Heat Transfer Fluids

Dibenzyltoluene (Heat Transfer Fluids) SRS602 is a good substitute for DBT, designed for heat transfer installations by fluid circulation. DBT is an excellent heat transfer fluids with a blend of dibenzyl toluene isomers, especially suitable for heating well-defined composition and the absence of detectable contaminants provides enhanced safety.

View SRS602 Viscosity Chart

Substance Identification

Synonyms Dibenzyltoluene | DBT
CAS 26898-17-9
EINECS N/A
FEMA N/A
HS.CODE 29029090.90
Molecular Formula C21H20
Moleclar Weight 272.3835

Application & Uses

  • Biodiesel
  • Chemical and plastics industry, heating and cooling circuits (barrel extruders)
  • Renewable energy, solar energy
  • Synthetic Fiber, spandex
  • Oil and gas processing

Features & Benefits

  1. an excellent alternative to Jarytherm DBT as a heat transfer fluid
  2. prominent thermal stability from -30°C~350°C
  3. nearly non-toxic and odorless, environmental friendly
  4. noncorrosive to equipment
  5. low viscosity and high thermal conductivity
  6. high boiling, flash, and auto-ignition points for a safer working environment

Sales Specification

ITEM VALUE
Appearance clear liquid with yellowish and bluish variations
Acid number, mgKOH/g 0.05 max
Chlorine content, mg/kg 20 max
Temperature Range, °C -30~350
Water, mg/kg 200 max
Density, °C, g/m3 1.02~1.10
Flash Point, °C 200 min
Kinematic viscosity(40℃) 20 mm2/s max
Purity by GC 98% min

Package

  • Iron Drum, 200kg net each

Preview all the spec of packaging

GHS Hazard Statements

There is currently no available data for this product, click to view GHS Classification and Labelling by UNECE.

Storage

  • do not store in direct sunlight
  • keep away from heat, sparks and open flame
  • keep containers closed when not in use
  • store at ambient temperature and atmospheric pressure
  • use care in handling/storage

Remark

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The above information is believed to be accurate and represents the best explanation currently available to us. However, no liability is assumed for any consequences arising from the use of this content. The technical standards for our products are developed and updated jointly by our customers and ourselves; where any changes occur, the latest specification shall prevail and will be confirmed in the relevant contract.All suggestions and data provided are based on information we consider to be reliable and are offered in good faith, but without any guarantee, as the conditions and methods of use of our products are beyond our control. Foreverest® makes no warranties, whether express or implied, regarding the accuracy, completeness or suitability of this information, and expressly disclaims any implied warranty of fitness for a particular purpose. Prospective users should conduct their own tests and evaluations to determine the suitability of Foreverest® materials and any recommendations for their intended applications before adoption, and, where appropriate, should obtain confirmation or approval from the relevant regulatory authorities.Any references in this page to patents or patented technologies, including descriptive material derived from patents or citations of specific patent numbers, are provided for information only. They must not be interpreted as a recommendation to use our products in a manner that could infringe any third‑party patent, nor as a grant of any licence or permission to use patents owned by Foreverest®.

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