IB ESS SL Topic 5 — Land Paper 1 & 2 5.2 Agriculture & Food ~14 min read

How Sustainable Is Our Food System

The world already grows enough food for everyone. That is not a hopeful guess, it is roughly what the numbers say. The problem is that a large share of it is eaten by animals rather than people, another large share is thrown away, and what is left is not shared out evenly. Sustainability in food is mostly about fixing those three losses.

📘 What you need to know

Eating lower down the food chain

Humans are omnivores, so we have a choice about which trophic level we take our food from. That choice has a large effect on how much land, water and energy our diet needs.

Crops against livestock

MeasureCropsLivestock
Yield per unit of land areaSignificantly higherMuch lower for the same area
Land and resources neededLess land per unit of foodRequires more land and more resources
Financial costLower costs associated with productionUsually more expensive
Why a plant-based diet feeds more people from the same field Energy is lost at every trophic level, so every extra step is expensive. MEAT-BASED DIET PLANT-BASED DIET FOOD CROPS LIVESTOCK HUMANS: FEWER FED energy lost here energy lost again here FOOD CROPS HUMANS: MANY MORE FED energy lost once only no intermediate trophic level two steps, two big energy losses one step, far more food reaches us Same crop, same field. The difference is how many mouths it passes through. This is the single most useful diagram in the whole of 5.2.
Livestock are not wasteful animals. They are simply an extra trophic level, and every trophic level loses most of the energy that enters it to respiration and to inedible body parts.

Three reasons plant-based diets are more efficient

ReasonThe mechanism
Trophic levelsEnergy is lost at each trophic level as it moves up the food chain. Eating plants directly bypasses the energy loss involved in raising animals, so we use the energy captured by primary producers more efficiently
Feed conversion efficiencyAnimals raised for meat need significant amounts of feed, but a large portion of that energy goes into the animals’ own bodily functions and metabolic processes rather than into edible biomass. This inefficiency means higher energy losses when we get nutrition from meat
Land use efficiencyProducing meat needs vast amounts of land for grazing or for growing animal feed crops. That land could grow plant-based food for people directly, so eating plants optimises land use and reduces the energy needed for livestock farming

Put together, focusing on lower-trophic-level food production makes it possible to maximise food production per unit area while reducing the pressure on land resources.

Be careful not to overstate this. Some land genuinely cannot grow crops — the steep, thin-soiled ground from the first page of this topic — and grazing animals there converts grass that people cannot eat into food that they can. The strong version of the argument is about land that could grow crops being used for feed instead. Make that distinction and your evaluation will stand out.

Enough food, badly shared

Where the food goes missing The band narrows at every stage between the field and the plate. everything harvested about two thirds is eaten post-harvest storage transport shops, homes At least 1 in every 3 items grown is never eaten. Cutting waste adds food without needing a single extra hectare.
This is why waste reduction is such a powerful strategy. Every tonne saved is a tonne that did not need land, water, fertiliser or fuel to replace it.
The SDG detail worth quoting. The United Nations’ Sustainable Development Goal 12 aims to ensure sustainable consumption and production patterns. Within it, target 12.3 focuses on reducing global food waste by 50% per capita at retail and consumer levels by 2030, and on minimising food losses throughout production and supply chains, including post-harvest losses.

Strategies for a sustainable food supply

1. Reducing demand and food waste

2. Reducing greenhouse gas emissions

3. Increasing productivity without expanding farmland

Look at what the third group has in common. Every one of those strategies gets more food out of land we are already using, rather than clearing more. Since land is finite and about 70% of ice-free land is already in use, that is the only direction with much room left in it.

Worked examples

WE 1

Explain the efficiency of plant-based diets

Explain why a plant-based diet is more energy efficient than a meat-based diet. (4 marks)

Point 1: trophic levels Energy is lost at each trophic level as it moves up a food chain, mainly through respiration. Point 2: bypassing a level Eating crops directly means there is no intermediate trophic level, so we avoid one set of losses. Point 3: feed conversion Much of the energy in animal feed goes into the animals’ own bodily functions and metabolic processes rather than into edible biomass. Point 4: land Meat production needs vast areas for grazing or feed crops, land that could feed more people directly if used for crops. Fewer trophic levels means more of the original energy reaches humans name all three mechanisms — trophic loss, feed conversion, land use — they are separate marks
WE 2

Explain the food distribution paradox

Global agriculture produces enough food for the world’s population, yet many people are undernourished. Explain this. (3 marks)

Point 1: the supply is sufficient Enough food is produced globally for approximately eight billion people, close to the current population. Point 2: distribution Food is not distributed equitably: some regions have surpluses while others face severe shortages, because of poverty, infrastructure and politics rather than total supply. Point 3: waste At least one-third of food produced is wasted post-harvest, in storage, and in transport and distribution, so much of it never reaches anyone. The shortage is one of access and waste, not of production say explicitly that this is a distribution problem — it is usually the central mark
WE 3

Evaluate a strategy for sustainable food supply

Evaluate the use of genetic modification as a strategy for increasing food production sustainably. (4 marks)

Strength 1 GM crops can produce higher yields from the same inputs, so more food is produced without expanding agricultural land. Strength 2 Greater resistance to pests and diseases can reduce pesticide use and reduce losses before harvest. Limitation 1 It does not address the underlying problems of unequal distribution and food waste, which cause much of current hunger. Limitation 2 Like the green revolution, benefits may go to farmers who can afford the technology, increasing inequality, and widespread use of a single variety reduces crop diversity. Useful for raising output on existing land, but not a solution to access or waste the green revolution comparison is a strong evaluative move — it shows you can link across the topic

💡 Exam tips

⚠ Common mistakes

Up next: Food Security and Access — what food security actually means, the four pillars it stands on, and why two countries with the same food supply can have very different outcomes.

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