Treatment of Strongly Acidic Indium‑Bearing Wastewater via Indium‑Removal Resin: Adsorption‑Regeneration Validation

August 11, 2026

Treatment of Strongly Acidic Indium‑Bearing Wastewater via Indium‑Removal Resin: Adsorption‑Regeneration Validation

1. Raw Water Conditions

Indium concentration: 296.264 mg/L
pH: Strongly acidic
Appearance: Colorless, transparent solution with slight turbidity

2. Dynamic Adsorption Experimental Data (Indium Content in Multi-Cycle Effluent)

Cycle Sampling Point (BV) Effluent Indium Content (mg/L) Remarks
Cycle 1 10 BV 0.172 Initial adsorption stage

20 BV 0.143 Stable operation stage

20–40 BV 0.318 Value still far below 1 mg/L
Cycle 2 1–38 BV 0.074 Stable compliance stage

38–52 BV 0.325 Slight concentration rise

53 BV 0.188 Concentration falls back
Cycle 3 1–50 BV 0.065 Stable compliance stage

51–54 BV 0.055 Minimum value in the cycle

55–59 BV 0.074 Maintains low concentration level
Cycle 4 1–52 BV 0.122 Stable performance in early stage

53–62 BV 0.986 Approaching 1 mg/L breakthrough threshold

63–69 BV 1.484 Breakthrough & concentration rising stage

Key Data Highlights

  • Across four cycles, indium concentration in most effluent samples stays steadily below 1 mg/L, with a minimum recorded value of 0.055 mg/L;
  • The indium concentration of feed liquid is 296.264 mg/L, and the overall removal rate consistently exceeds 99.5%;
  • Breakthrough occurs at 63–69 BV in the 4th cycle (1.484 mg/L), which can be referenced as the trigger point for resin regeneration.


3. Regeneration & Elution Data

Regenerant: 15%–20% hydrochloric acid
Indium concentration in eluate: 8674 mg/L
Compared with the raw feed liquid (296 mg/L), the enrichment concentration ratio reaches approximately 29 times, which facilitates subsequent indium recovery processes.


4. Stability Verification

After four complete adsorption-regeneration cycles, the effluent indium concentration at the initial stage of each cycle (e.g., 0.065 mg/L for 1–50 BV in Cycle 3) shows no adsorption performance decline versus the initial stage of Cycle 1 (0.172 mg/L at 10 BV).
The resin exhibits excellent reusability stability and great potential for industrial cyclic application.


5. Conclusion

This specialty resin delivers highly efficient adsorption performance for strongly acidic wastewater with high indium concentration (around 300 mg/L). It can stably lower effluent indium content below 1 mg/L, delivers outstanding enrichment performance after regeneration (eluate indium concentration up to 8674 mg/L), and retains stable adsorption capacity over multiple cycles. It is well suited for advanced treatment and resource recovery of indium-containing wastewater.