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HCN in the gas form is considered as a primary nitrogen source for the synthesis of prebiotic molecules in extraterrestrial environments. Nevertheless, the research mainly focused on the reactivity of HCN and its derivatives in aqueous systems, often using external high-energy supply in the form of cosmic rays or high energy photons. Very few studies have been devoted to the chemistry of HCN in the gas phase or at the gas/solid interphase, although they represent the more common scenarios in the outer space. In this paper we report about the reactivity of highly pure HCN in the 150-300 K range at the surface of amorphous and crystalline MgSiO (forsterite olivine), of solids among the constituents of the core of cosmic dust particles, comets, and meteorites. Amorphous silica and MgO were also studied as model representatives of MgSiO structural building blocks. IR spectroscopic results and the HR-MS analysis of the reaction products revealed MgO acid/base pairs at the surface of MgSiO and MgO to be key in promoting the formation of HCN oligomers along with imidazole and purine compounds, already under very mild temperature and HCN pressure conditions, in the absence of external energetic triggers. Products include adenine nucleobase, a result which supports the hypothesis that prebiotic molecular building blocks can be easily formed through surface catalytic processes in the absence of high-energy supply.
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http://dx.doi.org/10.1039/d1cp05407d | DOI Listing |
Bioresour Technol
August 2025
South China Institute of Environmental Sciences, MEE, Guangzhou 510655 Guangdong, China; Key Laboratory of Water Environment Simulation and Pollution Control, Ministry of Ecology and Environment, Guangzhou 510655, China. Electronic address:
With the rapid growth of large-scale livestock farming in China, the safe disposal and resource utilization of anaerobic biogas residue (BR) have become critical challenges. This study systematically investigated the temperature-dependent (400-700 °C) transformation of piggery biogas residue pyrolysis products (biochar, tar/wood vinegar, pyrolysis gases) and their environmental risks. Results show that pyrolysis temperature significantly affects product distribution and properties: At 600 °C, biochar exhibits the maximum specific surface area (38.
View Article and Find Full Text PDFJ Mol Model
August 2025
Faculty of Information Technology and Center for Computational Science, Hanoi National University of Education, Hanoi, Vietnam.
Context: The reaction between HCNO and CH is of relevance in environments such as combustion and atmospheric chemistry, where both species are known to coexist. In this study, we report the reaction mechanism and kinetics of their gas-phase reaction. The reaction proceeds via the addition of CH to the carbon atom of HCNO, forming a pre-reaction complex (COMP) and a low-lying transition state (T0/1) that leads to a key intermediate (IS1).
View Article and Find Full Text PDFRSC Adv
July 2025
Department of Electrical and Electronic Engineering, Khulna University of Engineering & Technology Khulna-9203 Bangladesh
In this study, the electronic, optical, and magnetic characteristics of a two-dimensional Janus BSeTe monolayer, along with its potential for gas sensing applications, were examined using DFT and COMSOL simulations. The interaction and sensing capabilities of various gas molecules, including CO, CO, NH, SO, HS, HCN, CH, and NO on the BSeTe surface were systematically analyzed. Upon geometric optimization, a substantial enhancement in conductivity was observed, increasing by factors of 3.
View Article and Find Full Text PDFInorg Chem
July 2025
Department of Molecular Chemistry and Biochemistry, Faculty of Science and Engineering, Doshisha University, 1-3 Tatara Miyakodani, Kyotanabe-city, Kyoto610-0321, Japan.
-Tetraphenylporphyrin Fe(II/III) complexes encapsulated in a cyclodextrin (CD) dimer with pyridine (P) or imidazole (I) ligands have been developed as synthetic heme models in water. Here, the binding of nitric oxide (NO) to the models (hemoCD-P and hemoCD-I) was investigated. The introduction of NO gas into the hemoCD complexes formed stable ferric and ferrous NO adducts.
View Article and Find Full Text PDFJ Environ Manage
August 2025
Department of Chemical and Biological Engineering, Monash University, Wellington Road, Clayton, Melbourne, Victoria, 3800, Australia. Electronic address:
The emission of hydrogen cyanide (HCN) from the industrial fluid catalytic cracking (FCC) catalyst regenerator is a concerning pollutant that is highly toxic. Yet, the underpinning rationale particularly the role of carbon dioxide (CO) and its competition with O, remains poorly understood. Through the tests of three industrial spent FCC catalysts via temperature-programmed oxidation and Chemkin simulation, this study revealed a dual role of CO in the transformation of HCN.
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