Acid Feed to Reduce Alkalinity
Enter your known values, leave one input blank, and solves for the missing one. Try different units for next level excitement!
Learning zone
Acid feed is how a cooling tower runs at high cycles without cementing itself shut. Alkalinity is what drives the LSI upward, so knocking it down from, say, 200 to 150 mg/L as CaCO₃ buys back most of a scaling index unit. The arithmetic is equivalent-for-equivalent: every equivalent of alkalinity needs one equivalent of acid. Because CaCO₃ has an equivalent weight of 50.04 and sulphuric acid 49.04, pure H₂SO₄ neutralizes alkalinity at almost exactly 0.98 pounds per pound — then divide by the commercial strength. Removing 50 mg/L from 1 MGD with 93% sulphuric acid takes 50 × 1 × 8.34 × 0.98 / 0.93 ≈ 440 lb/day, and the same job with 100% pure acid would take 409.
Two hard-won cautions. Acid feed and pH control are not the same knob: you are removing buffer capacity, so as alkalinity falls the water's pH becomes progressively twitchier and a pump that was fine yesterday can overshoot into the low 6s and start dissolving copper. Never run a tower below about 50 mg/L residual alkalinity for that reason. And plumb it properly — feed into a turbulent, well-mixed return line, never into the tower basin or a dead leg, use a corrosion-resistant quill that discharges into the middle of the pipe, and interlock the pump to the recirculation flow switch. A concentrated acid slug sitting in a stagnant carbon-steel header will eat a hole through schedule 40 pipe in a single afternoon.
- = Acid feed rate
- = Alkalinity reduction as CaCO₃
- = Water flow rate
- = Equivalent weight of the acid
- = Acid strength
- Acid feed rate — Chemical Feed Rate from Dose, Chemical Mass Consumed Over a Period
- Alkalinity reduction as CaCO₃ — Saturation pH (pHs) for Langelier's Index, Puckorius (Practical) Scaling Index
- Water flow rate — Chemical Feed Rate from Dose, Chemical Feed Rate (lb/day = mg/L × MGD × 8.34)
- Equivalent weight of the acid — Equivalent Weight from Molar Mass and Valence, Ion Concentration as CaCO₃ Equivalent
- Acid strength — Product Dose from Active Strength, Hypochlorite Product Mass from Available Chlorine