产品简介
大气非甲烷总烃自动监测毛细管柱,室内空气,焦炉煤气,炼厂气,天然气,变压器油,多氯联苯,植物油,增塑剂,塑化剂,消毒剂,氨水,氨气,室内空气TVOC,环氧乙烷,口罩EO
公司简介
浩瀚色谱(山东)应用技术开发有限公司,是齐鲁大地一家从事色谱仪器技术开发,技术推广的技术型企业,研发出多款新型产品。(一)专用色谱柱:1.氯乙suan直接进样分析专用柱2.氯化氢直接进样分析专用柱3.氯QI直接进样分析专用柱4.四氟化硅直接进样分析专用柱5.六氟二甲基硅醚分析专用柱6.氨气直接进样分析专用柱(二)痕量分析专用气相色谱仪:1.高纯气体中痕量水(ppb级)分析专用气相色谱仪2.纯苯中痕量噻吩(ppb级)分析专用气相色谱仪(三)防腐型气相色谱仪,并成功应用于氟气,氟化氢,氯QI,氨气,酰氯,氯化氢,三氯氢硅,四氟化硅,氯YI酸,氯HUA亚砜,硫化物,二氯化硫等腐蚀性物质检测,产品遍布各个行业及地区,其中不乏有大型央企---中石油,中储粮,秦山核电站,中纺集团等,部分出口。
公司主要业务
1.通用气相色谱仪生产销售:氢火焰检测器气相色谱仪,热导检测器气相色谱仪,火焰光度检测器气相色谱仪,氮磷检测器气相色谱仪,电子捕获检测器气相色谱仪。
2.便携式气相色谱仪,在线气相色谱仪生产销售。
3.专用气相色谱仪研发制造:氧化锆检测器气相色谱仪,氦离子检测器气相色谱仪,氩离子检测器气相色谱仪等。
4.防腐气相色谱仪
5.二维,多维气相色谱仪
6.高效液相色谱仪
7.实验室纯水机,顶空进样器,自动进样器,热解析仪,氮氢空发生器,色谱耗材(色谱柱,石墨垫,稳压阀,压盖钳,顶空瓶,7725进样阀等),分光光度计,电子天平,水分测定仪,干燥箱,离心机,玻璃仪器,化学试剂等整套实验室设备生产销售。
8.提供技术转让,建立分析方法。
9.从事旧色谱以旧换新的业务。
10.色谱柱研制,定做。
11.承接样品的检测业务。
12.承接国内外色谱仪器的维修,改装业务。
浩瀚色谱(山东)应用技术开发有限公司,以客户为中心,想客户所想,销售的不仅仅是产品,重要的是帮助客户解决问题,架起心灵沟通的桥梁。
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大气非甲烷总烃自动监测毛细管柱
大气非甲烷总烃自动监测毛细管柱 详细信息:
对非甲烷总烃自动连续监测系统进行示值误差、响应时间、零点漂移和量程漂移等性能测试,对非甲烷总烃便携式分析仪进行检出限、精密度、准确度等性能测试.性能测试满足相关要求后同时利用便携式催化氧化-氢火焰离子化检测器法(催化氧化-FID)、便携式气相色谱-氢火焰离子化检测器法(GC-FID)和实验室气相色谱-氢火焰离子化检测器法(GC-FID)对固定污染源非甲烷总烃自动连续监测系统进行现场比对测试.测试结果表明,在工况变动较大的情况下,便携式FID法与实验室GC-FID法测试结果相对误差为19.6% ~35.1%,具有很好的可比性.以实验室GC-FID法为参比方法时,自动连续监测系统相对准确度为64.1%,不满足《固定污染源废气非甲烷总烃连续监测系统技术要求及检测方法》(HJ 1013-2018)的要求.以便携式FID为参比方法时,自动连续监测系统相对准确度分别为28.6%和35.3%,相对《固定污染源废气总烃、甲烷和非甲烷总烃的测定气相色谱法》(HJ 38-2017)方法一致性更好,均能满足《HJ 1013-2018》的要求.提出,应推进便携式方法在自动连续监测系统验收和质控比对中的应用.
名称:甲烷毛细管柱
编号:20220719007
规格:30m*0.53mm*25um
型号:HH-PLOT Molecular sieve
使用温度:250°C
应用:HJ-2017环境空气/固定污染源废气中总烃,甲烷,非甲烷总烃的测定 气相色谱法
大气非甲烷总烃自动监测毛细管柱 测试谱图:
Capillary column for automatic monitoring of atmospheric non-methane total hydrocarbons
Capillary column for automatic monitoring of atmospheric non-methane total hydrocarbons Details:
Carry out performance tests such as indication error, response time, zero drift and span drift for the automatic continuous monitoring system of non-methane total hydrocarbons, and carry out performance tests such as detection limit, precision and accuracy of the portable non-methane total hydrocarbon analyzer. Performance test After meeting the relevant requirements, use the portable catalytic oxidation-hydrogen flame ionization detector method (catalytic oxidation-FID), portable gas chromatography-hydrogen flame ionization detector method (GC-FID) and laboratory gas chromatography-hydrogen flame ionization method The field comparison test of the automatic continuous monitoring system for non-methane total hydrocarbons of fixed pollution sources was carried out by the detector method (GC-FID). The relative error of the results is 19.6% to 35.1%, which has a good comparability. When the laboratory GC-FID method is used as the reference method, the relative accuracy of the automatic continuous monitoring system is 64.1%, which does not meet the requirements of the "fixed pollution source exhaust gas non-methane total". Hydrocarbon Continuous Monitoring System Technical Requirements and Detection Methods (HJ 1013-2018) requirements. When the portable FID is used as the reference method, the relative accuracy of the automatic continuous monitoring system is 28.6% and 35.3%, respectively, compared with the "fixed pollution source exhaust gas total hydrocarbons" , Determination of methane and non-methane total hydrocarbons by Gas Chromatography (HJ 38-2017), the method is more consistent and can meet the requirements of "HJ 1013-2018". It is proposed that portable methods should be promoted in the acceptance and testing of automatic continuous monitoring systems. Application in quality control comparison.
Name: Methane capillary column
Number: 20220719007
Specifications: 30m*0.53mm*25um
Model: HH-PLOT Molecular sieve
Operating temperature: 250°C
Application: HJ-2017 Determination of total hydrocarbons, methane, and non-methane total hydrocarbons in ambient air/stationary pollution source waste gas by gas chromatography
Test spectrum of capillary column for automatic monitoring of atmospheric non-methane total hydrocarbons:
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