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The rate coefficient, (), for the gas-phase reaction between OH radicals and acetone CHC(O)CH, has been measured using the pulsed CRESU (French acronym for Reaction Kinetics in a Uniform Supersonic Flow) technique ( = 11.7-64.4 K). The temperature dependence of ( = 10-300 K) has also been computed using a RRKM-Master equation analysis after partial revision of the potential energy surface. In agreement with previous studies we found that the reaction proceeds via initial formation of two pre-reactive complexes both leading to HO + CHC(O)CH by H-abstraction tunneling. The experimental () was found to increase as temperature was lowered. The measured values have been found to be several orders of magnitude higher than (300 K). This trend is reproduced by calculations, with a special good agreement with experiments below 25 K. The effect of total gas density on () has been explored. Experimentally, no pressure dependence of (20 K) and (64 K) was observed, while (50 K) at the largest gas density 4.47×10 cm is twice higher than the average values found at lower densities. The computed () is also reported for 10 cm of He (representative of the interstellar medium). The predicted rate coefficients at 10 K surround the experimental value which appears to be very close to the low pressure regime prevailing in the interstellar medium. For gas-phase model chemistry of interstellar molecular clouds, we suggest using the calculated value of 1.8×10 cm molecule s at 10 K and the reaction products are water and CHC(O)CH radicals.
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http://dx.doi.org/10.1021/acsearthspacechem.9b00144 | DOI Listing |
Management of building materials' stocks and flows is a major opportunity for circularity and de-carbonization. We examine the relationship between material consumption and associated greenhouse gas (GHG) emissions under different scenarios in Israel, a developed country with an already high population density that expects tremendous growth in its housing stock by 2050. We created scenarios of varying housing unit sizes and additional material efficiency practices: fabrication yield, lifetime extension, material substitution, recycling, and their combination, resulting in 18 scenarios.
View Article and Find Full Text PDFJ Hazard Mater
December 2024
NEST Lab., Department of Chemistry, College of Science, Shanghai University, 99 Shangda Road, Shanghai 200444, China. Electronic address:
It is well known that metals and metal oxides with different crystal facets exhibit varying sensitivity in gas sensors, but this strategy is rarely used in metal-organic frameworks (MOFs). Herein, we proved for the first time that Cu metal-organic with high energy crystal facets (Cu-MOF-74-300) shows a much higher sensitivity than the low energy crystal facets (Cu-MOF-74-110), with a up to 2 times response more than Cu-MOF-74-110 and ultra-low limit of detection (LOD) of 68 ppb to toluene vapors. In addition, this strategy was further demonstrated on MOF-14 and HKUST-1, which are also Cu-centered and exhibit clear recognition effects on benzene and xylene, respectively.
View Article and Find Full Text PDFJ Phys Chem C Nanomater Interfaces
December 2024
Instituto IMDEA Nanociencia, Calle Faraday 9, 28049 Madrid, Spain.
Graphene adsorbed on Ru(0001) has been widely used as a template for adsorbing and isolating molecules, assembling organic-molecule structures with desired geometric and electronic properties and even inducing chemical reactions that are challenging to achieve in the gas phase. To fully exploit the potential of this substrate, for example, by being able to tune a graphene-based catalyst to perform optimally under specific conditions, it is crucial to understand the factors and mechanisms governing the molecule-substrate interaction. To contribute to this effort, we have conducted a combined experimental and theoretical study of the adsorption of cyanomethyl radicals (-CHCN) on this substrate below room temperature by performing scanning tunneling microscopy experiments and density functional theory simulations.
View Article and Find Full Text PDFHeliyon
December 2024
Department of Energy, Gas and Petroleum Engineering, Kenyatta University, P. O. Box 43844 00100, Nairobi, Kenya.
Utilization of loose waste biomass such as charcoal dust remains popular in low-to mid-income countries due to increased energy demands, poverty and heighten efforts to mitigate climate change. This study sought to investigate the effects of starch, paper and algae binders on the physical, mechanical and combustion characteristics and emission levels of manually-made acacia charcoal dust briquettes. Acacia charcoal dust is collected and mixed with different binders at binder proportions of 10 %, 15 %, 20 %, 25 % and 30 % of the total weight for individual samples.
View Article and Find Full Text PDFHeliyon
December 2024
School of Geology, Aristotle University of Thessaloniki, 54124, Thessaloniki, Greece.
The final disposal of corpses is one of the activities that generates the greatest pollution. Chemicals, embalming fluids, greenhouse gas emissions, and other factors trigger contamination of soils and water sources in towns near cemeteries. This study aimed to validate empirical environmental equations to determine the suitability of territories for cemetery location in several cantons of Central Ecuador, address study variables measured in the field, and update the bibliography as a rapid decision-making tool for decentralized governments.
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