Photosynthesis | 光合作用

📚 Photosynthesis | 光合作用

Photosynthesis is one of the most important biological processes on Earth. It not only provides food for plants but also produces the oxygen we breathe. In this article, we will explore the key concepts of photosynthesis required for Edexcel IGCSE Science, including equations, limiting factors, leaf adaptations and practical applications.

光合作用是地球上最重要的生物过程之一。它不仅为植物提供食物,还能产生我们呼吸所需的氧气。在本文中,我们将围绕 Edexcel IGCSE 科学大纲,深入讲解光合作用的核心概念,包括方程式、限制因素、叶片适应结构以及实际应用。

1. Definition and Importance | 定义与重要性

Photosynthesis is the process by which green plants, algae and some bacteria use light energy to convert carbon dioxide and water into glucose and oxygen. This process is endothermic, meaning it absorbs energy from the surroundings.

光合作用是绿色植物、藻类和某些细菌利用光能,将二氧化碳和水转化为葡萄糖和氧气的过程。该过程是吸热的,即从周围环境吸收能量。

The glucose produced stores chemical energy that can be released by respiration. Oxygen is released as a waste product and is essential for most living organisms.

生成的葡萄糖储存着化学能,可通过呼吸作用释放。氧气作为副产品释放出来,是大多数生物维持生命所必需的。


2. The Word Equation | 文字方程式

The word equation summarises the reactants and products of photosynthesis. It also shows the conditions needed for the reaction.

文字方程式概括了光合作用的反应物和生成物,同时标明了反应所需的条件。

carbon dioxide + water → glucose + oxygen

二氧化碳 + 水 → 葡萄糖 + 氧气

Light energy and chlorophyll are required for this reaction to take place. They are not substances but conditions, so they are often written above the arrow.

反应的发生需要光能和叶绿素。它们不是物质而是条件,因此通常写在箭头上方或旁边。


3. The Balanced Chemical Equation | 化学方程式

The balanced chemical equation shows the exact numbers of atoms and molecules involved. This is important for calculating masses and understanding the stoichiometry of the reaction.

配平的化学方程式显示了参与反应的原子的准确数量和分子比例,这对于计算质量以及理解反应的化学计量关系非常重要。

6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂

Carbon dioxide (CO₂) has a coefficient of 6, and water (H₂O) also has a coefficient of 6. Glucose (C₆H₁₂O₆) is a simple sugar, and six oxygen molecules (O₂) are produced.

二氧化碳(CO₂)的系数为 6,水(H₂O)的系数也为 6。葡萄糖(C₆H₁₂O₆)是一种单糖,同时生成 6 个氧气分子(O₂)。


4. Light Energy and Chlorophyll | 光能与叶绿素

Chlorophyll is a green pigment found in chloroplasts. It absorbs light energy, mainly in the red and blue regions of the visible spectrum, and reflects green light, which is why leaves appear green.

叶绿素是存在于叶绿体中的绿色色素。它主要吸收可见光谱中的红光和蓝光,反射绿光,因此叶片通常呈现绿色。

Light energy is used to split water molecules into hydrogen and oxygen. This is called photolysis of water. The oxygen is released into the atmosphere, while the hydrogen is combined with carbon dioxide to produce glucose.

光能用于将水分子分解为氢和氧,这一过程称为水的光解。氧气被释放到大气中,而氢与二氧化碳结合生成葡萄糖。


5. How to Measure the Rate of Photosynthesis | 如何测定光合作用速率

The rate of photosynthesis can be measured in several ways. A common method is to count the number of bubbles of oxygen produced by an aquatic plant, such as Canadian pondweed (Elodea), under different conditions.

测定光合作用速率有多种方法。常用方法是数水生植物(如金鱼藻 Elodea)在不同条件下产生的氧气气泡数量。

  • Counting bubbles over a fixed time gives an approximate rate.

    在固定时间内计数气泡数可得到近似速率。

  • Collecting oxygen in a gas syringe and measuring its volume is more accurate.

    使用气体注射器收集氧气并测量其体积更为准确。

  • Using a sensor to measure the uptake of carbon dioxide is also possible.

    也可以使用传感器测量二氧化碳的吸收量。


6. Limiting Factors | 限制因素

A limiting factor is something that stops the rate of photosynthesis from increasing, even if other conditions are suitable. The three main limiting factors are:

限制因素是即使其他条件适宜,也会阻止光合作用速率继续增加的因素。三个主要限制因素是:

  • Light intensity – as light intensity increases, the rate increases until another factor becomes limiting.

    光强度——随着光强度增加,光合作用速率加快,直到另一个因素成为限制因素。

  • Carbon dioxide concentration – increasing CO₂ concentration usually increases the rate up to a plateau.

    二氧化碳浓度——提高二氧化碳浓度通常会使速率增加,直到达到平台。

  • Temperature – photosynthesis is controlled by enzymes, so the rate increases up to an optimum temperature, then decreases as enzymes denature.

    温度——光合作用由酶控制,因此温度达到最适值前速率上升,之后酶变性导致速率下降。


7. Interpreting Graphs of Limiting Factors | 限制因素曲线图解读

Graphs of photosynthesis rate against light intensity or CO₂ concentration show a characteristic plateau. The rising part shows that the factor is limiting the process; the plateau shows that another factor is now limiting.

光合作用速率对光强度或二氧化碳浓度的曲线显示出典型的平台。上升段表明该因素正在限制过程;平台段表明另一个因素成为新的限制因素。

Temperature graphs show an optimum peak. Beyond the optimum temperature, enzymes denature and the rate falls sharply. For most crop plants, the optimum is around 25–35 °C, but different species vary.

温度曲线有一个最适峰值。超过最适温度后,酶变性,速率急剧下降。大多数农作物的最适温度约为 25–35 °C,但不同物种有所不同。


8. Uses of Glucose in Plants | 葡萄糖在植物中的用途

The glucose produced by photosynthesis is used by plants in several ways. This is a common exam topic in Edexcel IGCSE Science.

光合作用产生的葡萄糖在植物中有多种用途,这是 Edexcel IGCSE 科学考试中的常见考点。

  • Used in respiration to release energy for cellular processes.

    用于呼吸作用,释放能量供给细胞活动。

  • Converted into starch, an insoluble storage molecule, for storage in roots, stems and leaves.

    转化为淀粉——一种不溶性的储存物质,储存于根、茎和叶中。

  • Used to build cellulose for cell walls.

    用于合成构成细胞壁的纤维素。

  • Combined with nitrate ions to produce amino acids and then proteins.

    与硝酸根离子结合生成氨基酸,进而合成蛋白质。

  • Converted into fats and oils for energy storage in seeds.

    转化为脂肪和油,储存在种子中作为能量储备。


9. Leaf Adaptations for Photosynthesis | 叶片的光合作用适应结构

Leaves are highly adapted organs that allow photosynthesis to happen efficiently. The following features are important:

叶片是高度特化的器官,能够使光合作用高效进行。以下结构特征非常重要:

Feature | 结构 Function | 功能
Large surface area Absorbs more light and carbon dioxide
Thin blade Short diffusion distance for gases
Many chloroplasts Contain chlorophyll to capture light energy
Stomata and air spaces Allow CO₂ to diffuse into leaf and O₂ to diffuse out
Xylem and phloem Transport water to the leaf and glucose away from the leaf

The size and number of stomata can vary with environmental conditions, helping the plant balance gas exchange with water loss.

气孔的大小和数量会随环境条件变化,这有助于植物在气体交换和水分流失之间取得平衡。


10. Testing for Starch | 检测淀粉

Starch is the main insoluble storage product of photosynthesis. We can prove that photosynthesis has occurred by testing for the presence of starch in a leaf using iodine solution.

淀粉是光合作用的主要不溶性储存产物。我们可以用碘液检测叶片中是否含有淀粉,从而证明光合作用是否发生。

The procedure involves: (1) boiling the leaf in water to kill cells and stop enzyme activity; (2) boiling in ethanol to remove chlorophyll; (3) rinsing in warm water to soften the leaf; (4) adding a few drops of iodine solution. A blue-black colour indicates starch is present.

实验步骤包括:(1) 将叶片在沸水中煮,以杀死细胞并终止酶活性;(2) 在乙醇中煮沸以去除叶绿素;(3) 用温水冲洗使叶片软化;(4) 滴加几滴碘液。出现蓝黑色说明淀粉存在。


11. Agricultural Applications | 农业应用

Understanding limiting factors helps farmers increase crop yields, especially in glasshouses and greenhouses.

理解限制因素有助于农民提高作物产量,尤其是在玻璃温室中。

  • Adding artificial lighting extends the time available for photosynthesis, especially in winter.

    增加人工光照可延长光合作用的时间,尤其在冬季。

  • Burning gas can release CO₂, raising the carbon dioxide concentration inside the greenhouse.

    燃烧燃气可释放二氧化碳,提高温室内的二氧化碳浓度。

  • Using heating systems keeps the temperature near the optimum for photosynthesis.

    使用供暖系统将温度维持在光合作用的最适范围。

These measures are expensive, so farmers must balance the cost of extra equipment with the extra yield obtained.

这些措施成本较高,因此农民必须在设备额外投入与增产收益之间进行权衡。


12. Summary | 重点总结

Photosynthesis is essential for life on Earth. It converts light energy into chemical energy stored in glucose, releasing oxygen as a by-product.

光合作用对地球生命至关重要。它将光能转化为储存在葡萄糖中的化学能,并释放出氧气作为副产品。

The balanced equation is 6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂. The rate is controlled by light intensity, carbon dioxide concentration and temperature, which act as limiting factors. Leaves are well adapted to maximise photosynthesis, and its products are used for respiration, storage, growth and transport.

配平方程式为 6CO₂ + 6H₂O → C₆H₁₂O₆ + 6O₂。反应速率受光强度、二氧化碳浓度和温度这些限制因素制约。叶片的结构高度适应于最大化光合作用效率,产物则用于呼吸、储存、生长和运输。


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