Abhay Enviro Engineering, adopting the world’s best technology for best Water treatment solutions.

Sewage Treatment Plant

We have Executed and Commissioned projects in technologies such FAB/ MBBR Systems, Extended Aeration Systems, and Activated Sludge Processes.

Abhay Enviro Engineering Pvt. Ltd. stands as a leading name among Sewage Treatment Plant Manufacturers, Suppliers & Exporters in Delhi, Gujarat, Haryana, Rajasthan, and Uttar Pradesh. With an extensive portfolio, we have successfully Executed and Commissioned projects employing advanced technologies like FAB/MBBR Systems, Extended Aeration Systems, and Activated Sludge Processes.

SBR System

The Sequencing Batch Reactor process (abbreviated SBR procedure) is a variation of the conventional activated sludge process. The SBR consists of a reaction chamber which first operates as a biological reactor and then as a sedimentation chamber. Unlike reactors where the wastewater flows through continuously, the SBR is filled and emptied discontinuously. The conventional physical separation of the biological processes and the sedimentation is replaced by a chronological one. The cycle starts with the filling phase where the first decomposition processes start under anaerobic or anoxic conditions. In the actual decomposition or reaction phase, the reactor is ventilated. Depending on the cleaning target, unventilated phases can be projected as well. Afterward, in the sedimentation phase, the activated sludge sediments and the Clearwater layer develop. The supernatant Clearwater is removed in the sedimentation phase. Then, the cycle starts from the beginning. A separate secondary sedimentation is not required in the SBR process.


MBBR System

The MBBR System is the latest advance in attached growth aerobic biological treatment technology. MBBR employs (RING PAC MEDIA) neutrally buoyant bio-film carrier elements to achieve outstanding BOD/COD removal productivity from a compact bioreactor. In MBBR the liquid to be treated is pumped through a bed of small media at a sufficient velocity to cause fluidization. In the fluidized state the media provide a large specific surface for attached biological growth and allow biomass concentration to develop.

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