2026-09-21
When uneven bubble distribution in wastewater treatment tanks leads to wasted energy and suboptimal results, the root cause often lies not in the power systems, but in the seemingly minor aeration terminals. As the heart of wastewater treatment processes, aeration's mass transfer efficiency directly determines both energy consumption and water quality compliance rates.
The Tablet series of fine-bubble aerators represents a breakthrough in addressing these challenges. Its modular design combines a high-strength ABS base, precision gas distribution plates, high-performance synthetic rubber diaphragms, locking rings, and connection components. The base and locking ring feature high-precision threaded connections, ensuring structural stability after installation and eliminating operational loosening risks.
The core EPDM (ethylene propylene diene monomer) rubber diaphragm undergoes specialized processing to achieve exceptional chemical stability. Resistant to acid-base corrosion, these diaphragms maintain superior physical properties even in oily or complex working conditions, preventing hardening or brittleness. The surface features uniformly distributed micropores that create fine, consistent bubbles upon gas release, significantly increasing gas-liquid contact area and oxygen transfer efficiency.
Available in multiple configurations to accommodate varying aeration intensities and service areas, the Tablet series offers solutions for different treatment scales:
| Model | Bubble Diameter (mm) | Flow Rate (m³/h) | Service Area (m²) |
|---|---|---|---|
| 215 Type (DN50) | 1–2 | 6 | 0.2–0.64 |
| 260 Type (DN50) | 1–2 | 8 | 0.25–1 |
| 320 Type (DN50) | 0.8–1.5 | 10 | 0.4–1.5 |
In practical applications, selecting appropriate aerator models proves crucial for achieving energy-efficient systems. The Tablet series' stable bubble release performance and minimal air resistance provide consistent, uniform oxygen supply across various wastewater treatment systems, making it an optimal solution for efficient water treatment processes.
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