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Merck

28283-U

Supelco

Carbotrap® 300 Thermal Desorption Tube

greener alternative

glass, O.D. x I.D. x L 6 mm × 4 mm × 7 in., fritted, preconditioned, pkg of 1 ea

别名:

Carbotrap® 300 玻璃 TD 管,7 英寸,用于 Gerstel®

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About This Item

分類程式碼代碼:
41104008
NACRES:
NB.24

product name

Carbotrap® 300, glass TD tube, fritted, O.D. × I.D. × L 6 mm × 4 mm × 7 in., preconditioned, pkg of 1 ea

材料

glass TD tube

agency

EPA TO-17

描述

Sealed with TDS³ Storage Container

產品線

Carbotrap®

特點

fritted
preconditioned

包裝

pkg of 1 ea

環保替代產品特色

Waste Prevention
Safer Solvents and Auxiliaries
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

技術

active air sampling: suitable

外徑 × 內徑 × 長度

6 mm × 4 mm × 7 in.

基質

Carbosieve S-III carbon molecular sieve (CMS)
Carbotrap® 300 (Packed with Carbotrap C, Carbotrap B, Carbosieve SIII)
Carbotrap® B graphitized carbon black (GCB)
Carbotrap® C graphitized carbon black (GCB)

應用

air monitoring
environmental
industrial hygiene

相容性

for use with Gerstel® TDS A & TDS 2

環保替代類別

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一般說明

我们竭诚为您提供绿色替代产品,这些产品遵守一项或多项绿色化学12项原则。热脱附管可重复使用至少50-100次,减少转移瓶、盖子和吸头等配件消耗,符合“废物预防”原则。热脱附管还能避免使用CS2等有毒溶剂来提取目标VOC,因此符合“安全的溶剂和助剂”原则。点击此处以获取更多信息。

法律資訊

Carbotrap is a registered trademark of Merck KGaA, Darmstadt, Germany
GERSTEL is a registered trademark of Gerstel GmbH & Co. KG

儲存類別代碼

11 - Combustible Solids

水污染物質分類(WGK)

nwg

閃點(°F)

Not applicable

閃點(°C)

Not applicable


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Florian Gahleitner et al.
Bioanalysis, 5(18), 2239-2247 (2013-09-24)
In-community non-invasive identification of asthma-specific volatile organic compounds (VOCs) in exhaled breath presents opportunities to characterize phenotypes, and monitor disease state and therapies. The feasibility of breath sampling with children and the preliminary identification of childhood asthma markers were studied.
Yifei Sun et al.
Journal of environmental sciences (China), 25(1), 213-219 (2013-04-17)
A group parameter approach using "total organic halogen" is effective for monitoring gaseous organic halogen compounds, including fluorine, chlorine, and bromine compounds, generated from combustion. We described the use of barrier-discharge radiofrequency-helium-plasma/atomic emission spectrometry, for the detection of semi- and
Gary Strobel et al.
Biotechnology letters, 35(4), 539-552 (2012-12-19)
The construction and testing of a unique instrument, the Paleobiosphere, which mimics some of the conditions of the ancient earth, is described. The instrument provides an experimental testing system for determining if certain microbes, when provided an adequate environment, can
David J Wevill et al.
The Analyst, 129(7), 634-638 (2004-06-24)
The automated calibration and analysis of very low mixing ratios of the reactive volatile organic halocarbons CH(3)I, CHCl(3), C(2)H(5)I, 2-C(3)H(7)I, CH(2)Br(2), CH(2)ClI, CHBr(2)Cl, 1-C(3)H(7)I, CH(2)BrI, CHBr(3) and CH(2)I(2) for long term atmospheric field measurements are described. Analytes were pre-concentrated from
W A McClenny et al.
Journal of chromatography. A, 813(1), 101-111 (1998-08-11)
An evaluation of performance criteria for US Environmental Protection Agency Compendium Method TO-17 for monitoring volatile organic compounds (VOCs) in air has been accomplished. The method is a solid adsorbent-based sampling and analytical procedure including performance criteria for four merit

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