form
chunks (large)
Quality Level
color
white
mp
43-95 °C
transition temp
solidification point 44-46 °C
InChI key
JWHAUXFOSRPERK-UHFFFAOYSA-N
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General description
Paraffin wax is a non-toxic, non-reactive, soft, and odorless wax. This water barrier is made up of a complex mixture of hydrocarbon derivatives. It has a very large volume expansion even at high counter pressure.
Application
Paraffin wax has been used as a phase-change material (PCM) in the microvalve and micropump chambers to prepare paraffin microactuator for microfluidic experiments. It has also been used to study the possibility of integrating paraffin with polycarbonate components having rigid cavities and weak diaphragms.
Biochem/physiol Actions
Paraffin wax is utilized to get relief from discomfort and pain in conditions including arthritis, bursitis, fibromyalgia, eczema, psoriasis, stiff joints, dry flaky skin, tired sore muscles, and inflammation. It is often used in skin-softening salon and spa treatments. Paraffin wax is used in candles and crayons preparations. It is used as lubrication and electrical insulation. It can be processed by casting, which makes it an appealing actuator material for microvalves and micropumps.
replaced by
Product No.
Description
Pricing
WGK
nwg
Flash Point(F)
Pensky-Martens closed cup
Flash Point(C)
Pensky-Martens closed cup
Personal Protective Equipment
dust mask type N95 (US), Eyeshields, Gloves
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Pharmaceuticals
Economics and Australian health policy, 115-136 (2020)
Fabrication of a paraffin actuator using hot embossing of polycarbonate
Sensors and actuators A, Physical, 103(3), 307-316 (2003)
Lab on a chip, 14(19), 3781-3789 (2014-08-08)
The fabrication of a novel microfluidic system, integrated with a set of laser-controlled microactuators on an ePetri on-chip microscopy platform, is presented in this paper. In the fully integrated microfluidic system, a set of novel thermally actuated paraffin-based microactuators, precisely
A polymeric paraffin actuated high-pressure micropump
Sensors and actuators A, Physical, 127(1), 88-93 (2006)
Plant physiology, 152(1), 356-365 (2009-11-21)
In an approach to study lateral root development in monocots, genome-wide searches for homologs of the Gibberellic Acid Stimulated Transcript-like (GAST-like) gene family in rice (Oryza sativa) and maize (Zea mays) were carried out. Six novel GAST-like genes in rice
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