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Ecosystems and material cycles, subtopic 6 of 6Spec 9.16B–9.19BTriple only

Indicator species and decomposition

Indicator species and pollution, factors affecting the rate of decomposition in food preservation and composting, and rate of decay calculations.

4 sections, with a quick check at the end.

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Indicator species and pollutionSpec 9.16B

Some species are sensitive to pollution and some tolerate it. The presence or absence of indicator species gives evidence of the level of pollution in an area.

Indicator species
PollutionIndicator speciesWhat it shows
Polluted waterBloodworms, sludgewormsThese can live in water with very little oxygen, so many of them suggests the water is polluted (for example with sewage)
Clean waterFreshwater shrimps, stonefly nymphsThese need water with plenty of dissolved oxygen, so their presence suggests clean water
Air qualityDifferent species of lichenLichens differ in how sensitive they are to sulfur dioxide, so the species present indicate the level of air pollution. Few or no lichens suggest poor air quality.
Air qualityBlackspot fungus on rosesThe fungus is sensitive to sulfur dioxide, so it is more common where the air is cleaner

Evaluating the use of indicator species

  • Advantages: cheap and easy, needs little equipment, and shows the effects of pollution over a period of time, not just at one moment.
  • Limitations: gives only a rough idea of pollution level, because other factors such as temperature or habitat may also affect the species present; it does not identify which pollutant is present; and it is less accurate than measuring with instruments such as an oxygen meter or sulfur dioxide meter.

Decomposition and food preservationSpec 9.17B

Food goes bad because microorganisms (bacteria and fungi) feed on it, grow and respire. The rate of decomposition depends on temperature, water content and oxygen availability. Food preservation slows decomposition by changing these conditions.

Factors affecting decomposition and how preservation uses them
FactorEffect on decompositionPreservation method
TemperatureWarm conditions speed up enzyme reactions in microorganisms, so decomposition is faster. Cold slows these reactions.Fridges and freezers keep food cold. Heating (for example in canning) kills microorganisms.
Water contentMicroorganisms need water to grow and reproduce. Less water means slower decomposition.Drying, or adding salt or sugar, which draws water out of microorganisms by osmosis
OxygenMost decomposers need oxygen for aerobic respiration. Less oxygen means slower decomposition.Vacuum packing removes oxygen, and sealed cans keep oxygen out

Decomposition and compostingSpec 9.18B

Composting uses decomposers to break down plant material and waste into compost, which returns nutrients to the soil. Here the aim is to make decomposition fast, so the conditions are the opposite of food preservation.

  • Temperature: warm, because the enzymes of decomposers work faster as temperature rises, up to an optimum. Very high temperatures denature enzymes.
  • Water content: moist, because decomposers need water. Too dry slows decomposition, and waterlogged material has little air.
  • Oxygen availability: well aerated, for example by turning the heap, so that decomposers can respire aerobically. With little oxygen decomposition is much slower.

Many gardeners turn the compost heap regularly and keep it moist but not soaked.

Rate of decay calculationsSpec 9.19B

You can measure decay by recording the mass of the biological material at intervals. The rate of decay is the change in mass over time.

rate of decay = change in mass ÷ time
percentage loss in mass = (change in mass ÷ original mass) × 100

Rate of decay

A sample of leaves had a mass of 12.0 g. After 6 days the mass was 7.2 g. Calculate the mean rate of decay in g per day and the percentage loss in mass.

  1. Change in mass = 12.0 − 7.2 = 4.8 g
  2. Rate = 4.8 ÷ 6 = 0.8 g per day
  3. Percentage loss = 4.8 ÷ 12.0 × 100 = 40 %

Answer: 0.8 g per day; 40 % loss

Quick check

  1. Name two indicator species for clean water.

    Show answer

    Freshwater shrimps and stonefly nymphs.

  2. What does blackspot fungus on roses indicate?

    Show answer

    Cleaner air, because it is sensitive to sulfur dioxide.

  3. How does freezing slow decay?

    Show answer

    Low temperature slows the enzymes of the decomposers.

  4. Give the conditions for fast composting.

    Show answer

    Warm, moist and well supplied with oxygen.

  5. State the equation for the rate of decay.

    Show answer

    Change in mass ÷ time.