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HTY-BDA

Biodegradation Analysis System

Biodegradation Analysis System: Under controlled conditions, the amount of carbon dioxide produced during the biodegradation of materials is measured using the principle of non-dispersive infrared detection. Other sensors can also detect specific gases, such as methane, oxygen and hydrogen sulfide.

Compliant with 21CFR part 11

Strong Storage Capacity: over 10 years

Fast testing speed: rapid and precise temperature control, reducing testing time to within 4 minutes

Features

Working Principle:

The sample is placed in a sealed space. Under constant temperature conditions, when the vapor pressure of the sample and the surrounding air reach equilibrium, the water vapor pressure of the gas space is taken as the sample vapor pressure. That is, the decimal form of the relative humidity of the air in the top space of the sample chamber is the water activity of the sample.

  • Modula Design, Automatic Stirring of Reactors: It can accommodate more than 24 degradation reactors, and each reactor is equipped with an automatic stirring device as standard, which can achieve regular and automatic stirring without manual intervention.
  • Self-developed Unit for Infrared Principle Sensors: CO2 gas sensors, air mass flow controllers, temperature and humidity sensors, and pressure sensors are shipped with their own calibration and measurement to facilitate users to quickly obtain certification and approval.
  • Online Real-time Monitoring of CO2: Multiple modes can be selected for CO2 monitoring during the degradation process, real-time continuous monitoring and regular accumulation monitoring, and the PC and mobile terminals are linked.
  • Microbial Control Tech: Unique compost activation technology and microbial capacity determination technology can provide improved compost and vermiculite.
  • Data Output in Multiple Formats:  PC software control, data mapping, test data supports multiple formats of output.
  • Test Processing Fully Automated: An external water tank and automatic condensation reflux device can be installed to ensure that the reactor always maintains the required humidity range during the test.
Biodegradation Analysis System

Specifications

Cultivation Method: 58℃ controlled composting biodegradation Dimension: 172cmx65cmx185cm
CO2 Sensor: (0~5%)±2%F.S. O2 Sensor: (0~25%)±5%
Temperature Control Range: Room temperature~70℃±2℃ Alarm Signal: PC and mobile phone are linked
CO2 Detection Method: Infrared NDIR method/ TDLAS method/conductivity method optional Power: 1200W
CO2 Monitoring Mode: Online continuous CO2 detection/ accumulation method DIC detection optional Power Supply: (200-240)VAC, 50/60Hz
Number of Channels: 12, 24, 36 bits optional Gas Flow Monitoring: Automatic mass flow control (0~500)mL/min
Reactor Capacity: 3L with automatic stirring device Weight: 280kg
Software & System: PC-side control Tailin MULTI software Ambient Temperature: (5-40)℃, (5-90)%RH non-condensing
Temperature & Humidity Monitoring: Temperature: (0-95)℃, Humidity: (0~90)%RH Safety Protection: Heater power-off alarm; sensor power-off alarm; overheating alarm; leakage protection
Oxygen Monitoring: Electrochemical oxygen concentration monitoring

Compliance

  • ISO 14855-1:2005  Determination of the ultimate aerobic biodegradability of plastic materials under controlled composting conditions — Method by analysis of evolved carbon dioxide.
  • ISO 8245 1999 Water quality—Guidelines for the determination of total organic carbon (TOC) and dissolved organic carbon (DOC).

Applications

This analytical system applies to the degradation performance analysis of various fully biodegradable materials, mainly including mainstream biodegradable plastics such as polylactic acid (PLA), polyhydroxy acid (PHA), polycaprolactone (PCL), polyester acid (PBS), and polyvinyl alcohol (PVA), and mainly involves industries such as environmental monitoring and the chemical industry.

Pharmaceuticals

Environmental monitoring

Chemical industry

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