Course review

C4.2 Transfers of energy and matter

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Learning objective

C4.2.1—Ecosystems as open systems

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• Ecosystems are open systems exchanging energy and matter with surroundings • Energy flows through ecosystems while matter can enter, leave, and recycle

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Learning objective

C4.2.2—Sunlight as principal energy source

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• Sunlight is the principal energy source for most ecosystems • Exceptions include caves and deep-ocean vents supported by chemosynthesis

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C4.2.3—Chemical energy flow

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• Chemical energy flows from producers to consumers through feeding • Energy enters as light or chemical energy and leaves ecosystems as heat

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Learning objective

C4.2.4—Food chains and food webs

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• Food chains and food webs model feeding relationships in communities • Arrows point in the direction of energy and biomass transfer

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Learning objective

C4.2.5—Supply to decomposers

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• Decomposers obtain energy from carbon compounds in detritus • Dead organisms, faeces, fallen leaves, and shed tissues supply organic matter

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C4.2.6—Autotrophs as self-feeders

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• Autotrophs synthesize carbon compounds from simple inorganic substances • They use external energy sources to fix carbon and build biomass

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Learning objective

C4.2.7—Energy sources

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• Photoautotrophs use light captured by photosynthetic pigments • Chemoautotrophs use oxidation of inorganic substances, such as iron or sulfur compounds

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Learning objective

C4.2.8—Heterotrophs

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• Heterotrophs obtain carbon compounds from other organisms or organic matter • They use these compounds for respiration and synthesis of their own biomass

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Learning objective

C4.2.9—Energy release

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• Both autotrophs and heterotrophs release energy by cell respiration • Oxidation of carbon compounds transfers energy to ATP and heat

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Learning objective

C4.2.10—Trophic levels

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• Trophic levels classify organisms as producers, primary consumers, and higher consumers • Omnivores and decomposers may feed across more than one trophic level

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Learning objective

C4.2.11—Energy pyramids

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• Energy pyramids represent energy flow per unit area per unit time • Each bar shows energy available to one trophic level

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Learning objective

C4.2.12—Energy reductions

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• Energy availability decreases at each transfer between trophic levels • Losses occur through respiration, heat, egestion, excretion, and uneaten biomass

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Learning objective

C4.2.13—Heat loss

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• Cell respiration converts some chemical energy to heat in all trophic levels • Heat dissipates to the environment, so energy cannot be recycled

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Learning objective

C4.2.14—Restrictions on trophic levels

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• Large energy losses restrict food chains to a few trophic levels • Higher trophic levels usually support less biomass and fewer individuals

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Learning objective

C4.2.15—Primary production

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• Primary production is accumulation of carbon compounds in autotroph biomass • Gross production minus respiration gives net primary production

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Learning objective

C4.2.16—Secondary production

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• Secondary production is biomass accumulation by heterotrophs • It depends on food intake, assimilation, respiration losses, and biomass conversion

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Learning objective

C4.2.17—Carbon cycle diagrams

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• Carbon cycle diagrams show stores as boxes and fluxes as labelled arrows • Include CO₂, photosynthesis, feeding, respiration, decomposition, fossil fuels, and combustion

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Learning objective

C4.2.18—Carbon sinks and sources

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• Carbon sinks absorb more carbon than they release, such as forests, soils, and oceans • Carbon sources release more carbon than they absorb, such as fossil fuel combustion

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C4.2.19—CO₂ release during combustion

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• Combustion of biomass, peat, coal, oil, and natural gas releases CO₂ • Draining peat and forest fires increase carbon flux to the atmosphere

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Learning objective

C4.2.20—Keeling Curve analysis

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• The Keeling Curve records atmospheric CO₂ at Mauna Loa since the late 1950s • Long-term rise reflects combustion; annual oscillation reflects Northern Hemisphere photosynthesis

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C4.2.21—Dependence between respiration and photosynthesis

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• Photosynthesis supplies atmospheric O₂ used in aerobic respiration • Respiration supplies CO₂ used by photosynthesis, linking autotrophs and heterotrophs

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C4.2.22—Recycling of all chemical elements

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• All chemical elements required by organisms are recycled in ecosystems • Decomposers convert detritus and waste into inorganic nutrients for producers

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