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Aniline Point Apparatus
Aniline Point Apparatus

Aniline Point Apparatus

Aniline Point Apparatus Specification

  • Core Components
  • Heating Bath, Sample Flask, Thermometer, Stirrer, Transparent Shield
  • Measurement Range
  • Generally 30C to 200C for standard applications
  • Automation Grade
  • Manual
  • Model No
  • APA-611
  • Temperature Range
  • Up to 200C
  • Accuracy
  • 1C
  • Power Source
  • Electric (Mains Power)
  • Frequency
  • 50 Hz
  • Feature
  • Manual Operation, Uniform Heating, Safe Shield for Observation
  • Capacity
  • 100 ml (Sample Flask), 500 ml (Heating Bath)
  • Voltage
  • 220-240 V AC
  • Equipment Materials
  • Borosilicate Glass, Stainless Steel, Cast Iron (where applicable)
  • Type
  • Lab Type (Open Tube, Heating Bath with Thermometer Holder)
  • Usage
  • Determining aniline point of petroleum products as per ASTM D611
  • Display Type
  • Analog (visual observation through transparent shield)
  • Dimension (L*W*H)
  • 300 mm x 180 mm x 200 mm (Approx.)
  • Weight
  • Approx. 3 kg
 
 

About Aniline Point Apparatus



The Featured Aniline Point Apparatus Model APA-611 is an in demand, highly valuable solution for laboratories, refineries, and research facilities. Perfect for the determination of the minimum temperature at which aniline is completely miscible with petroleum products, it ensures outstanding accuracy (1C) and compliance with ASTM D611 and ISO 2977 standards. With an advance purchase, benefit from uniform heating via the immersion heater, a robust oil bath, and a clear, heat-resistant shield for secure, visual observation. Manual operation, durable borosilicate glass, and stainless steel construction make this apparatus reliable and safe for precise measurements. Available for exporters, manufacturers, and suppliers across India.

Application & Usage Across Sites

The Aniline Point Apparatus finds valuable application in laboratories, petrochemical plants, and quality control settings for determining the miscibility point of aniline in petroleum products. Direction of use involves careful sample placement, immersion heating, and visual monitoring through the transparent shield. Its manual stirring mechanism ensures thorough mixing, making it perfect for plant application where precise testing is critical for fuel quality validation and process optimization.


FOB Port, Payment Terms & Secure Freight

We offer the Aniline Point Apparatus with secure shipping from prominent Indian FOB ports such as Mumbai or Chennai, ensuring prompt and safe delivery. Payment terms are flexible, supporting LC, T/T, or other standard valuation processes as per client requirements. Freight charges are transparently communicated, and samples are available upon request for product validation and review prior to advance purchase, ensuring peace of mind and reliable procurement.


FAQ's of Aniline Point Apparatus:


Q: How does the Aniline Point Apparatus work for determining miscibility?

A: This apparatus employs an oil bath with an immersion heater and manual stirring to uniformly heat the sample. By visually observing the complete miscibility of aniline with the petroleum product through the transparent shield, testers can determine the precise aniline point according to ASTM D611.

Q: What safety features make this model outstanding for laboratory use?

A: The Aniline Point Apparatus features a transparent, heat-resistant acrylic shield and a sturdy base, providing exceptional protection during high-temperature operations and direct visual testing.

Q: When should the Aniline Point Apparatus be used in petrochemical plants?

A: Use this apparatus during quality control routines when testing fuel samples to ensure compliance with industry standards or during research and development of new blends requiring precise miscibility determination.

Q: Where is the Aniline Point Apparatus typically installed?

A: It is most commonly installed in laboratory environments, analytical rooms, or pilot plant test areas where accurate, standardized petroleum product testing is conducted.

Q: What are the core benefits of manual operation in this apparatus?

A: Manual operation allows for increased control over stirring and heating rates, promotes user engagement in the test process, and ensures reliable, repeatable results without overreliance on automated components.

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