Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit

Product Details
Customization: Available
After-sales Service: 1 Year
Warranty: 1 Year
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Number of Employees
32
Year of Establishment
2014-05-29
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
  • Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
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  • Overview
  • Product Description
  • Detailed Photos
  • Working Principle
Overview

Basic Info.

Model NO.
QK-UASB
Type
Anaerobic Reactor
Method
Chemical Treatment
Usage
Industrial, Agriculture
Application
Various Works
Capacity
Customized
Model
Qk-Uasb
Transport Package
Wooden Case
Specification
0
Trademark
Qiankun
Origin
China
Production Capacity
1000pieces/Year

Product Description

Product Description

 

Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
An anaerobic reactor is a specialized system used for the treatment of wastewater or organic waste in the absence of oxygen. It creates an oxygen-free environment to promote the growth of anaerobic microorganisms that can break down organic matter and produce biogas as a byproduct.
 
Detailed Photos

 

Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit
Working Principle

 

Turboflow Biomax Maxiboost Uasb Anaerobic Bioreaction Unit

The working principle of an anaerobic reactor involves several key processes:

  1. Anaerobic Conditions: The reactor is designed to maintain an environment without oxygen. This is achieved by sealing the system or excluding oxygen through continuous flushing with inert gases such as nitrogen or carbon dioxide.

  2. Organic Matter Degradation: The organic waste or wastewater is introduced into the reactor as the substrate. Anaerobic microorganisms, such as bacteria and archaea, utilize the organic matter as a food source and break it down through a series of biochemical reactions.

  3. Methane Production: The primary end product of anaerobic digestion is methane gas (CH4), commonly known as biogas. The microorganisms in the reactor convert organic compounds into methane and carbon dioxide through a process called methanogenesis.

  4. Retention Time: The wastewater or organic waste remains in the reactor for a specific period known as the retention time. The retention time allows sufficient contact between the microorganisms and the substrate, ensuring efficient degradation and methane production.



 

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