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Zhufang Village, China

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Product Detail

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Location: Zhufang Village, China

Time: 2014

Treatment capacity: 200 m3/d

WWTP Type: Integrated FMBR Equipment WWTP

Process: Raw Wastewater→ Pretreatment→ FMBR→ Effluent

Project Brief:

Zhufang village FMBR WWTP project was completed and started operation in April 2014, with a daily capacity of 200 m3/d and a service population of about 2,000. The project’s O&M services is provided by JDL. By using of the Internet Remote Monitoring + Mobile O&M Station management mode, the project O&M work is simple and easy, and the equipment has been running stably till now. In the daily operation, there is few organic sludge discharged, no odor and little impact on the surrounding environment. After treatment, the effluent of the equipment reaches the standard stably, which avoids the pollution of the water body caused by the direct discharge of sewage, and effectively protects the rural water environment.

FMBR technology is a sewage treatment technology independently developed by JDL.The FMBR is a biological wastewater treatment process that removes carbon,nitrogen and phosphorus simultaneously in a single reactor.Emissions effectively solve the “neighboring effect”. FMBR successfully activated the decentralized application mode, and is widely used in municipal sewage treatment, rural decentralized sewage treatment, watershed remediation, etc.

FMBR is the abbreviation for facultative membrane bioreactor. FMBR uses the characteristic microorganism to create a facultative environment and form a food chain, creatively achieving low organic sludge discharge and simultaneous degradation of pollutants. Due to the efficient separation effect of the membrane, the separation effect is far better than that of the traditional sedimentation tank, the treated effluent is extremely clear, and the suspended matter and turbidity are very low.

Characteristics Of FMBRSimultaneous removal of organic carbon, nitrogen and phosphorus,

Less organic residual sludge discharging, Excellent discharge quality, Minimum chemical addition for N & P removal,Short construction period,Small footprint,Low cost/low energy consumption,

Reduce carbon emissions,Automated and unattended


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