸出: 按顧客要求ng> | ng>零點飄移: 0%(自動歸零)ng> | ng>流速要求: 100~200l/hng> | ng>跨度飄移: 0%(微處理器控制)ng> | ng>重量: 10kgng> | ng>尺寸: 標準19英寸箱體 135×485×365(mm)ng> | ng>氣體壓力:連續ng> | ng>外部電源: 110V/230V, 50~60Hzng> | ng>電源: 內部/外部110V/230V50~60Hzng> | ng>輸出: 0/4~20mA或0~1VDC RS32系列接口(可選擇)ng> |
| ng>MP 系列低濃度臭氧分析機ng>的詳細資料: |
低濃度臭氧分析機 技術參數:檢測范圍:(MP6060 )0~2.000 0~20.00 0~200.0 mg O3/Nm3 (MP6020 ) 0~2000 mg O3/Nm3 檢測精度:0.2 重 現 性:±0.2% 輸 出:0-20mA,串行接口 零點偏移:0%(自動校零) 量程偏移:0%(微處理器控制) 電 源:220VAC 50Hz 可選顯示單位:ppm, mgO3/m3, mgO3/Nm3, ppm (V/V) , pphm, pphm (V/V) 壓力補償:自動 溫度補償:自動 氣體壓力:連續 外形尺寸:H135×W485×D365 重 量:10Kg 保 質 期:12個月 |
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The ozone measuring instruments are subdivided into two classes: - Devices which measure ozone in gas phase (Figure 2a).
- Devices which measure in aqueous phase (Figure 2b).
Dependent on the measurement methods and ranges, a special extension is added to the name of the corresponding group, e.g. ng>"Ozomat MP"ng>. A detailed survey of the different instruments which are characterized by a group name with extension and their typical applications are shown in figures 2a and 2b. ng>Measuring Ozone in the Gas Phaseng> ng>ApplicationModelng> | ng>GMng> | ng>MPng> | ng>LUMng> | ng>MAKng> | ng>Test-KITng> | ng>SENng> | ng>Ozone Generator Outputng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng>•ng> | ng> ng> | ng>Offgasng> | ng> ng> | ng>•ng> | ng> ng> | ng> ng> | ng>•ng> | ng> ng> | ng>Outlet Catalystng> | ng> ng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Atmosphereng> | ng> ng> | ng>•ng> | ng>•ng> | ng>•ng> | ng> ng> | ng>•ng> | ng>Simulationng> | ng>•ng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Test Chamberng> | ng> ng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Overpressureng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Vacuumng> | ng> ng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Sterilization Chamberng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Sewage Plantng> | ng>•ng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Room Air Monitoringng> | ng> ng> | ng>•ng> | ng>•ng> | ng>•ng> | ng> ng> | ng>•ng> | ng>Airplaneng> | ng> ng> | ng>•ng> | ng>•ng> | ng> ng> | ng> ng> | ng>•ng> | ng>Monitoring of several sampling pointsng> | ng>*ng> | ng>*ng> | ng>*ng> | ng> ng> | ng> ng> | ng>*ng> |
* | in combination with peripheral MUS |
Figure 2a: ANSEROS instruments for measuring ozone in the gas phase ng>Measuring Ozone in the Water Phaseng> ng>ApplicationModelng> | ng>WPng> | ng>TIZng> | ng>REDng> | ng>WMng> | ng>Test-KITng> | ng>Drinking Waterng> | ng>•ng> | ng>•ng> | ng>•ng> | ng> ng> | ng>•ng> | ng>Mineral Waterng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Swimming Poolsng> | ng>•ng> | ng>•ng> | ng> ng> | ng> ng> | ng>•ng> | ng>Processing Waterng> | ng>•ng> | ng> ng> | ng>•ng> | ng> ng> | ng> ng> | ng>Waste Waterng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Pulp Waterng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Destilled Waterng> | ng>•ng> | ng> ng> | ng>•ng> | ng>•ng> | ng> ng> | ng>Demineralised Waterng> | ng>•ng> | ng> ng> | ng>•ng> | ng>•ng> | ng> ng> | ng>Water cont. Iron, Manganeseng> | ng>•ng> | ng> ng> | ng> ng> | ng> ng> | ng> ng> | ng>Semiconductor Industryng> | ng>•ng> | ng> ng> | ng> ng> | ng>•ng> | ng> ng> | ng>Cooling Towersng> | ng>•ng> | ng>•ng> | ng> ng> | ng> ng> | ng>•ng> | ng>Measuring several Sampling Pointsng> | ng>*ng> | ng> ng> | ng> ng> | ng>*ng> | ng> ng> |
* | in combination with peripheral MUS |
Figure 2b: ANSEROS instruments for measuring ozone in the water phase The variety of measuring instruments and accessories has been developped during the last 20 years - always in close cooperation with the customer. ANSEROS appreciates all customer ideas and suggestions. |
| ng> Peripheralsng> | ng>TOPng> |
At the ozonisation we consider measurement and control devices as interface to the process and the gas and water aggregates as periphery. Figure 3 shows a schematic ozonisation process.
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