C25: Water and Waste
Potable water, water treatment and eutrophication
Potable water, water treatment and eutrophication
| Term | Definition |
|---|---|
| Pure water | Contains only HโO molecules (no dissolved substances); boils at exactly 100ยฐC |
| Potable water | Safe to drink; contains some dissolved substances but at safe levels; no harmful microbes |
| Distilled water | Pure water produced by distillation โ no dissolved substances at all |
| Method | How It Works | Advantages | Disadvantages |
|---|---|---|---|
| Distillation | Boil sea water, condense the pure water vapour | Produces very pure water | Very energy-intensive and expensive |
| Reverse osmosis | Sea water forced through a semi-permeable membrane under high pressure; salt left behind | Does not require heating | Requires high pressure (energy); membrane can become blocked |
Q1: Explain the difference between potable water and pure water.
Q2: Describe the three stages of water treatment used to produce potable water from fresh water sources.
Q3: Higher Compare distillation and reverse osmosis as methods of desalination. Explain why desalination is more expensive than treating fresh water.
Q4: Describe the stages of waste water treatment. How can energy be produced during the process?
Q5: Explain how the use of fertilisers can lead to eutrophication and the death of fish in a lake.
Aim: Purify a water sample by distillation and test the purity of the water produced.
Method: 1. Collect a sample of impure water (e.g. salty water). 2. Set up a distillation apparatus: heat the water in a flask, collect the vapour in a condenser, and collect the condensed water (distillate) in a clean beaker. 3. Measure the boiling point of the distilled water using a thermometer โ pure water boils at exactly 100ยฐC. 4. Test the original sample and the distilled water by evaporating to dryness โ pure water leaves no residue; impure water leaves dissolved solids behind. 5. Compare the results.
Variables: IV: method of purification (distillation), DV: boiling point of water / residue after evaporation, Control: volume of water, heating method
A water sample has a mass of 200 g. After distillation, the residue left behind has a mass of 2.4 g. Calculate the percentage of dissolved substances in the original water.
Percentage dissolved substances = (2.4 รท 200) ร 100 = 1.2%
A desalination plant processes 1,000,000 litres of sea water per day. Sea water contains 35 g of salt per litre. Calculate the total mass of salt removed per day.
Total salt = 35 ร 1,000,000 = 35,000,000 g = 35,000 kg = 35 tonnes per day
1. Wrong: Potable water is pure water Correct: Potable water is SAFE to drink but is NOT pure โ it contains dissolved substances at safe levels. Pure water has NOTHING dissolved in it
2. Wrong: Chlorination kills all substances in water Correct: Chlorination only kills MICROBES (bacteria) โ it does NOT remove dissolved substances or solid particles. Filtration and sedimentation are needed for those
3. Wrong: In eutrophication, fertilisers directly kill fish Correct: Fertilisers cause algal blooms โ algae die โ bacteria decompose them โ bacteria use up oxygen โ fish die from LACK OF OXYGEN. The fertilisers do not directly kill the fish
4. Wrong: Distillation and evaporation are the same process Correct: Evaporation boils off the solvent (losing it). Distillation boils off the solvent AND CONDENSES it back to collect the pure liquid โ nothing is lost
6 marks: Describe how fresh water is treated to make it potable in the UK. Explain why treating sea water to make it potable is more expensive, and describe one method of desalination.
In the UK, fresh water from rivers, lakes and aquifers is treated in three stages. First, filtration removes solid particles โ the water is passed through beds of sand and gravel. Second, sedimentation involves adding aluminium sulfate to make fine particles clump together (flocculation) and settle to the bottom as sediment. Third, chlorination involves adding chlorine to kill harmful microbes (bacteria), making the water safe to drink. Treating sea water (desalination) is more expensive because both methods require large amounts of energy. In distillation, the sea water must be heated to boiling, which requires significant fuel. In reverse osmosis, very high pressure is needed to force water through a semi-permeable membrane, leaving the salt behind. This pressure is generated by pumps that consume large amounts of electricity. Fresh water treatment is cheaper because filtration, sedimentation and chlorination all use relatively little energy compared to boiling water or generating high pressure.
Mark scheme: 1 mark for filtration (removes solids); 1 mark for sedimentation (aluminium sulfate, particles clump); 1 mark for chlorination (kills microbes); 1 mark for explaining why desalination is expensive (energy); 1 mark for describing distillation OR reverse osmosis; 1 mark for comparison with fresh water treatment cost
A country has limited fresh water but abundant sea water. Two desalination options are considered:
The country also has abundant sunshine and could build solar panels to provide energy at 5p per kWh.
(a) Calculate the daily energy cost for each plant if powered by solar energy.
(b) The distillation plant produces water of higher purity than the reverse osmosis plant. Suggest why reverse osmosis might still be the better choice.
(c) A student suggests that the country should use waste water treatment instead of desalination. Evaluate this suggestion.
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