Features and advantages of MABR (EHBR) technology applied to sewage treatment
2021-09-17
1. MABR (EHBR) system has high aeration efficiency and low energy consumption.
2. The multifunctional biofilm of the MABR (EHBR) system has anaerobic, facultative and aerobic effects at the same time, and removes COD and nitrogen at the same time; realizes nitrification and denitrification and short-cut denitrification in a single reactor; sewage treatment Small footprint.
3. The MABR (EHBR) system can promote the formation of biological chains and reduce sludge production.
4. The MABR (EHBR) system can avoid air pollution caused by the volatilization of volatile components; it will not cause foaming due to the presence of surfactants.
5. The MABR (EHBR) system integrates different functional microorganisms on the surface of the hollow fiber membrane, which can not only treat conventional sewage, but also use special microorganisms to treat special and refractory wastewater.
6. The aeration membrane of the MABR (EHBR) system has a long life, no pollution problems, no backwashing and other operations.
7. The microorganisms of the MABR (EHBR) system are highly enriched on the surface of the membrane, and the active microorganisms are not easy to lose.
8. MABR (EHBR) system integrated engineering investment is less, automatic process control; low power consumption, low operating cost.
# Technical keywords#: MABR (EHBR) membrane technology, MABR (EHBR) membrane products, sewage treatment, hollow fiber membranes, biological membranes, water treatment, comprehensive treatment of water environment, water ecology Remediation, water quality improvement, water purification, industrial wastewater treatment and upgrading, rural domestic sewage treatment, water ecosystem, centralized domestic sewage treatment, sewage treatment plant upgrading and upgrading, initial rainwater centralized treatment, technology for reducing sediment pollutants, high salt Water purification treatment technology, high aeration efficiency, high oxygen utilization rate, simultaneous removal of COD and nitrogen
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