2023
DOI: 10.1016/j.jcou.2022.102353
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MXene based activated carbon novel nano-sandwich for efficient CO2 adsorption in fixed-bed column

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Cited by 17 publications
(7 citation statements)
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“…(x) Fabrication of a large amount of MXene nanomaterials 99 as well as scalable film synthesis 389 are required in order to use MXene nanomaterials in membrane or adsorption technologies, which bring the investigation of etching and delaminating processes for the large quantities. (xi) In addition to the lab-scale measurements, the performance of MXene membranes and adsorbents should be conducted in a real industrial process 390 with a real feed stream composition 371 and under practical conditions. For each separation application, that kind of investigation is very rare.…”
Section: Summary and Perspectivesmentioning
confidence: 99%
“…(x) Fabrication of a large amount of MXene nanomaterials 99 as well as scalable film synthesis 389 are required in order to use MXene nanomaterials in membrane or adsorption technologies, which bring the investigation of etching and delaminating processes for the large quantities. (xi) In addition to the lab-scale measurements, the performance of MXene membranes and adsorbents should be conducted in a real industrial process 390 with a real feed stream composition 371 and under practical conditions. For each separation application, that kind of investigation is very rare.…”
Section: Summary and Perspectivesmentioning
confidence: 99%
“…It can be observed (Figure A) that the composite material responds immediately to the addition of glucose starting from 1 μM (inset of Figure B). Before the subsequent addition of glucose, the current reaches a steady state after three seconds, representing the formation of gluconolactone due to the fast electrocatalytic activity of the composite material . After each addition of glucose, the system again reached a steady state.…”
Section: Resultsmentioning
confidence: 99%
“…The peaks appearing at 2θ values of 29.7° (110), 36.8° (111), 42.3° (200), 61.3° (220), and 73.5° (311) belong to cubic Cu 2 O and well match with JCPDS card no. 05-0667. , …”
Section: Resultsmentioning
confidence: 99%
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“…Individual carbon nanomaterials (carbon nanotubes, graphene, and so on) were tested for CO 2 capture, and their special thermal, mechanical, electrical, and chemical properties resulted in higher efficiencies [466]. The carbon nanomaterials for CO 2 capture are described in Table S4 [467][468][469][470][471][472][473]. Graphene oxide-decorated biobased chitosan hybrid aerogels captured CO 2 in the range of 1.92 to 4.14 mmol/g with high stability [468].…”
Section: Graphenementioning
confidence: 99%