2.12
当氯化钠等物质添加到水中时,它会发生溶解,从而形成水溶液。并将其溶解程度称为溶解度。溶解的过程能够以平衡的形式存在着,就像其他的化学过程一样。溶解度平衡也称为沉淀平衡,因为溶解的过程是可逆的。并将溶解过程的逆过程称为沉淀。
溶解度在生物和环境的循环过程中非常重要。生物溶解度中一个显著的例子是食物对牙…
考虑一种含有过量固体氟化钙的微溶盐氟化钙的饱和溶液。已溶解的氟化钙已解离为 Ca2+ 和氟离子。
在平衡状态下,氟化钙的解离速率等于其形成速率。
解离程度可通过一个称为溶度积常数或简称溶度积的平衡常数进行定量计算。
Ksp 定义为平衡时,平衡方程式中各离子浓度以其化学计量系数为指数的乘积。
根据勒夏特列原理,微溶盐的溶解度随温度升高而增大,而在同离子存在下由于同离子效应,其溶解度会降低。
如果微溶盐是弱酸的共轭碱,则其溶解度随酸度的增加而增大。
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Q1: What is the solubility product constant and how is it calculated?
The solubility product constant, or Ksp, is the equilibrium constant for a sparingly soluble salt. It is defined as the product of all ion concentrations raised to the power of their coefficients in the balanced equation at equilibrium. Ksp is independent of the solid salt concentration because the solid concentration remains constant in a saturated solution.
Q2: How does temperature affect the solubility of sparingly soluble salts?
According to Le Châtelier's principle, the solubility of a sparingly soluble salt increases with an increase in temperature. When temperature rises, the system shifts to counteract the stress, promoting the dissociation of the solid salt into dissolved ions and increasing overall solubility.
Q3: What is the common ion effect and how does it reduce solubility?
The common ion effect occurs when a sparingly soluble salt's solubility decreases in the presence of a common ion already in solution. This happens because the added ion shifts the equilibrium backward, reducing dissociation of the salt and decreasing its solubility according to Le Châtelier's principle.
Q4: How does pH influence the solubility of salts formed from weak acids?
When a sparingly soluble salt is the conjugate base of a weak acid, increasing acidity raises its solubility. Lower pH provides more hydrogen ions, which react with the conjugate base ions, shifting the equilibrium forward and promoting dissolution of the solid salt.
Q5: What is the difference between solubility equilibria and precipitation equilibria?
Solubility equilibria and precipitation equilibria describe the same reversible process from opposite directions. Solubility is the forward process where a solid dissolves into ions, while precipitation is the reverse process where dissolved ions form a solid. Both exist in dynamic equilibrium in a saturated solution.
Q6: Why is solubility equilibrium important in biological systems?
Solubility equilibria affect critical biological processes. For example, acidic foods dissolve hydroxyapatite in tooth enamel, causing decay. Additionally, calcium oxalate, a sparingly soluble salt, precipitates in kidneys if not flushed out, forming kidney stones. Understanding these equilibria helps prevent health complications.
Q7: What factors besides temperature and common ions affect solubility equilibria?
Solubility equilibria are influenced by solvent type, pH of the solution, and the extent of complex ion formation. These factors shift the equilibrium position by changing ion concentrations or availability, altering the overall solubility of the sparingly soluble salt in the system.