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question 10
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explain in detail why the ph of the pondwater is lower at night.
- relate your answer to to the process of cellular respiration
- discuss co2 levels
- describe the connection betwwen co2 levels and ph
During the night, plants (and other organisms) in the pond carry out cellular respiration. Cellular respiration is the process by which cells break down glucose ($C_6H_{12}O_6$) in the presence of oxygen ($O_2$) to produce carbon dioxide ($CO_2$), water ($H_2O$), and energy (in the form of ATP). The chemical equation for cellular respiration is $C_6H_{12}O_6+6O_2
ightarrow6CO_2 + 6H_2O+Energy$.
As a result of cellular respiration occurring throughout the night, the concentration of $CO_2$ in the pond water increases. Carbon dioxide dissolves in water and reacts with it to form carbonic acid ($H_2CO_3$) according to the equation $CO_2 + H_2O
ightleftharpoons H_2CO_3$. Carbonic acid is a weak acid that can dissociate to release hydrogen ions ($H^+$). The dissociation of carbonic acid is $H_2CO_3
ightleftharpoons H^++HCO_3^-$.
The pH of a solution is a measure of the hydrogen ion concentration, with the formula $pH =-\log[H^+]$. As the concentration of $H^+$ ions increases (due to the formation of carbonic acid from the increased $CO_2$ levels), the pH of the pond water decreases. So, the higher $CO_2$ levels at night (from cellular respiration) lead to more carbonic acid formation, more $H^+$ ions, and thus a lower pH.
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The pH of pond water is lower at night because during the night, cellular respiration (by plants and other organisms in the pond) occurs, increasing $CO_2$ levels. $CO_2$ dissolves in water to form carbonic acid ($H_2CO_3$), which dissociates to release $H^+$ ions. Since pH is based on $H^+$ concentration ($pH =-\log[H^+]$), the increased $H^+$ (from $CO_2$-derived carbonic acid) lowers the pH.