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ME ME-UASB Upflow Anaerobic Sludge Bed UASB, 50000L/Hour, Membrane & Engineering Environ-Tech Co., Ltd. (CAT#: STEM-GMAE-4767-LGZ)

Highlights

Hydraulic retention time(HRT) of 24-48 hours;
Can be design with long slusge age,hence low sludge production;
MLSS of 6000-15000 mg/L;

Cat Number: STEM-GMAE-4767-LGZ

Application: Hotels, Garment Shops, Building Material Shops, Manufacturing Plant, Machinery Repair Shops, Food & Beverage Factory, Farms, Restaurant, Home Use, Retail, Food Shop, Printing Shops, Construction works , Energy & Mining, Food & Beverage Shops, Advertising Company, Other

Model: ME-UASB

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Description

The Upflow Anaerobic Sludge Blanket (UASB) process is a sewage treatment technology that uses anaerobic microorganisms to decompose organic matter. In this process, wastewater is introduced into a tank containing a bed of anaerobic sludge, a mixture of microorganisms that break down organic matter in the absence of oxygen. As the wastewater flows up through the sludge bed, microbes consume the organic matter and convert it into biogas, which consists mainly of methane and carbon dioxide. Biogas can be captured and used as renewable energy, while treated wastewater is discharged from the top of the tank. The UASB process is highly efficient and can achieve high removal rates of organic matter, making it a popular choice for wastewater treatment in many industrial and municipal applications.

An upflow anaerobic sludge blanket (UASB) plant is a sewage treatment facility that uses the UASB process to treat wastewater. In this process, wastewater is introduced into the bottom of the reactor pond, where it mixes with the anaerobic sludge bed. As the wastewater flows up through the sludge bed, anaerobic bacteria consume the organic matter and produce biogas, which consists mainly of methane and carbon dioxide. The biogas is collected at the top of the reactor tank and the treated wastewater is discharged from the bottom of the tank. During the operation of the UASB plant, wastewater is first collected and screened to remove any large solid particles that could clog the reactor. It is then pumped into the bottom of the reactor where it is mixed with anaerobic sludge. The sludge bed acts as a biofilm, providing a surface for anaerobic bacteria to grow and feed on the organic matter in the wastewater. As wastewater flows up through the sludge bed, bacteria consume organic matter and produce biogas. Biogas is collected at the top of the reactor tank and can be used as renewable energy. It can be burned to produce heat or electricity, or processed into transportation fuels like methane or ethanol. Treated wastewater is discharged from the bottom of the reactor pond and may be further treated or discharged into the environment, depending on the regulations and requirements of the region. Generally speaking, the operation of a UASB plant includes regular monitoring and maintenance to ensure that the process is working efficiently and effectively. This may include checking biogas production levels, maintaining reactor pH and temperature, and periodically removing and replacing anaerobic sludge.

Specification

Showroom Location: None
Video outgoing-inspection: Provided
Machinery Test Report: Not Available
Marketing Type: Hot Product 2022
Warranty of core components: 1 Year
Core Components: Pump, Motor, PLC, MBR system
Warranty: 1 Year
Productivity: 50000L/Hour
Weight (KG): 15508 kg
Condition: Used
Product name: Upflow anaerobic sludge bed
Application: High contamination wastewater treatment
Tank material: Steel plate
Pump Material: Steel or plastic
Processing: anaerobic fermentation
Capacity: 100 ~99 000 L/H
Shape of STP: Round or retangle
Operation: Fully Automatic
Voltage: 380V/220V
After Warranty Service: Onlinesupport

Features

Hydraulic retention time(HRT) of 24-48 hours;
Can be design with long slusge age,hence low sludge production;
MLSS of 6000-15000 mg/L;
Sludge yield of 20-40% less than conventional;
Footprint of 25% conventional plant;
Modular expandability;
Highest quality effluent;
Low energy demand;
Capable of meeting stringent standands for discharge;
Less susceptible to the effluent due to flow variation;
Less odor.

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