ISO 16200-2-2000
车间空气质量 采用溶剂解析/气相色谱法对挥发性有机物进行采样和分析 第2部分:扩散采样法

Workplace air quality - Sampling and analysis of volatile organic compounds by solvent desorption/gas chromatography - Part 2: Diffusive sampling method


ISO 16200-2-2000 中,可能用到以下仪器

 

德国徕卡 生物医疗显微镜 DM2000

德国徕卡 生物医疗显微镜 DM2000

徕卡显微系统(上海)贸易有限公司

 

图象分析软件 Leica LAS Image Analysis

图象分析软件 Leica LAS Image Analysis

徕卡显微系统(上海)贸易有限公司

 

Gatan原位加热台Murano 525

Gatan原位加热台Murano 525

北京欧波同光学技术有限公司

 

德国徕卡 手术显微镜 M320 F12 for ENT

德国徕卡 手术显微镜 M320 F12 for ENT

徕卡显微系统(上海)贸易有限公司

 

Norprene Food(A-60F)蠕动泵管

Norprene Food(A-60F)蠕动泵管

北京中科科尔仪器有限公司

 

Norprene(A-60G)蠕动泵管

Norprene(A-60G)蠕动泵管

北京中科科尔仪器有限公司

 

ISO 16200-2-2000



标准号
ISO 16200-2-2000
发布日期
2000年06月
实施日期
废止日期
中国标准分类号
Z15
国际标准分类号
13.040.30
发布单位
IX-ISO
适用范围
This part of ISO 16200 gives general guidance for the sampling and analysis of volatile organic compounds (VOCs) in air. This part of ISO 16200 is applicable to a wide range of VOCs, including hydrocarbons, halogenated hydrocarbons, esters, glycol ethers, ketones and alcohols. A number of devices and sorbents are recommended for the sampling of these VOCs, each sorbent having a different range of applicability. NOTE Activated coconut shell charcoal is frequently used. Very polar compounds may require derivatization; very low boiling compounds will only be partially retained by the sorbents and can only be estimated qualitatively. Semi-volatile compounds will be fully retained by the sorbents, but may only be partially recovered. This part of ISO 16200 is valid for the measurement of airborne vapours of VOCs in a concentration range of approximately 1 mg/m to 1000 mg/m individual organic for an exposure time of 8 h. The upper limit of the useful range is set by the sorptive capacity of the sorbent used and, subject to dilution of the analysed solution, by the linear dynamic range of the gas chromatograph column and detector or by the sample splitting capability of the analytical instrumentation used. The lower limit of the useful range depends on the noise level of the detector and on blank levels of analyte and/or interfering artefacts on the sampling devices or in the desorption solvent. Artefacts are typically sub-nanogram for activated charcoal, but higher levels of aromatic hydrocarbons have been noted in some batches.

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