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9003-29-6

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9003-29-6 Usage

Description

Polybutenes, also known as polybutylenes, are a class of polymers composed of linear chains with an isotactic arrangement of ethyl side groups along the chain backbone. They exhibit a helical conformation in their stable crystalline form and possess properties such as high tear, impact, and puncture resistance, low creep, excellent chemical resistance, and abrasion resistance with coilability.

Uses

Used in Detergent and Anti-rust Additive Industry:
Polybutenes are used as hydrophobic materials in the production of detergents and anti-rust additives. They are derivatized to enhance the performance and effectiveness of these products.
Used in Adhesives and Coatings Industry:
Polybutenes are used as additives in adhesives and coatings to improve their tack, flexibility, and water repellency. This contributes to the overall performance and durability of the final product.
Used in LLDPE Films Industry:
Polybutenes contribute to the 'cling' property of linear low-density polyethylene (LLDPE) films, enhancing their performance in various packaging applications.
Used as Plasticizers:
Polybutenes are used as plasticizers for polymers, helping to increase their flexibility and workability.
Used in Lubricants and Metal-working Fluids Industry:
Polybutenes are employed as lubricants and in metal-working fluids, providing excellent lubrication and reducing friction during manufacturing processes.

Check Digit Verification of cas no

The CAS Registry Mumber 9003-29-6 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 9,0,0 and 3 respectively; the second part has 2 digits, 2 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 9003-29:
(6*9)+(5*0)+(4*0)+(3*3)+(2*2)+(1*9)=76
76 % 10 = 6
So 9003-29-6 is a valid CAS Registry Number.
InChI:InChI=1/2C4H8/c2*1-3-4-2/h3-4H,1-2H3;3H,1,4H2,2H3/b4-3+;

9003-29-6 Well-known Company Product Price

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  • Aldrich

  • (388696)  Polybutenes  average Mn ~920 by VPO, isobutylene >90 %

  • 9003-29-6

  • 388696-100ML

  • 494.91CNY

  • Detail
  • Aldrich

  • (388726)  Polybutenes  average Mn ~2,300 by VPO, isobutylene >90 %

  • 9003-29-6

  • 388726-1L

  • 2,150.46CNY

  • Detail

9003-29-6SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 17, 2017

Revision Date: Aug 17, 2017

1.Identification

1.1 GHS Product identifier

Product name Polybutenes

1.2 Other means of identification

Product number -
Other names -

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only. Polymers
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:9003-29-6 SDS

9003-29-6Relevant articles and documents

Tuning crystal phase of molybdenum carbide catalyst to induce the different selective hydrogenation performance

Ding, Ziluo,Hou, Ruijun,Sun, Kening,Xu, Yamei,Yang, Qiuchen

, (2021/12/04)

α-MoC, β-Mo2C, and MoC-Mo2C were synthesized and investigated in the selective hydrogenation of 1,3-butadiene to understand the effect of crystal phases. The catalysts were characterized by XRD, N2-physisorption, SEM, TEM, XPS and chemisorptions. The adsorption properties and electronic properties over MoC(001) and Mo2C(001) were investigated by DFT calculations. The catalysts were evaluated at low and high temperatures in a fixed-bed reactor. β-Mo2C exhibits high activity and low butenes selectivity, due to the high concentration of hydrogen at each active site as well as the stronger adsorption and higher capacity of alkene; MoC-Mo2C shows better stability due to synergetic effect. At high temperature, the reaction rate is more dependent on the PH2 than PC4H6. Increasing PH2 could promote the activity and reduce oligomers formation. β-Mo2C exhibits the best performance at high temperatures concerning its high activity and the inhibition of oligomerization. This work is valuable for the non-precious metal catalyst development.

Conversion of Phenol and Lignin as Components of Renewable Raw Materials on Pt and Ru-Supported Catalysts

Bobrova, Nataliia A.,Bogdan, Tatiana V.,Bogdan, Viktor I.,Koklin, Aleksey E.,Mishanin, Igor I.

, (2022/03/01)

Hydrogenation of phenol in aqueous solutions on Pt-Ni/SiO2, Pt-Ni-Cr/Al2 O3, Pt/C, and Ru/C catalysts was studied at temperatures of 150–250? C and pressures of 40–80 bar. The possibility of hydrogenation of hydrolysis lignin in an aqueous medium in the presence of a Ru/C catalyst is shown. The conversion of hydrolysis lignin and water-soluble sodium lignosulfonate occurs with the formation of a complex mixture of monomeric products: a number of phenols, products of their catalytic hydrogenation (cyclohexanol and cyclohexanone), and hydrogenolysis products (cyclic and aliphatic C2 –C7 hydrocarbons).

A selective and stable Fe/TiO2catalyst for selective hydrogenation of butadiene in alkene-rich stream

Casale, Sandra,Delannoy, Laurent,Louis, Catherine,Méthivier, Christophe,Santander de Soto, Laura,Wang, Zhao

supporting information, p. 7031 - 7034 (2021/07/21)

The replacement of precious metals by more abundant and therefore much less expensive metals remains a very important challenge in catalysis. A Fe/TiO2catalyst prepared by deposition-precipitation with urea showed very high selectivity to alkenes (>99%), even at high conversion (>90%), in selective hydrogenation of butadiene in an excess of propene. Its activity is very stable at 175 °C whereas the catalyst deactivates at 50 °C, although it is also initially very active. The presence of metallic iron seems to be necessary to ensure these excellent performances.

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