LSP-LA / O can enhance biological modules.
Product Description

Technical Overview:
“LSP‑LA/O lift‑type biological modules” are available in two variants: the “LSP‑LA type lift‑type anaerobic–anoxic biological module” and the “LSP‑LO type lift‑type aerobic biological module.” They are particularly well suited for projects with tight schedules, non‑stop‑production retrofits, and emergency modular wastewater treatment plants.
The LSP-LA/O bio-module can be enhanced to possess the following features:
1. Standardized modules enable rapid assembly and shorten project implementation timelines; they can be flexibly configured to suit project requirements, freely connected in parallel or series, and offer high adaptability.
2. Made entirely of stainless steel, with no wear‑prone components, resulting in low maintenance costs.
3. Bio‑module combined aeration system, plug-and-play
Technical Advantages:
1. In-situ sludge reduction
By combining targeted reactor‑tank design with the unique properties of proprietary biological carriers, bioenzymes, bacterial flocs, protozoa, metazoa, and aquatic organisms are progressively enriched in distinct zones, fostering a stepwise, mutually reinforcing integration of biological and food chains. This ultimately achieves a residual activated sludge reduction rate of 70% to 95%.
2. Higher COD removal rate
In the LSP process tank, a tailored tank design and proprietary bio‑carrier configuration enhance microbial diversity, extend the food chain, and foster the development of specific microbial populations that exhibit high degradation capacity and efficiency toward recalcitrant pollutants, thereby improving overall COD removal performance.
3. Lower operating costs
Due to the high oxygen demand in the front end of the process and the low oxygen demand in the back end, the entire system employs a gradually decreasing aeration scheme from upstream to downstream, which reduces the air‑to‑water ratio and, consequently, lowers operating costs to some extent.
Due to the high sludge reduction rate, sludge disposal costs are significantly reduced, thereby lowering overall operating expenses.
4. Enhanced impact resistance
Due to the sludge concentration at the front end of the LSP reactor reaching 15–30 g/L, its high concentration and broad microbial diversity significantly enhance the system’s resistance to shock loads.
Application Fields/Industries:
Sludge reduction at the source, water treatment, municipal, industrial, refining, pharmaceutical, chemical, fine chemical, textile dyeing, coking, and other sectors.
Main parameters:
| Model number | Module dimensions (mm) | Service Area (m²) | Note |
| LSP-LA/O-1010A | 800×800×2800 | 1.0-1.5 | |
| LSP-LA/O-1515A | 800×1300×2800 | 1.5-2.5 | Recommended size |
| LSP-LA/O-1515B | 1300×1300×3000 | 2.2-3.2 | |
| LSP-LA/O-2020B | 1800×1800×3000 | 4.0-5.3 | |
| LSP-LA/O-2025C | 1800×2300×3500 | 4.8-6.3 | |
| LSP-LA/O-2525C | 2000×2000×3500 | 15.0-6.5 | Recommended size |
| LSP-LA/O-2530C | 2500×2500×3500 | 7.3-9.0 | |
| LSP-LA/O-3030C | 3000×3000×3500 | 10.2-12.2 |
- The LSP-LA series modules do not include an aeration system and are designed for anaerobic and anoxic systems, with packing spacing options of 80, 100, 120, and 150 mm.
- The LSP-LO series modules include an aeration system for aerobic processes and are equipped with packing spacing options of 80, 100, 120, and 150 mm.
- The above are the standard product model dimensions; custom fabrication is available for special requirements.
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