Water Treatment Technologies
Comprehensive guide to treating well water for drinking, irrigation, and industrial use.
Treatment Selection
Treatment technology selection depends on specific water quality issues identified through testing. Each contaminant class has preferred treatment methods:
| Contaminant | Concentration | Treatment Method | Effectiveness |
|---|---|---|---|
| Iron (Fe²⁺) | >0.3 mg/L | Aeration + greensand filter | 95-99% |
| Manganese (Mn²⁺) | >0.05 mg/L | Oxidation + filtration | 90-98% |
| Hardness (Ca/Mg) | >120 mg/L as CaCO₃ | Ion exchange softener | 95-99% |
| Nitrate (NO₃⁻) | >10 mg/L as N | Ion exchange or RO | 90-99% |
| TDS | >500 mg/L | Reverse osmosis | 95-99% |
| Bacteria/E. coli | Detectable | Chlorination or UV | 99.9-99.99% |
| Radium (Ra-226/228) | >5 pCi/L | Ion exchange or RO | 90-98% |
| Arsenic | >10 µg/L | Activated alumina or RO | 95-99% |
| Hydrogen sulfide | >0.5 mg/L | Aeration + carbon filter | 90-99% |
| Turbidity | >1 NTU | Sediment filter or flocculation | 95-99% |
Chlorination Systems
Chlorination is the most widely used disinfection method worldwide:
Chlorine Types
- Liquid sodium hypochlorite (bleach): 5-12% concentration — easy to handle, most common for residential
- Calcium hypochlorite (granular): 65-70% available chlorine — longer shelf life, requires careful handling
- Chlorine gas: 100% available chlorine — used in large municipal systems, requires gas detection and safety systems
- Electrolytic generation: Salt + electricity → chlorine on-site — eliminates chemical storage and handling
Chlorination Design
- Contact time: Minimum 30 minutes (C × T ≥ 15 for 3-log virus kill at pH <7.5)
- Free chlorine residual: 0.2-0.5 mg/L at point of use (maintains disinfection in distribution)
- pH effect: Above pH 7.5, chlorine becomes less effective — may need pH adjustment
- Breakpoint chlorination: Adding 1.5× the ammonia concentration to achieve free chlorine
- Dechlorination: Required before discharge — use activated carbon or sodium bisulfite
Iron & Manganese Removal
Aeration + Greensand Filtration
- Aeration: Introduces oxygen to convert dissolved Fe²⁺ to insoluble Fe³⁺ — spray aerator, cascade, or diffused air
- Oxidation time: 15-30 minutes in a contact tank before filtration
- Greensand filter: Manganese-coated sand catalyzes oxidation — backwash every 24-72 hours
- Regeneration: Potassium permanganate or chlorine — restores filter capacity
- Capacity: 5-10 gallons per minute per square foot of filter area
Oxidation Filtration Alternatives
| Method | Oxidant | Best For | Maintenance |
|---|---|---|---|
| Greensand | MnO₂ coating | Low-medium iron (<10 mg/L) | Medium |
| Birm | MnO₂ media | Iron with low manganese | Low |
| CATALox | MnO₂ media | High iron/manganese | Low |
| Chlorination + filter | Free chlorine | High iron, bacteria present | Medium |
| Ozone + filter | O₃ | Multiple contaminants | High |
Ion Exchange
Water passes through resin beads that exchange undesirable ions for desirable ones:
- Water softening: Na⁺ exchanges for Ca²⁺/Mg²⁺ — removes hardness, adds sodium
- Nitrate removal: Cl⁻ form resin selects NO₃⁻ over SO₄²⁻ — regenerates with NaCl
- Radium removal: Cation exchange captures Ra²⁺ — highly effective (95-98%)
- Capacity: 20,000-30,000 grains per cubic foot of resin
- Regeneration: 8-15 lbs NaCl per regeneration cycle — typically 3-5 days between regenerations
Reverse Osmosis
Pressure-driven membrane filtration removes dissolved solids, pathogens, and most contaminants:
- Operating pressure: 150-600 psi depending on TDS and membrane type
- Recovery rate: 25-75% (rest becomes concentrate/waste stream)
- Rejection rate: 95-99% of dissolved salts, 99.99% of bacteria and viruses
- Pre-treatment: Sediment filter, carbon filter, antiscalant — protects membrane
- Post-treatment: Remineralization, UV, or carbon — improves taste and safety
Recovery (%) = (Permeate flow / Feed flow) × 100
Concentration Factor:
CF = 1 / (1 - Recovery)
At 75% recovery: CF = 4× — concentrate has 4× the feed TDS
UV Disinfection
- Wavelength: 254 nm (UV-C) — damages DNA of pathogens
- Dose: 40-100 mJ/cm² — achieves 4-log (99.99%) virus inactivation
- Advantages: Chemical-free, no residual taste, effective against chlorine-resistant pathogens
- Limitations: No residual disinfection — must be combined with chlorine for distribution
- Lamp replacement: Every 12 months or 9,000 hours — UV output degrades over time
System Design Principles
- Treat sequence: Sediment → iron/manganese → hardness → disinfection → polishing
- Redundancy: Critical systems should have backup treatment for each stage
- Bypass: Allow untreated water for irrigation (salt-sensitive crops don't need softening)
- Monitoring: Continuous chlorine residual, periodic water quality testing
- Maintenance: Filter replacement, resin regeneration, lamp replacement — schedule all on calendar
Sediment filter: $50-200/year | Water softener: $200-500/year (salt + resin) | UV system: $100-300/year (lamps) | RO system: $200-500/year (filters + water waste) | Chlorination: $100-400/year (chemicals). Whole-house treatment typically costs $2,000-8,000 to install.