The relative rate technique has been used to measure the hydroxyl radical (OH) reaction rate constant of 2-propoxyethanol (2PEOH, CH 3 CH 2 CH 2 OCH 2 CH 2 (OH)). 2PEOH reacts with OH with a bimolecular rate constant of (21.4 ฯฎ 6.0) ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 at 297 ฯฎ 3 K and 1 atm total pressur
The hydroxyl radical reaction rate constants and atmospheric reaction products of three siloxanes
โ Scribed by Stewart J. Markgraf; J. R. Wells
- Publisher
- John Wiley and Sons
- Year
- 1997
- Tongue
- English
- Weight
- 134 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0538-8066
No coin nor oath required. For personal study only.
โฆ Synopsis
The relative rate technique has been used to measure the hydroxyl radical (OH) reaction rate constant of hexamethyldisiloxane (MM, (CH 3 ) 3 Si -O -Si(CH 3 ) 3 ), octamethyltrisiloxane (MDM, (CH 3 ) 3 Si -O -Si(CH 3 ) 2 -O -Si(CH 3 ) 3 ), and decamethyltetrasiloxane (MD 2 M, (CH 3 ) 3 Si -O -Si(CH 3 ) 2 -O -Si(CH 3 ) 2 -O -Si(CH 3 ) 3 ). Hexamethyldisiloxane, octamethyltrisiloxane, and decamethyltetrasiloxane react with OH with bimolecular rate constants of 1.32 ฯฎ 0.05 ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 , 1.83 ฯฎ 0.09 ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 , and 2.66 ฯฎ 0.13 ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 , respectively. Investigation of the OH ฯฉ siloxane reaction products yielded trimethylsilanol, pentamethyldisiloxanol, heptamethyltetrasiloxanol, hexamethylcyclotrisiloxane, octamethylcyclotetrasiloxane, and other compounds. Several of these products have not been reported before because these siloxanes and the proposed reaction mechanisms yielding these products are complicated. Some unusual cyclic siloxane products were observed and their formation pathways are discussed in light of current understanding of siloxane atmospheric chemistry.
๐ SIMILAR VOLUMES
The relative rate technique has been used to measure the rate coefficient for the reaction of the hydroxyl radical (OH) with methyl isobutyrate (MIB, (CH 3 ) 2 CHC(ฯญO)-O-CH 3 ) to be (1.7 ฯฎ 0.4) ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 at 297 ฯฎ 3 K and 1 atmosphere total pressure. To more clearly define MIB's
The relative rate technique has been used to measure the hydroxyl radical (OH) reaction rate constant of ฯฉ2-butanol (2BU, CH 3 CH 2 CH(OH)CH 3 ) and 2-pentanol (2PE, CH 3 CH 2 CH 2 CH(OH)CH 3 ). 2BU and 2PE react with OH yielding bimolecular rate constants of and respec-ฯช12 3 ฯช1 ฯช1 ฯช12 3 ฯช1 ฯช1 (8.1
The relative rate technique has been used to measure the hydroxyl radical (OH) reaction rate constant of ethyl 3-ethoxypropionate (EEP, CH 3 CH 2 -O -CH 2 CH 2 C(O)O -CH 2 CH 3 ). EEP reacts with OH with a bimolecular rate constant of (22.9 ฯฎ 7.4) ฯซ 10 ฯช12 cm 3 molecule ฯช1 s ฯช1 at 297 ฯฎ 3 K and 1 at
Rate constants for three dimethylbenzaldehydes and two trimethylphenols have been determined for the OH reactions at and atmospheric pressure using a relative rate method. The OH reaction rate constants were placed on an absolute basis using the literature rate constant for 1,2,4-trimethylbenzene of