№2|2016

WASTEWATER TREATMENT

bbk 000000

UDC 628.316.12

Yavtoushenko M. V., Larionov S. Iu., Panteleev A. A., Riabchikov B. E., Shilov M. M., Kasatochkin A. S., Zhadan A. V.

Testing IKO-R enhanced coagulation pilot plant

Summary

An experimental plant with a capacity up to 20 m3/h was developed for enhanced coagulation of surface and waste water as well as storm water. The treatment process is based on sedimentation of inclusions together with coagulated flocs under the optimal conditions of chemical addition and mixing. To enhance the sedimentation process sludge recycling from the settling tank was provided that ensured the formation of big flocs. Pilot tests of the plant were carried out to evaluate the efficiency of removing suspended solids and phosphorus from the effluent during tertiary treatment at the Podolsk wastewater treatment facilities in the Moscow Area. The capacity of the plant during testing varied from 3 to 15 m3/h. At steady operation of the settling tank no sludge washout was observed. During longer tests the capacity was 8–10 m3/h; in terms of the cross section of the settling tank the specific capa­city (flow rate) was 5–7 m3/(m2·h). Time to reach the steady state conditions was 5–10 minutes. At that the efficiency of phosphorus removal was 80%, permanganate value was reduced by 54% and suspended solids concentration was reduced by 58%.

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REFERENCES

  1. Panteleev A. A., Riabchikov B. E., La­rionov S. Iu., Zhadan A. V., Shilov M. M. [Equipment for sedimentation methods of water treatment. Part 1. Trends of improving home-made equipment]. Vodosnabzhenie i Kanalizatsiia, 2013, no. 3–4, pp. 100–113. (In Russian).
  2. Panteleev A. A., Riabchikov B. E., La­rionov S. Iu., Zhadan A. V., Shilov M. M. [Equipment for sedimentation methods of water treatment. Part 2. Most efficient international solutions]. Vodosnabzhenie i Kanalizatsiia, 2013, no. 5–6, pp. 68–76. (In Russian).
  3. Riabchikov B. E., Larionov S. Iu., Panteleev A. A., Shilov M. M. The study of enhanced water coagulation with the use of microsand]. Vodosnabzhenie i Sanitarnaia Tekhnika, 2015, no. 5, pp. 14–22. (In Russian).

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