2017
DOI: 10.1080/17597269.2017.1306680
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Comparative studies of CO2 capture using acid and base modified activated carbon from sugarcane bagasse

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Cited by 38 publications
(24 citation statements)
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“…[8] Food residues that are commonly used as carbon precursorsi nclude bagasse, corncob, coffee grounds, celtuce leaves, yeast, and fungi. [128][129][130] Boonpokee tal. [127] Bagasse is the fibrous residue that remains after extraction of juice from the crushed stalks of sugarcane, with a yield of 425 million per year,a nd is often used fort he preparation of activated carbon.T his has been studied for the treatment of landfill leachate, adsorption of heavy metals from water,a nd the capture of CO 2 .…”
Section: Food Residuesmentioning
confidence: 99%
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“…[8] Food residues that are commonly used as carbon precursorsi nclude bagasse, corncob, coffee grounds, celtuce leaves, yeast, and fungi. [128][129][130] Boonpokee tal. [127] Bagasse is the fibrous residue that remains after extraction of juice from the crushed stalks of sugarcane, with a yield of 425 million per year,a nd is often used fort he preparation of activated carbon.T his has been studied for the treatment of landfill leachate, adsorption of heavy metals from water,a nd the capture of CO 2 .…”
Section: Food Residuesmentioning
confidence: 99%
“…PEI, MEA, and aniline (ANL) with loading ratios of 5, 25, and 50 wt %w ere used to modify the surface of BAC by means of aw et impregnation method. [128] The CO 2 adsorption rates of the unmodified (UMAC), acid-modified (AMAC), and base-modified activated carbon (BMAC) wered etermined. Howev- Figure 4.…”
Section: Food Residuesmentioning
confidence: 99%
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“…The mass ratio and activation temperature can be said to be optimal if it produces carbon with a high surface area and micropore distribution and of course produces a high adsorption capacity. This is because micropore is one of the most important factors in the gas adsorption process, so it is very important to produce adsorbent material with a high level of proosity (micropore) [26]. In the previous study, activated carbon prepared from rice husk ash and activated using KOH with a mass ratio of KOH / C 3: 1 at 750°C had a surface area of 1935.8 m 2 /g, micropore volume of 0.807 cm 3 /g and gas adsorption capacity CO2 is 22.2% by weight at 30°C and a pressure of 1 bar [25].…”
Section: A Synthesis Of Sbac and Sbacnmentioning
confidence: 99%