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Ch. 2 - Water and Carbon: The Chemical Basis of Life
Freeman - Biological Science 8th Edition
Freeman8th EditionBiological ScienceISBN: 9780138276263당신이 사용하는 게 아니라요?교과서 변경
2장, 문제 11

Consider the reaction between carbon dioxide and water to form carbonic acid (CH2O3):


CO2(𝑔)+H2O(𝑙)⇌CH2O3(𝑎𝑞)


In the ocean, carbonic acid immediately dissociates to form a proton and bicarbonate ion, as follows:


CH2O3(𝑎𝑞)⇌CHO3−(𝑎𝑞)+H+(𝑎𝑞)


As atmospheric CO2 increases, the ocean absorbs more of the gas. Would this sequence of reactions be driven to the left or the right? How would this affect the pH of the ocean?

검증된 단계별 안내
1
Identify the sequence of reactions: First, CO2 reacts with H2O to form carbonic acid (CH2O3). Then, carbonic acid dissociates into bicarbonate ion (CHO3−) and a proton (H+).
Understand Le Chatelier's Principle, which states that if a dynamic equilibrium is disturbed by changing the conditions, the position of equilibrium moves to counteract the change.
Consider the effect of increasing atmospheric CO2: As more CO2 dissolves in the ocean, it shifts the first reaction (CO2 + H2O ⇌ CH2O3) to the right, producing more carbonic acid.
Analyze the impact on the second reaction: With more carbonic acid being formed, the reaction (CH2O3 ⇌ CHO3− + H+) is also driven to the right, resulting in increased production of bicarbonate ions and protons.
Evaluate the effect on ocean pH: The increase in protons (H+) in the ocean lowers the pH, making the ocean more acidic.

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주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Le Chatelier's Principle

Le Chatelier's Principle states that if a dynamic equilibrium is disturbed by changing the conditions, the position of equilibrium shifts to counteract the change. In the context of the reaction between carbon dioxide and water, an increase in CO2 concentration will shift the equilibrium to the right, favoring the formation of carbonic acid and its dissociation products.
추천 영상:
가이드 코스
07:10
The Hardy-Weinberg Principle Example 1

Acid-Base Chemistry

Acid-base chemistry involves the study of proton donors (acids) and proton acceptors (bases). In the oceanic reaction, carbonic acid (H2CO3) acts as a weak acid, dissociating into bicarbonate (HCO3-) and protons (H+). The increase in H+ concentration from this dissociation leads to a decrease in pH, making the ocean more acidic.
추천 영상:
01:29
Acids and Bases

Ocean Acidification

Ocean acidification refers to the process by which the ocean becomes more acidic due to increased levels of CO2 in the atmosphere. As CO2 dissolves in seawater, it forms carbonic acid, which dissociates to release protons, lowering the pH. This phenomenon can have detrimental effects on marine life, particularly organisms that rely on calcium carbonate for their shells and skeletons.
추천 영상:
03:57
Seasonal Turnover & Ocean Upwelling