[H3O+] 수율에 대한 해결하기 위해 재배열 :이 방정식의 양쪽의 음의 logarithm을 복용하면여기서 pKa는 약한 산의 이온화 상수의 로가릿의 음수이다(pKa = 로그 Ka). 이 방정식은 pH, 약한 산의 이온화 상수, 및 완충액에서 약한 공주산염염 쌍의 농도에 관한 것이다. 과학자들은 종종 헨더슨-하셀발치 방정식이라고 불리는 이 표현을 사용하여 버퍼 솔루션의 pH를 계산합니다. 이 방정식을 사용하려면 "x가 작습니다" 가정은 유효해야 합니다.로렌스 조셉 헨더슨과 칼 앨버트 하셀발치로렌스 조셉 헨더슨 (1878-1942)은 미국의 의사, 생화학자 및 생리학자였으며, 그의 많은 추구 중 몇 가지만 이름을 지은 것입니다. 그는 하버드대학에서 의학 학위를 취득한 후 2년 동안 …." />

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16.3: 핸더슨-하셀바흐 식

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Henderson-Hasselbalch Equation
 
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16.3: Henderson-Hasselbalch Equation

The ionization-constant expression for a solution of a weak acid can be written as:

Eq1

Rearranging to solve for [H3O+] yields:

Eq2

Taking the negative logarithm of both sides of this equation gives

Eq3

which can be written as

Eq4

where pKa is the negative of the logarithm of the ionization constant of the weak acid (pKa = −log Ka). This equation relates the pH, the ionization constant of a weak acid, and the concentrations of the weak conjugate acid-base pair in a buffered solution. Scientists often use this expression, called the Henderson-Hasselbalch equation, to calculate the pH of buffer solutions. It is important to note that the “x is small” assumption must be valid to use this equation.

Lawrence Joseph Henderson and Karl Albert Hasselbalch

Lawrence Joseph Henderson (1878–1942) was an American physician, biochemist and physiologist, to name only a few of his many pursuits. He obtained a medical degree from Harvard and then spent 2 years studying in Strasbourg, then a part of Germany, before returning to take a lecturer position at Harvard. He eventually became a professor at Harvard and worked there his entire life. He discovered that the acid-base balance in human blood is regulated by a buffer system formed by the dissolved carbon dioxide in blood. He wrote an equation in 1908 to describe the carbonic acid-carbonate buffer system in blood. Henderson was broadly knowledgeable; in addition to his important research on the physiology of blood, he also wrote on the adaptations of organisms and their fit with their environments, on sociology and on university education. He also founded the Fatigue Laboratory at the Harvard Business School, which examined human physiology with a specific focus on work in industry, exercise, and nutrition.

In 1916, Karl Albert Hasselbalch (1874–1962), a Danish physician and chemist, shared authorship in a paper with Christian Bohr in 1904 that described the Bohr effect, which showed that the ability of hemoglobin in the blood to bind with oxygen was inversely related to the acidity of the blood and the concentration of carbon dioxide. The pH scale was introduced in 1909 by another Dane, Sørensen, and in 1912, Hasselbalch published measurements of the pH of blood. In 1916, Hasselbalch expressed Henderson’s equation in logarithmic terms, consistent with the logarithmic scale of pH, and thus the Henderson-Hasselbalch equation was born.

This text is adapted from Openstax, Chemistry 2e, Section 14.6: Buffers.


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Henderson-Hasselbalch Equation Buffered Solution Conjugate Acid-base Pair ICE Table Equilibrium Constant Expression Hydronium Ion Concentration PH PKa Buffer Equilibrium Concentrations Weak Acid Conjugate Base Ratio Of Base To Acid Weak Base PKb Molar Formic Acid Molar Sodium Formate

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