2021
DOI: 10.1016/j.psep.2020.10.025
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An overview of catalytic conversion of CO2 into fuels and chemicals using metal organic frameworks

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Cited by 79 publications
(30 citation statements)
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“…In the present decade, carbon dioxide utilization has reached around 110 million MT (metric tons) [18]. Carbon dioxide is also playing major role in the production of urea, [17] methanol [18], salicylic-acid [19], formic-acid [20], cyclic carbonates [21][22][23], copolymers, polymer building blocks, and fine chemicals [24][25][26][27]. Urea is one of the major fertilizers, and CO 2 is the source for it [26].…”
Section: Introductionmentioning
confidence: 99%
“…In the present decade, carbon dioxide utilization has reached around 110 million MT (metric tons) [18]. Carbon dioxide is also playing major role in the production of urea, [17] methanol [18], salicylic-acid [19], formic-acid [20], cyclic carbonates [21][22][23], copolymers, polymer building blocks, and fine chemicals [24][25][26][27]. Urea is one of the major fertilizers, and CO 2 is the source for it [26].…”
Section: Introductionmentioning
confidence: 99%
“…Thinner particle border--advanced is the value of dielectric constant. Upper dielectric constant (') matters noticed at lower frequencies are also elaborated on interfacial/space polarization because of inhomogeneous dielectric configuration [16,18].…”
Section: Dielectric Constantmentioning
confidence: 99%
“…To acquire materials with the desired physical and chemical properties, the preparation of ferrite nanoparticles through different routes has become an important area of research and development. Various methods of synthesizing spinel ferrite nanoparticles have been reported, such as ball milling, a ceramic process by firing [13], coprecipitation [14,15], reverse micelles [16], hydrothermal methods [17,18], a polymeric precursor [19], sol-gel [20], microemulsions [21], laser ablation [22], a polyol method [23], sonochemical approaches [24], and aerosol method [25]. Among these strategies, co-precipitation, as well as sol-gel, is usually renowned.…”
Section: Introductionmentioning
confidence: 99%
“…For example, converting CO 2 into polyols could enable the production of more sustainable elastomers, fibers, flexible foam, adhesives, sealants, inks, paints, and coatings. Another route that can be considered is the conversion of CO 2 in valuable energy carriers such as methane, methanol, etc., which could be an attractive CCU solution while simultaneously addressing global warming and storing of hydrogen energy or renewable energy in commonly used dense energy carriers [4][5][6]. However, for all the routes and targeted products, it is important to ensure that CCU pathways deliver the three following aspects: 1) sustainable cradle-tograve solutions 2) economically viable solutions 3) scalable solutions.…”
Section: Editorial On Research Topicmentioning
confidence: 99%
“…For example, converting CO 2 into polyols could enable the production of more sustainable elastomers, fibers, flexible foam, adhesives, sealants, inks, paints, and coatings. Another route that can be considered is the conversion of CO 2 in valuable energy carriers such as methane, methanol, etc., which could be an attractive CCU solution while simultaneously addressing global warming and storing of hydrogen energy or renewable energy in commonly used dense energy carriers [4][5][6]. However, for all the routes and targeted products, it is important to ensure that CCU pathways deliver the three following aspects: 1) sustainable cradle-tograve solutions 2) economically viable solutions 3) scalable solutions.In this Research Topic, we aimed to make a picture of the knowledge of the current progress in the area of CO 2 capture and conversion techniques.In particular, Skoricova et al proposed the techno-economic assessment of the sorptionenhanced dimethyl-ether (DME) synthesis process, as an innovative way for producing fuelgrade DME from carbon dioxide and green H 2 .…”
mentioning
confidence: 99%