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产品名称
SPME 纤维组件聚二甲基硅氧烷 (PDMS), df 30 μm(PDMS, needle size 23 ga, for use with autosampler
物料
fused silica fiber
plain yellow hub
质量水平
针尺寸
23 ga
包装
pkg of 3 × ea
环保替代产品特性
Waste Prevention
Safer Solvents and Auxiliaries
Learn more about the Principles of Green Chemistry.
sustainability
Greener Alternative Product
df
30 μm (PDMS)
技术
solid phase microextraction (SPME): suitable
光纤长度
1 cm
基质活性基团
PDMS coating
应用
food and beverages
相容性
for analyte group volatiles (MW 80-500)
for use with autosampler
环保替代产品分类
, Aligned
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相关类别
一般描述
我们竭诚为您带来绿色替代产品,以符合绿色化学12项原则的一项或多项要求。本品为固相微萃取(SPME)技术产品。SPME是绿色环保的样品制备技术,包括采用无溶剂萃取技术、SPME纤维萃取头可重新利用、产生的废弃物极少,符合“废物预防”和“安全的溶剂和助剂”原则。点击 此处 以获取更多信息。
特点和优势
设计与 Merlin Microseal 密封系统结合使用;可与其他无隔垫的系统一起使用。
储存分类代码
10 - Combustible liquids
WGK
WGK 2
闪点(°F)
609.8 °F - closed cup
闪点(°C)
321 °C - closed cup
其他客户在看
Solid-Phase Microextraction for Cannabinoids Analysis in Hair and Its Possible Application to Other Drugs
Strano-Rossi, S., et al.
Journal of Analytical Toxicology, 23 (1999)
Online Determination of Organophosphorus Pesticides in Water by SPME and GC with Thermionic-Selective Detection
Lopez-Avial, V., et al.
Journal of High Resolution Chromatography, 20 (9), 487-492 (1997)
S Niedziella et al.
Journal of chromatography. A, 885(1-2), 457-464 (2000-08-15)
Solid-phase microextraction using a 30 microns polydimethylsiloxane fibre has been used to sample the volatile organic compounds from standard mixtures and from mixtures produced by the decomposition of organic compounds. This method of sampling has been compared with the direct
Alejandra Delgado et al.
Journal of separation science, 31(4), 768-774 (2008-02-02)
Headspace solid-phase microextraction was optimised for the simultaneous preconcentration of methylmercury (MeHg+), monobutyltin, dibutyltin, tributyltin, monophenyltin (MPhT), diphenyltin (DPhT), and triphenyltin (TPhT) from sediments and biota. Extraction time (3-24 min), extraction temperature (20-90 degrees C), desorption time (1-10.4 min), desorption
Calibration of Solid-Phase Microextraction for Air Analyses Based on Physical Chemical Properties of the Coating
Martos, P., et al.
Analytical Chemistry, 69, 206-215 (1997)
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