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Hangzhou NIHAO Environmental Tech Co., Ltd.
Zhejiang, China
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The advanced biological contact oxidation method used by the wastewater treatment plant unit is primarily derived from: this is a good treatment effect, less sludge volume, low power consumption of the more advanced biochemical treatment process; by selecting effective microbial preparation and enzyme preparation, which is typically difficult or cannot be for microbial degradation of organic pollutants has been quickly and more completely biodegradable; and enhance the operation of cold climate; mitigate the effects of accidents and toxic shocks.
The working method of the water treatment systems

The sewage from the canteen is collected and treated by a septic tank, oil-water separation, solid-liquid separation, large solid particles, floater intercept live (the laundry, a grating interception that needs to be cleaned frequently to avoid clogging), and pool adjustment via sewage collection. The pool is equipped with a liquid level controller, and when the water level reaches a certain point, lifting equipment into the integrated wastewater treatment equipment begins.
The NIHAO containerized MBR Waste Water treatment plant uses different equipment for sewage treatment than the traditional biological treatment process, which uses microorganisms to break down organic matter in sewage 10–20 times faster. This increases the rate at which the microorganisms break down organic matter in sewage 100 times faster than with traditional methods, effectively preventing biomass loss. Following biochemical treatment, disinfection equipment should be used to eliminate any excess Escherichia coli in the water.
The idea behind the MBBR method is to boost the reactor's biomass and biological species by introducing a specific quantity of suspension carriers, which will raise the reactor's efficiency.
Introduction of Contained Water Treatment Plant

The Nihao containerized water treatment plant is a water treatment system that is portable, self-sufficient, and small enough to fit within a typical shipping container. When traditional water treatment facilities are unavailable, these plants are made to provide water treatment solutions in isolated or transient sites. 

A CONTAINER SEWAGE TREATMENT PLANT is capable of treating a wide range of water sources, including lakes, wells, and rivers. To create safe and drinkable water, several treatment techniques may be used, such as filtration, reverse osmosis, UV sterilization, chemical dosing, and others. Containerized plants are simple to install, run, and maintain thanks to their modular architecture, which also allows for quick transportation and deployment to other places as needed.
Water Treatment Plant in a Container

A small-scale system that integrates both treatment methods to efficiently treat wastewater is a compact integrated water treatment plant for MBR (membrane bioreactor) and MBBR (moving bed biofilm reactor) wastewater treatment. Whereas MBBR employs a biofilm of microorganisms to remove organic matter and nutrients, MBR filters out solids and microbes from water using membranes.
The biological treatment stage of this integrated system is provided by MBBR, and the physical filtration stage is provided by MBR. The system is ideal for small towns or industrial buildings because of its compact form, which maximizes space utilization. In order to comply with environmental standards, the treated water may be released or used again for irrigation. A sustainable and affordable method of treating wastewater is the compact integrated water treatment plant for MBR and MBBR systems. In isolated or difficult-to-reach areas where conventional water treatment infrastructure might not exist or could be challenging to develop, these plants can be readily transported and installed. 

Applications for Container Sewage Treatment Plants
  1. Pretreatment of industrial wastewater includes effluent from the food, pharmaceutical, semiconductor, steel, chemical, breeding, and textile printing and dyeing industries.
  2. Pretreatment, standard lifting, and phosphorus removal in a sewage treatment plant.
  3. Algal elimination in waterworks.
  4. Ecology: water purification from rivers and lakes, water treatment for landscapes.
  5. desalination of seawater.
  6. Acidification via hydrolysis
  7. Biochemistry under hypoxia
  8. Make contact with oxidation
  9. Liquid reflux nitrification
  10. Reflux of sludge
  11. Aeration, disinfection, secondary precipitation, and other procedures.

Benefits of Package Water Treatment Plant
1. Impact load, extended sludge age, reduced leftover sludge, elevated efficiency, and adaptable functioning.
2. The reactor has a comparatively high concentration of sludge.
3. There is little head loss, no backwash, it shouldn't be stopped, and it usually doesn't come back.
4. Water Treatment Equipment Made by MBBR The suspended filler, which is the core component of the MBBR process, has both anaerobic and aerobic metabolic activity and is beneficial for the removal of phosphate and nitrogen.


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