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相关概念视频

Titration of Polyprotic Base with a Strong Acid01:18

Titration of Polyprotic Base with a Strong Acid

870
The titration of a polyprotic base such as sodium carbonate with a strong acid such as hydrochloric acid results in two equivalence points on the titration curve. At the first equivalence point, the carbonate ions in the base are completely converted to bicarbonate ions. The second equivalence point corresponds to the complete conversion of bicarbonate ions to carbonic acid, which dissociates into carbon dioxide and water. The region before the first equivalence point corresponds to the...
870
Titration of a Weak Acid with a Weak Base01:08

Titration of a Weak Acid with a Weak Base

3.3K
Weak acids and bases do not undergo dissociation completely, and titrations between these two are rarely studied. When such studies are performed, say, for the titration of a weak acid with a weak base, the titration curve plots the change in pH as a function of the volume of base added. Take the titration of acetic acid with ammonia, for instance. During the titration, these two species form ammonium acetate and water, but the pH change is slow and gradual.
As a result, there is no simple...
3.3K
Titration of a Weak Base with a Strong Acid01:20

Titration of a Weak Base with a Strong Acid

5.6K
The titration curve of a weak base like ammonia with a strong acid like hydrochloric acid is the mirror image of the titration curve of a weak acid with a strong base.
Using the ICE table and substituting the Kb value, we calculate the initial pH of 50 mL of 0.1 M ammonia to be 11.11. Addition of 25 mL of 0.1 M hydrochloric acid to this solution of ammonia results in a buffer with an equal concentration of ammonia and ammonium ions. The pH of this buffer can be calculated by substituting these...
5.6K
Calculating pH Changes in a Buffer Solution02:45

Calculating pH Changes in a Buffer Solution

53.9K
A buffer can prevent a sudden drop or increase in the pH of a solution after the addition of a strong acid or base up to its buffering capacity; however, such addition of a strong acid or base does result in the slight pH change of the solution. The small pH change can be calculated by determining the resulting change in the concentration of buffer components, i.e., a weak acid and its conjugate base or vice versa. The concentrations obtained using these stoichiometric calculations can be used...
53.9K
Bicarbonate-Carbonic Acid Buffer01:22

Bicarbonate-Carbonic Acid Buffer

2.9K
The carbonic acid-bicarbonate buffer system is critical for maintaining the body's pH balance. It operates on the equilibrium:
2.9K
Mixtures of Acids01:19

Mixtures of Acids

772
The pH of a solution containing an acid can be determined using its acid dissociation constant and initial concentration. If a solution contains two different acids, then its pH can be determined using one of several methods depending on the relative strength of the acids and their dissociation constants.
In a strong and weak acid mixture, the strong acid dissociates completely and becomes a source of almost all the hydronium ions present in the solution. In contrast, the weak acid shows...
772

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相关实验视频

Updated: Sep 11, 2025

Measurement and Analysis of Extracellular Acid Production to Determine Glycolytic Rate
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Measurement and Analysis of Extracellular Acid Production to Determine Glycolytic Rate

Published on: December 12, 2015

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使用浮式盖子方法进行二碳酸盐缓冲溶解试验:pH维护的实验室间可重复性

Masahiro Fushimi1,2, Masaki Higashino2,3, Shotaro Ikuta4

  • 1Sawai Pharmaceutical Co., Ltd., 5-2-30 Miyahara, Yodogawa-ku, Osaka 532-0003, Japan.

Chemical & pharmaceutical bulletin
|August 12, 2025
PubMed
概括

浮式盖子方法在二碳酸盐缓冲器 (BCB) 溶解试验中有效保持pH,证实了和流通细胞方法的实验室间可重复性.

关键词:
碳酸的缓冲器 碳酸的缓冲器生物相关的缓冲区.浮动盖子 浮动盖子在体内可预测溶解.实验室间可重复性

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Simultaneous pH Measurement in Endocytic and Cytosolic Compartments in Living Cells using Confocal Microscopy
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Simultaneous pH Measurement in Endocytic and Cytosolic Compartments in Living Cells using Confocal Microscopy

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Real-Time, Semi-Automated Fluorescent Measurement of the Airway Surface Liquid pH of Primary Human Airway Epithelial Cells
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Real-Time, Semi-Automated Fluorescent Measurement of the Airway Surface Liquid pH of Primary Human Airway Epithelial Cells

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相关实验视频

Last Updated: Sep 11, 2025

Measurement and Analysis of Extracellular Acid Production to Determine Glycolytic Rate
06:47

Measurement and Analysis of Extracellular Acid Production to Determine Glycolytic Rate

Published on: December 12, 2015

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Simultaneous pH Measurement in Endocytic and Cytosolic Compartments in Living Cells using Confocal Microscopy
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Simultaneous pH Measurement in Endocytic and Cytosolic Compartments in Living Cells using Confocal Microscopy

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Real-Time, Semi-Automated Fluorescent Measurement of the Airway Surface Liquid pH of Primary Human Airway Epithelial Cells
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Real-Time, Semi-Automated Fluorescent Measurement of the Airway Surface Liquid pH of Primary Human Airway Epithelial Cells

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科学领域:

  • 制药科学 制药科学
  • 分析化学 分析化学
  • 物理化学 物理化学

背景情况:

  • 二碳酸盐缓冲器 (BCB) 在溶解测试中具有挑战性,原因是二氧化碳逃逸引起的pH漂移.
  • 浮式盖子方法为溶解试验中稳定的BCB使用提供了一个潜在的解决方案.

研究的目的:

  • 通过使用浮盖方法与BCB确认pH维护的实验室间可重复性.
  • 为了评估浮式盖子方法在和流通电池 (FTC) 溶解装置中的有效性.

主要方法:

  • 三家制药公司和一个学术机构参与了.
  • 用二碳酸盐缓冲溶液 (pH 6.5,15 mM) 作为测试介质.
  • 评价了pH稳定性,并没有浮动盖在 (50和100rpm) 和FTC方法.

主要成果:

  • 在没有浮动盖的情况下,在和FTC方法中都观察到显著的pH升高 (ΔpH>1.6).
  • 浮盖方法最大限度地降低了pH值的变化,在所有条件下,ΔpH通常低于0.4.
  • ΔpH 的标准偏差始终很低 (≤0.05),表明可重复性很高.

结论:

  • 浮式盖子方法证明了在溶解测试中保持BCB pH的卓越的实验室间可重复性.
  • 这种方法对和FTC溶解装置都有效,克服了以前使用BCB的限制.