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相关概念视频

2° Amines to N-Nitrosamines: Reaction with NaNO201:20

2° Amines to N-Nitrosamines: Reaction with NaNO2

4.6K
Secondary amines react with nitrous acid to form N-nitrosamines, as depicted in Figure 1. Nitrous acid, a weak and unstable acid, is formed in situ from an aqueous solution of sodium nitrite and strong acids, such as hydrochloric acid or sulfuric acid, in cold conditions. In the presence of an acid, the nitrous acid gets protonated. The subsequent loss of water results in the formation of the electrophile known as nitrosonium ion.
4.6K
Physical Properties of Amines01:26

Physical Properties of Amines

3.5K
Amines with low molecular weight are usually gaseous at room temperature, while those with high molecular weight are liquid or solids in nature. Usually, low molecular weight amines have a rotten fish-like smell. Diamines typically have a pungent smell. For instance, cadaverine and putrescine, depicted in Figure 1, are two molecules responsible for decaying tissue.
3.5K
Aldehydes and Ketones with Amines: Imine Formation Mechanism01:23

Aldehydes and Ketones with Amines: Imine Formation Mechanism

6.4K
Imine formation involves the addition of carbonyl compounds to a primary amine. It begins with the generation of carbinolamine through a series of steps involving an initial nucleophilic attack and then several proton transfer reactions. The second part includes the elimination of water, as a leaving group, to give the imine.
Imines are formed under mildly acidic conditions. A pH of 4.5 is ideal for the reaction.
If the pH is low or the solution is too acidic, the reaction slows down in the...
6.4K
1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Overview01:26

1° Amines to Diazonium or Aryldiazonium Salts: Diazotization with NaNO2 Overview

3.5K
Nitrous acid and nitric acids are two types of acids containing nitrogen, among which nitrous acid is weaker than nitric acid. Nitrous acid with a pKa value of 3.37 ionizes in water to give a nitrite ion and the hydronium ion.
The nitrous acid is unstable. Hence, it is formed in situ from a solution of sodium nitrite and cold aqueous acids such as hydrochloric or sulfuric acid. In an acidic solution, the –OH group of nitrous acid undergoes protonation to give oxonium ion, followed by...
3.5K
Preparation of Amines: Reductive Amination of Aldehydes and Ketones01:38

Preparation of Amines: Reductive Amination of Aldehydes and Ketones

3.1K
Carbonyl compounds and primary amines undergo reductive amination first to produce imines, followed by secondary amines in the same reaction mixture, using selective reducing agents like sodium cyanoborohydride or sodium triacetoxyborohydride. Reductive amination produces different degrees of substitution of amines depending on the starting amine substrate.
3.1K
Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview01:16

Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview

5.0K
Primary amines react with carbonyl compounds—aldehydes and ketones—to generate imines. Imines consist of a C=N double bond and are named Schiff bases after its discoverer—the German chemist Hugo Schiff. On the other hand, secondary amines react with carbonyl compounds to give enamines. In enamines, the presence of a C=C double bond adjacent to the nitrogen atom leads to the delocalization of the lone pair.
5.0K

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Updated: Sep 11, 2025

Measuring Sub-23 Nanometer Real Driving Particle Number Emissions Using the Portable DownToTen Sampling System
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Measuring Sub-23 Nanometer Real Driving Particle Number Emissions Using the Portable DownToTen Sampling System

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交通排放的氨基酸在路边促进新粒子的形成.

James Brean1, Federica Bortolussi2, Alex Rowell1

  • 1Division of Environmental Health and Risk Management, School of Geography, Earth and Environmental Sciences, University of Birmingham, Birmingham B15 2TT, U.K.

ACS ES&T air
|August 14, 2025
PubMed
概括

交通排放,特别是C2-胺,在城市地区经常导致新粒子形成 (NPF). 这项研究揭示了这些排放如何克服通常抑制粒子生成的环境因素.

关键词:
没有NPF,没有NPF.气溶喷雾剂是一种气溶.核化的核化.污染 污染 污染 污染 污染交通 交通 交通 交通 交通

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科学领域:

  • 大气化学 大气化学
  • 气溶科学 气溶科学
  • 环境科学 环境科学

背景情况:

  • 新粒子形成 (NPF) 是大气气溶颗粒的重要来源,影响城市空气质量.
  • 预计路边站点的高水槽会抑制NPF,但观察表明经常和强烈的路边NPF.

研究的目的:

  • 调查在城市背景和路边位置驱动NPF的机制.
  • 确定路边NPF所涉及的关键化学物种,并量化它们的贡献.

主要方法:

  • 同时测量硫酸,胺,高氧化有机分子 (HOMs) 和粒子数量大小分布.
  • 城市背景站点和交通繁忙的路边站点之间的比较分析.
  • 机器学习的应用来评估HOMs的作用.

主要成果:

  • 硫酸和氨基,特别是来自交通的C2-氨基,被确定为粒子形成的主要驱动因素.
  • 路边C2-胺度是背景水平的四倍以上,抵消了高沉积点.
  • 机器学习分析表明,HOM在NPF中的作用可能增强,尽管不确定.

结论:

  • 交通排放,特别是C2-胺,在使城市环境中频繁和强烈的NPF成为可能方面发挥着关键作用.
  • 交通产生的物种的度增加可以克服高凝结和凝结水槽的抑制作用.