Yang, Gan team published research in Journal of Geophysical Research: Atmospheres in 2022 | 16545-68-9

16545-68-9, Cyclopropanol is a cyclopropane in which a hydrogen atom is replaced by a hydroxy group. It is a member of cyclopropanes and an aliphatic alcohol.
Cyclopropanol is a useful research compound. Its molecular formula is C3H6O and its molecular weight is 58.08 g/mol. The purity is usually 95%.
Cyclopropanol is a cyclic organic compound that is synthesized from sodium hydroxide solution, nitrogen atoms, and carbonyl groups. Cyclopropanol has shown inhibitory effects on inflammatory bowel disease in rats. This drug also inhibits the production of hydrogen chloride and hydrochloric acid in the stomach, which can lead to ulcers. Cyclopropanol has been found to be effective against bowel diseases such as Crohn’s disease and ulcerative colitis. This drug has been shown to have strong antioxidant properties, which may be due to its ability to reduce hydroxyl radicals., Reference of 16545-68-9

Simple alcohols are found widely in nature. Ethanol is the most prominent because it is the product of fermentation, a major energy-producing pathway. 16545-68-9, formula is C3H6O, Other simple alcohols, chiefly fusel alcohols, are formed in only trace amounts. More complex alcohols however are pervasive, as manifested in sugars, some amino acids, and fatty acids. , Reference of 16545-68-9

Yang, Gan;Huo, Juntao;Wang, Lihong;Wang, Yuwei;Wu, Shijian;Yao, Lei;Fu, Qingyan;Wang, Lin research published 《 Total OH Reactivity Measurements in a Suburban Site of Shanghai》, the research content is summarized as follows. Total hydroxyl radicals (OH) reactivity, as a measure of the OH total loss rate and the significance of atm. oxidation, is broadly used to evaluate the OH budget in the atm. Here, measurements of the total OH reactivity were performed at a suburban air quality monitoring supersite (Dianshan Lake) of Shanghai, between 1 August and 15 Sept., 2020, using the Comparative Reactivity Method. The measured total OH reactivity ranged from 13.9 to 107.4 s-1 with an average of 38.4 s-1. Meanwhile, the calculated total OH reactivity varied between 8.9 and 84.4 s-1 from concentrations of atm. trace gases measured by multiple in-situ techniques including an online gas chromatograph equipped with mass spectrometry and flame ionization detection (GC-MS/FID) and two proton-transfer-reaction time-of-flight mass spectrometers (PTR-ToF-MSs). A 12.1missing OH reactivity was evident from the comparison between the measured and calculated total OH reactivities. Inorganic trace gases, methane, and 54 observed Photochem. Assessment Monitoring Station compounds detected by GC-MS/FID, accounted for 25.7, 1.3, and 10, resp., of the calculated total OH reactivity. In addition, 292 species detected by PTR-ToF-MSs contributed the rest 63. The top 10 VOC contributors to the measured total OH reactivity were C5H8, CH2O, C2H4O, C6H6O, C4H8O, C3H6O, C10H16, C5H10O, C5H8O2, and C8H10, resp., whose total contribution reached 42. Correlation anal. for the missing OH reactivity suggests that primary biogenic VOCs could be a potential source for the missing OH reactivity during the daytime, and that secondary oxidation products might also be connected to the missing OH reactivity.

16545-68-9, Cyclopropanol is a cyclopropane in which a hydrogen atom is replaced by a hydroxy group. It is a member of cyclopropanes and an aliphatic alcohol.
Cyclopropanol is a useful research compound. Its molecular formula is C3H6O and its molecular weight is 58.08 g/mol. The purity is usually 95%.
Cyclopropanol is a cyclic organic compound that is synthesized from sodium hydroxide solution, nitrogen atoms, and carbonyl groups. Cyclopropanol has shown inhibitory effects on inflammatory bowel disease in rats. This drug also inhibits the production of hydrogen chloride and hydrochloric acid in the stomach, which can lead to ulcers. Cyclopropanol has been found to be effective against bowel diseases such as Crohn’s disease and ulcerative colitis. This drug has been shown to have strong antioxidant properties, which may be due to its ability to reduce hydroxyl radicals., Reference of 16545-68-9

Referemce:
Alcohol – Wikipedia,
Alcohols – Chemistry LibreTexts