Quick Simpler Start
You learn how water is tested, treated, cleaned, softened, and monitored so you can explain real-world chemistry clearly.
When you revise this chapter, ask yourself: "Can I explain this to a friend in one easy paragraph?" If yes, you are in a good place.
Interactive Simulator
This small tool gives you a quick visual check before you move deeper into the chapter notes.
Water Test Explorer
Pick a water-analysis test and the tool explains what it measures.
1. Learning Objectives
- Explain hard water and identify calcium/magnesium ions as the main cause.
- Distinguish temporary and permanent hardness.
- Describe methods of water softening including ion exchange, deionisation and EDTA hardness testing.
- Describe municipal water treatment and sewage treatment stages.
- Explain DO, BOD, eutrophication and heavy metal pollution.
- Calculate pH for strong acids and strong bases.
- HL Use Ka and Kb expressions for weak acids and weak bases.
- HL Explain indicator theory, colorimetry, AAS and instrumental water analysis.
2. Hardness in Water
Hard water contains dissolved calcium ions, Ca2+, and magnesium ions, Mg2+. These ions react with soap to form scum and reduce lather.
| Type of hardness | Cause | Removal |
|---|---|---|
| Temporary hardness | Calcium/magnesium hydrogencarbonates | Boiling removes it. |
| Permanent hardness | Calcium/magnesium sulfates or chlorides | Ion exchange or deionisation. |
3. Removing Hardness and Water Softening
Ion Exchange
Ion exchange replaces calcium and magnesium ions with sodium ions.
Deionisation
Deionisation removes both positive and negative ions using ion-exchange resins, producing much purer water than ordinary softening.
EDTA Hardness Estimation HL Practical
Total hardness can be estimated using EDTA. EDTA forms a stable complex with calcium and magnesium ions.
4. Municipal Water Treatment
Drinking water treatment makes water safe, clear and suitable for use.
| Stage | Purpose |
|---|---|
| Flocculation | Small particles join to form larger flocs. |
| Sedimentation | Larger particles settle. |
| Filtration | Sand/gravel remove suspended solids. |
| Chlorination | Kills harmful microorganisms. |
| Fluoridation | Used for dental health in water supplies where applied. |
| pH adjustment | Keeps water in a suitable pH range and protects pipes. |
5. Sewage Treatment
Sewage treatment removes solids, organic matter and harmful substances before water is released back into the environment.
| Stage | Main process | Purpose |
|---|---|---|
| Primary treatment | Screening and settlement | Removes large solids and sludge. |
| Secondary treatment | Microorganisms break down organic matter | Reduces BOD. |
| Tertiary treatment | Further chemical/physical treatment | Removes nutrients, pathogens or specific pollutants. |
6. Water Quality: DO, BOD and Eutrophication
Dissolved oxygen (DO) is the oxygen dissolved in water. Aquatic organisms need it to survive.
Biochemical oxygen demand (BOD) is the amount of oxygen required by microorganisms to break down organic matter in water.
Eutrophication
Eutrophication happens when excess nitrates and phosphates enter water, causing algal blooms. When algae die, microorganisms decompose them and use up dissolved oxygen.
7. Heavy Metal Pollution
Heavy metals such as lead and cadmium are dangerous because they are toxic and can build up in food chains.
| Pollutant | Problem |
|---|---|
| Lead | Toxic; can affect nervous system and contaminate drinking water. |
| Cadmium | Toxic; may come from industrial sources and accumulates in ecosystems. |
8. pH Basics
pH measures acidity or alkalinity.
| pH value | Meaning |
|---|---|
| Below 7 | Acidic |
| 7 | Neutral |
| Above 7 | Alkaline |
Strong Acids and Strong Bases
Strong acids and strong bases dissociate almost completely in water, so their pH can be found from ion concentration.
9. Weak Acids and Weak Bases HL
Weak acids and weak bases ionise only partially in water.
Weak acids
Weak bases
10. Theory of Indicators HL
An indicator is usually a weak acid or weak base whose acid and conjugate-base forms have different colours.
Changing pH changes the equilibrium position, so the colour changes.
| Condition | Effect on indicator equilibrium |
|---|---|
| Acidic solution | Favours HIn form |
| Alkaline solution | Favours In− form |
11. Instrumental Analysis and Water Testing HL
pH Meter
A pH meter gives a more accurate pH value than indicator paper.
Colorimetry
Colorimetry estimates the concentration of a coloured substance by measuring how much light is absorbed or transmitted.
AAS (Atomic Absorption Spectroscopy)
AAS is used to detect and estimate metals such as lead or cadmium in water.
| Method | Main use |
|---|---|
| pH meter | Accurate pH measurement |
| Colorimetry | Estimating concentration of coloured substances, e.g. free chlorine |
| AAS | Analysis of heavy metals such as lead and cadmium |
12. Water Analysis Applications
Free chlorine estimation Mandatory Experiment 9.1
Colorimetry or a comparator can be used to estimate free chlorine in swimming-pool water or bleach.
Total suspended and dissolved solids Mandatory Experiment 9.2
| Type | Meaning | How measured |
|---|---|---|
| Suspended solids | Particles floating in water | Filtration and weighing residue |
| Dissolved solids | Substances dissolved in water | Evaporation of filtrate and weighing residue |
Determination of pH Mandatory Experiment 9.2
pH may be measured with indicator paper or, more accurately, by pH meter.
Estimation of total hardness using EDTA Mandatory Experiment 9.3
This gives a practical estimate of total hardness in a water sample.
Estimation of dissolved oxygen by redox titration Mandatory Experiment 9.4
Dissolved oxygen can be estimated by redox titration, linking Chapter 9 with volumetric analysis and redox chemistry.
13. Applied Analysis Examples
| Analysis | Why important |
|---|---|
| Lead in water | Checks for toxic contamination of drinking water |
| Cadmium in water | Detects industrial pollution risk |
| River and lake water testing | Assesses pollution, eutrophication and biological safety |
| Fertilisers | Can be analysed for nutrient or metal content |
14. Examiner Secrets, Mistakes and Traps
15. Last-Minute Revision Sheet
- Hard water is caused mainly by Ca2+ and Mg2+.
- Temporary hardness can be removed by boiling.
- Ion exchange softens water; deionisation removes nearly all ions.
- Municipal water treatment includes flocculation, sedimentation, filtration, chlorination and often fluoridation.
- High BOD means microorganisms are using a lot of oxygen.
- Eutrophication is driven by nitrates and phosphates.
- Strong acid/base pH comes from direct ion concentration.
- Weak acids and bases use Ka and Kb.
- Indicators work by equilibrium colour change.
- Colorimetry, pH meter and AAS are key Chapter 9 instruments.
- Know the four mandatory practicals 9.1–9.4.
16. Self-Assessment Checklist
- I can distinguish temporary and permanent hardness.
- I can explain ion exchange and deionisation.
- I can describe municipal and sewage treatment.
- I can explain DO, BOD and eutrophication.
- I can calculate pH for strong acids and strong bases.
- I can write Ka and Kb expressions.
- I can explain indicator theory.
- I can identify when to use colorimetry, pH meter and AAS.
- I know the named Chapter 9 HL practicals.

