High-Density Nanoporous carbon materials as storage material for Methane: A value-added solution; Chemical Engineering Journal; Vol. 433

Podrobná bibliografie
Parent link:Chemical Engineering Journal
Vol. 433.— 2022.— [134608, 10 p.]
Korporativní autor: Национальный исследовательский Томский политехнический университет Исследовательская школа химических и биомедицинских технологий
Další autoři: Memetova A. Anastasia, Tyagi I. Inderjeet, Rao K. R. Karri Rama, Memetov N. Nariman, Zelenin A. Andrey, Stolyarov R. Roman, Bogoslovsky (Bogoslovskiy) V. Vladimir
Shrnutí:Title screen
Nanoporous carbon materials (NCMs) were widely used as commercial adsorbents, due to their salient features like high specific surface area and a significant volume of micropores. The present research work considers the conversion of a mixture of compounds (furfural, hydroquinone, and urotropine) into a NCM, with properties suitable for adsorption and gas storage applications, through alkaline activation. The developed NCM have high surface area of ~ 2722 m2/g with a pore volume of 1.08 cm3/g i.e. ~ 80 % pores representing narrow micropores. Further, the density of the NCM is also a decisive parameter for the applications, in particular, methane (CH4) storage. Moreover, the powdered NCM was compacted 2.5 times (to get a monolith NCM) with a slight change in the texture properties. The synthesized adsorbents were tested for the CH4 adsorption, and they showed very good characteristics. Results obtained revealed that, the highest CH4 adsorption capacity value, equal to ~ 14.3 mmol/g at 10 MPa and 298 K, was achieved on the powdered NCM which after the compaction, to the monolith NCM decreases to ~ 13.3 mmol/g at the same pressure. Moreover, the highest bulk methane adsorption capacity value was 336 cm3/cm3 which was achieved at 10 MPa and 298 K for the monolith NCM. Thus, this adsorbent with excellent CH4 adsorption characteristics can be used in the adsorbed natural gas (ANG) technology to enhance the energy storage and improve the efficiency.
Режим доступа: по договору с организацией-держателем ресурса
Jazyk:angličtina
Vydáno: 2022
Témata:
On-line přístup:https://doi.org/10.1016/j.cej.2022.134608
Médium: MixedMaterials Elektronický zdroj Kapitola
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=669210

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200 1 |a High-Density Nanoporous carbon materials as storage material for Methane: A value-added solution  |f A. Memetova, I. Tyagi, K. R. Rao [et al.] 
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330 |a Nanoporous carbon materials (NCMs) were widely used as commercial adsorbents, due to their salient features like high specific surface area and a significant volume of micropores. The present research work considers the conversion of a mixture of compounds (furfural, hydroquinone, and urotropine) into a NCM, with properties suitable for adsorption and gas storage applications, through alkaline activation. The developed NCM have high surface area of ~ 2722 m2/g with a pore volume of 1.08 cm3/g i.e. ~ 80 % pores representing narrow micropores. Further, the density of the NCM is also a decisive parameter for the applications, in particular, methane (CH4) storage. Moreover, the powdered NCM was compacted 2.5 times (to get a monolith NCM) with a slight change in the texture properties. The synthesized adsorbents were tested for the CH4 adsorption, and they showed very good characteristics. Results obtained revealed that, the highest CH4 adsorption capacity value, equal to ~ 14.3 mmol/g at 10 MPa and 298 K, was achieved on the powdered NCM which after the compaction, to the monolith NCM decreases to ~ 13.3 mmol/g at the same pressure. Moreover, the highest bulk methane adsorption capacity value was 336 cm3/cm3 which was achieved at 10 MPa and 298 K for the monolith NCM. Thus, this adsorbent with excellent CH4 adsorption characteristics can be used in the adsorbed natural gas (ANG) technology to enhance the energy storage and improve the efficiency. 
333 |a Режим доступа: по договору с организацией-держателем ресурса 
461 |t Chemical Engineering Journal 
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610 1 |a монолиты 
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701 1 |a Memetova  |b A.  |g Anastasia 
701 1 |a Tyagi  |b I.  |g Inderjeet 
701 1 |a Rao  |b K. R.  |g Karri Rama 
701 1 |a Memetov  |b N.  |g Nariman 
701 1 |a Zelenin  |b A.  |g Andrey 
701 1 |a Stolyarov  |b R.  |g Roman 
701 1 |a Bogoslovsky (Bogoslovskiy)  |b V.  |c specialist in biotechnology  |c engineer of Tomsk Polytechnic University  |f 1995-  |g Vladimir  |3 (RuTPU)RU\TPU\pers\47402 
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