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The utilization of Mg–O–F prepared from Mg (OH) 2 mixed with different wt % of F in the form of (NH 4 F·HF), calcined at 400 and 500 °C, for efficient capture of CO 2 is studied herein in a dynamic mode.
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Article Recommendations. ABSTRACT: The utilization of Mg−O−F...
- PDF 6Mb
Article Recommendations. ABSTRACT: The utilization of Mg−O−F prepared from Mg(OH)2 mixed with diferent wt % of F in the form of (NH4F·HF), calcined at 400 and 500 °C, for eficient capture of CO2 is studied herein in a dynamic mode.
1 Οκτ 2021 · Highlights. •. Weak chemical adsorption of CO 2 molecule on MgO surface is significantly increased by the presence of H 2 O. •. Defects formed by dehydration dramatically improved CO 2 adsorption on Mg (OH) 2 surface with formation of carbonate-like structure. •.
1 Σεπ 2014 · 1. Introduction. Although the modern transport represents a vital part of the global economy, it is also a significant source of gaseous pollutants with approximately 13 wt% of overall greenhouse gas and 25 wt% of CO 2 emissions from the fossil fuel combustion (Fig. 1) [1].
4 Φεβ 2021 · One of the most promising materials for carbon mineralization is Mg(OH)2 which is highly reactive and capable of forming stable carbonates.
29 Αυγ 2014 · Abstract. Precombustion CO 2 separation is considered to be the most efficient method of carbon removal for fossil fuels. Solid sorbents are promising for CO 2 separation because of lower sensible heats, higher CO 2 sorption capacities, and favorable adsorption/desorption temperatures.
3 Ιουλ 2020 · To avoid dangerous climate change, new technologies must remove billions of tonnes of CO 2 from the atmosphere every year by mid-century. Here we detail a land-based enhanced weathering cycle...