Аннотация:
The distribution of O atoms from formaldehyde molecules in the combustion products of CH2O/air flames was estimated using the method of labeled atoms in a numerical modeling.
Тип публикации:
Статья
Язык публикации: английский
Образец цитирования:
V. A. Bunev, V. M. Shvartsberg, V. S. Babkin, “Distribution of O atoms from CH2O molecules in the combustion products of formaldehyde”, Mendeleev Commun., 25:2 (2015), 157–158
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc2335
https://www.mathnet.ru/rus/mendc/v25/i2/p157
Эта публикация цитируется в следующих 7 статьяx:
Tao Hai, Abdulrahman T. Ahmed, Tariq J. Al-Musawi, Nitin Kumar, Yasser Elmasry, Ayadh Al-khalidi, Laith Yassen Qassem, Salah Hassan Zain Al-Abdeen, Rahadian Zainul, “Computer-based study on the sensing of formaldehyde using gold-decorated biphenylene monolayers”, Physica B: Condensed Matter, 689 (2024), 416167
H.M. Badran, Kh.M. Eid, H.O. Al-Nadary, H.Y. Ammar, “Beryllium oxide nano-cage as sorbent and sensor for formaldehyde gas: DFT-D3 calculations”, Journal of Molecular Liquids, 385 (2023), 122430
H.Y. Ammar, Kh.M. Eid, H.M. Badran, “Interaction and detection of formaldehyde on pristine and doped boron nitride nano-cage: DFT calculations”, Materials Today Communications, 25 (2020), 101408
Hussein Y. Ammar, “CH<sub>2</sub>O Adsorption on M (M = Li, Mg and Al) Atom Deposited ZnO Nano-Cage: DFT Study”, KEM, 786 (2018), 384
В. М. Шварцберг, В. А. Бунев, В. С. Бабкин, “Численное исследование распределения атомов кислорода в продуктах сгорания синтез-газа”, Физика горения и взрыва, 53:6 (2017), 3–9; V. M. Shvartsberg, V. A. Bunev, V. S. Babkin, “Numerical investigation of the distribution of oxygen atoms in syngas combustion products”, Combustion, Explosion and Shock Waves, 53:6 (2017), 619–625
V. A. Bunev, V. M. Shvartsberg, V. S. Babkin, “Numerical study of the distribution of oxygen atoms in the combustion products of CO/H2/air flames”, Mendeleev Commun., 26:2 (2016), 163–165