ASSESSMENT OF THE INFLUENCE OF HYDRODYNAMIC MIXING REGIMES ON FLOC FORMATION AND TREATMENT EFFICIENCY IN THE COAGULATION–FLOCCULATION PROCESS
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Keywords

hydrodynamic mixing, velocity gradient, Camp number, floc formation, floc strength, fractal dimension, coagulation, flocculation, treatment efficiency.

How to Cite

ASSESSMENT OF THE INFLUENCE OF HYDRODYNAMIC MIXING REGIMES ON FLOC FORMATION AND TREATMENT EFFICIENCY IN THE COAGULATION–FLOCCULATION PROCESS. (2026). Global Conference on Multidisciplinary Research and Innovation, 1(6), 417-422. https://econferencia.com/index.php/1/article/view/1178

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Abstract

This thesis assesses the influence of hydrodynamic mixing regimes on floc formation and treatment efficiency in the coagulation–flocculation process. Experiments were carried out with the bentonite–sapropel composite coagulant and a polymer flocculant system, varying the rapid-mix velocity gradient G, the slow-mix gradient and the Camp number (Gt). The optimal rapid-mix gradient was G ≈ 350–500 s⁻¹, ensuring rapid reagent distribution and completion of charge neutralisation; an excessive gradient broke the flocs and lowered efficiency. In slow mixing, an optimum of G ≈ 20–40 s⁻¹ and Gt ≈ (3–4)·10⁴ produced the largest (d₅₀ ≈ 700 μm) and strongest flocs. Under the optimal regime turbidity removal reached 96.3 %. The results show that management of mixing energy is a key factor governing floc structure and treatment efficiency.

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