IB ESS HL 3.1 Biodiversity & Evolution HL only ~11 min read

The Anthropocene

Geologists date epochs from marks left in rock. The proposal here is that human activity has left marks clear enough to count — microplastics in sediment, fly ash from power stations, a spike of carbon-14 from nuclear tests. The debate is not whether the marks exist, but whether they justify a new name.

📘 What you need to know

What is being proposed

The Anthropocene is a proposed geological epoch. Scientists have suggested that humans have become a dominant force shaping the Earth’s environment and climate. It is not yet an officially recognised epoch, but the proposal highlights the extent to which human activities — industrialisation, deforestation, urbanisation — are driving rapid environmental change and species extinction.

Human impacts are significant enough that they are leaving permanent records on Earth’s geology, atmosphere and ecosystems.

The debate

Scientists disagree about whether the Anthropocene should be considered separate from the current Holocene epoch, which began around 11 700 years ago after the last Ice Age.

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Holocene or Anthropocene?

The Holocene is the officially recognised epoch we are in, beginning after the last Ice Age. The Anthropocene is the proposed one, defined by human impact. Anthropo- means human — the same root as anthropogenic and anthroposphere from Topic 1.

When would it have started?

The starting point is also debated, with three main proposals.

Three proposed start dates Each marks a different human signal in the geological record 1610 the “Orbis spike” a dip in atmospheric CO2 after Europeans arrived in the Americas farmland reverted to forest, absorbing more CO2 1950 fly ash particles spherical particles from coal-fired power plants appear worldwide the “Great Acceleration” begins in this decade 1964 carbon-14 spike nuclear weapons testing released radioactive isotopes worldwide these settled into soils and sediments A start date needs a signal preserved globally in the rock record
All three candidates share one feature: they leave a sharp, globally synchronous marker that a future geologist could find in sediment anywhere on Earth.

1610: the carbon dioxide dip

One proposed marker is a dip in carbon dioxide levels around 1610, following the arrival of Europeans in the Americas. The drop is believed to have been caused by the decline of Indigenous populations through European diseases, warfare and slavery, which led to the reforestation of previously farmed land. Those new forests absorbed more CO2, producing a detectable atmospheric drop. This is sometimes called the “Orbis spike”.

1950: spherical fly ash particles

Another suggested marker is the appearance of spherical fly ash particles in the geological record from around 1950. These were created by burning fossil fuels in coal-fired power plants and have since spread globally, leaving a clear human-made trace in Earth’s sediments. The 1950s also saw the beginning of the “Great Acceleration”, when human impacts such as pollution and greenhouse gas emissions increased dramatically.

1964: carbon-14 markers

The 1964 spike in atmospheric carbon-14, caused by nuclear weapons testing during the Cold War, is a third candidate. Those radioactive isotopes settled into soils and sediments, creating a distinct signal in the geological record.

Evidence of human impact on a planetary scale

Human activity is having a planetary effect that will be detectable in the geological record for millions of years — future geologists could examine Earth’s layers and see clear evidence of our presence, much as we study fossil records to understand ancient life.

Four traces we are leaving in the rock Each will still be readable millions of years from now 1. CHEMICAL POLLUTION plastics, pesticides and industrial waste accumulating in soils and sediments microplastics are the clearest example 2. MIXING OF SPECIES global trade and invasive species have put native and non-native species together this mixing will show in the fossil record 3. SEDIMENTARY SYSTEMS agriculture and deforestation increase soil erosion; cities and roads alter rivers unnatural build-up in some places, erosion in others 4. NEW MINERALS materials that do not exist naturally: concrete, plastics and metal alloys these persist for millions of years Together these are the case for calling it a new epoch
Note the different kinds of evidence: chemical, biological, physical and material. That breadth is part of the argument.
  1. Chemical pollution accumulating in geological strata. Human-made chemicals such as plastics, pesticides and industrial waste are accumulating in soils and sediments worldwide. Microplastics are a clear example that will be preserved in Earth’s strata far into the future.
  2. Mixing of native and non-native species. Global trade and the introduction of invasive species mean species that do not naturally interact now share ecosystems. In future, this mixing will be evident in the fossil record.
  3. Modification of terrestrial and marine sedimentary systems. Agriculture, deforestation and urbanisation alter natural sedimentary systems, causing increased soil erosion as topsoil is worn away by wind or water, and changes to river flows and coastal ecosystems as cities and roads block rivers and coastlines, producing unnatural sediment build-up in some areas and erosion in others.
  4. Minerals created by human activity. Humans are creating new materials that do not exist naturally — concrete, plastics and metal alloys — which will persist in the geological record for millions of years.
Two things examiners watch for here. First, do not confuse the Holocene with the Anthropocene: one is the recognised epoch we are officially in, the other is proposed. Second, be able to discuss the various types of evidence and explain how each will be preserved in the geological record — the preservation is the point, because that is what defines a geological epoch rather than merely a period of environmental damage.

Worked examples

WE 1

Holocene and Anthropocene

Distinguish between the Holocene and the Anthropocene. (3 marks)

The Holocene The current officially recognised geological epoch, which began around 11 700 years ago after the last Ice Age. The Anthropocene A proposed epoch, not yet officially recognised, defined by humans becoming a dominant force shaping Earth’s environment and climate. The disagreement Some scientists argue human impacts are significant enough to define a new epoch; others believe the changes fall within the natural variability of the Holocene. One is official and climatic; the other is proposed and defined by human impact the word “proposed” is doing real work here — do not omit it
WE 2

Start dates

Outline two proposed start dates for the Anthropocene and the evidence for each. (4 marks)

Proposal 1: 1610 A dip in atmospheric carbon dioxide, known as the “Orbis spike”. The evidence behind it The decline of Indigenous populations in the Americas through European diseases, warfare and slavery led to reforestation of farmed land, and those forests absorbed more CO2, producing a detectable drop. Proposal 2: 1950 The appearance of spherical fly ash particles in the geological record. The evidence behind it These particles were produced by burning fossil fuels in coal-fired power plants and have spread globally, leaving a clear human-made trace in sediments. The 1950s also mark the start of the “Great Acceleration”. Both leave a sharp, globally detectable marker in the record the 1964 carbon-14 spike from nuclear testing is the third option
WE 3

Evidence in the record

Discuss the evidence that human activity will be detectable in the geological record. (4 marks)

Evidence 1: chemical Human-made chemicals including plastics, pesticides and industrial waste accumulate in soils and sediments. Microplastics will be preserved in strata far into the future. Evidence 2: biological Global trade and invasive species have mixed native and non-native species so that organisms which never naturally interacted now share ecosystems, which will be evident in the fossil record. Evidence 3: physical Agriculture, deforestation and urbanisation modify sedimentary systems, increasing soil erosion and altering river flows, causing unnatural sediment build-up in some areas and erosion in others. Evidence 4: material Humans create minerals that do not occur naturally — concrete, plastics and metal alloys — which will persist for millions of years. Chemical, biological, physical and material traces, all preserved emphasise preservation: that is what makes it geological rather than merely environmental

💡 Exam tips

⚠ Common mistakes

That completes 3.1 Biodiversity & Evolution. Eleven notes tracing one arc: what biodiversity is, how evolution creates it, how we measure and manage it, and then at HL how genes, isolation and deep time shaped it — ending with the possibility that our own impact has become a geological event. Next comes 3.2, on the human activities driving biodiversity loss today.

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