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相关概念视频

Gas Chromatography: Introduction01:13

Gas Chromatography: Introduction

1.1K
Gas chromatography (GC) is a technique for separating and analyzing volatile compounds in a sample. Its primary purpose is to identify and quantify components in complex mixtures, making it essential in fields such as environmental analysis, pharmaceuticals, and petrochemicals. GC is also called vapor-phase chromatography (VPC) or gas-liquid partition chromatography (GLPC).
In GC,  a sample is vaporized and mixed with an inert carrier gas (the mobile phase), which transports it through a...
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Gas Chromatography: Types of Columns and Stationary Phases01:17

Gas Chromatography: Types of Columns and Stationary Phases

425
Gas chromatography (GC) relies on stationary phases to separate and analyze components in a sample. There are two main types of stationary phases: liquid and solid. Liquid stationary phases are non-volatile, thermally stable, and chemically inert liquids coated onto the column. Solid stationary phases are particles of adsorbent material, such as silica gel or molecular sieves.
For an analyte to remain on the column for a sufficient amount of time, it must exhibit some level of compatibility (or...
425
Gas Chromatography–Mass Spectrometry (GC–MS)01:14

Gas Chromatography–Mass Spectrometry (GC–MS)

3.8K
Gas chromatography–mass spectrometry (GC–MS) is the combination of analytical techniques of gas chromatography and mass spectrometry in a single instrument for analyzing a mixture of compounds. The gas chromatograph separates the compounds in the mixture, and the mass spectrometer analyzes each compound separately to determine the molecular masses and molecular structures.
A gas chromatograph consists of a long, narrow capillary column with a polysiloxane coating on the inner wall....
3.8K
Sample Preparation for Analysis: Overview01:21

Sample Preparation for Analysis: Overview

176
Sample preparation is an essential step in the analytical process. It involves preparing a sample so that it can be analyzed accurately. The goal is to extract the analyte, the substance you want to measure, from the sample while removing any components that may interfere with the analysis. Sample preparation techniques vary depending on the physical state of the sample.
Bulk or large solid samples are typically reduced in size using grinding, crushing, or milling techniques to increase the...
176
Sampling Methods: Sample Types01:18

Sampling Methods: Sample Types

176
Sampling materials are classified into three main types: solid, liquid, and gas.
Solid samples include a variety of substances, such as sediments from water bodies, soil, metals, and biological tissues. Two standard methods for extracting sediments from water bodies are grab sampling and piston coring. Grab sampling involves using a device to collect a discrete sediment sample from the bottom of a water body with minimal disturbance. Grab samples do not always represent the entire area due to...
176
Gas Chromatography: Sample Injection Systems01:08

Gas Chromatography: Sample Injection Systems

331
In gas chromatography, the sample is introduced as a vapor plug into the carrier gas stream for high efficiency and resolution. A microsyringe injects the sample solution into a heated sample port, vaporizing it and mixing it with the carrier gas. This process is important to ensure the sample is properly prepared for analysis. Thermally sensitive samples can be injected directly into the column and volatilized by slowly increasing the column temperature.
Two primary injection methods are used...
331

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相关实验视频

Updated: May 25, 2025

Capturing Actively Produced Microbial Volatile Organic Compounds from Human-Associated Samples with Vacuum-Assisted Sorbent Extraction
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固体相提取装置用于从气体样本中提取挥发性有机化合物.

Ikuo Ueta1, Koki Nakagami2, Yoshihiro Saito2

  • 1Department of Applied Chemistry, University of Yamanashi, 4-3-11 Takeda, Kofu, 400-8511, Japan. iueta@yamanashi.ac.jp.

Analytical sciences : the international journal of the Japan Society for Analytical Chemistry
|February 25, 2025
PubMed
概括

固相提取 (SPE) 装置适用于分析气体中的挥发性有机化合物. 这些可重复使用的设备有效地提取和出目标分析物,使用一种脱吸溶剂.

关键词:
气体染色学 是一种气体染色学.固体相提取的固体相提取方法挥发性有机化合物 挥发性有机化合物

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科学领域:

  • 分析化学 分析化学
  • 环境科学 环境科学

背景情况:

  • 固相提取 (SPE) 是一种重要的样本制备方法,用于在仪器分析之前在液体样本中净化分析物.
  • 传统的SPE设备涉及将吸附剂包装到子中,用于液体样本提取和用有机溶剂化.

研究的目的:

  • 总结一下专门设计用于从气体样本中提取挥发性有机化合物 (VOC) 的SPE设备.
  • 突出SPE技术的适应性用于空气质量监测和分析.

主要方法:

  • 针对气体样本矩阵量身定制的SPE设备设计的审查.
  • 使用这些专门的SPE设备,描述VOC的提取和化过程.
  • 在吸附剂再生后,讨论SPE设备的可重复使用性.

主要成果:

  • 用于气体样本的SPE设备有效提取目标挥发性有机化合物.
  • 提取的分析物的溶解是通过通过装置通过一种脱吸溶剂来实现的.
  • 在SPE设备中的吸附材料可以干燥以后重复使用,提高成本效益.

结论:

  • SPE技术为准备气体样本以分析挥发性有机化合物提供了一种可行和高效的方法.
  • 描述的SPE设备为环境监测和空气质量评估提供了可重复使用和有效的解决方案.