Porosity and sorption properties of activated carbons prepared from anthracite by steam-air activation

2006 ◽  
Vol 79 (4) ◽  
pp. 555-558 ◽  
Author(s):  
N. V. Sych ◽  
N. T. Kartel’ ◽  
N. N. Tsyba ◽  
V. V. Strelko ◽  
A. D. Nikolaichuk ◽  
...  
Adsorption ◽  
2012 ◽  
Vol 19 (2-4) ◽  
pp. 273-281 ◽  
Author(s):  
Justyna Kaźmierczak ◽  
Piotr Nowicki ◽  
Robert Pietrzak

2016 ◽  
Vol 19 (3) ◽  
pp. 341-352
Author(s):  
Piotr Nowicki ◽  
◽  
Justyna Kaźmierczak-Raźna ◽  
Robert Pietrzak

2019 ◽  
Vol 371 ◽  
pp. 821-832 ◽  
Author(s):  
Vu Tung Lam Tran ◽  
Patrick Gélin ◽  
Corinne Ferronato ◽  
Pascale Mascunan ◽  
Vladislav Rac ◽  
...  

2020 ◽  
pp. 289-296
Author(s):  
Evgeniya Vladimirovna Veprikova ◽  
Ivan Petrovich Ivanov

The dates about effect of temperature of carbonizats obtaining from pine bark on evolution of a porous structure and sorption properties of the activated carbons, synthesized by the method of thermoalkaline activation in the presence of КОН were presented. It was determined, that for preparation of activated carbons with the greatest specific surface (1421 and 1655 m2/g) and micropores volume (0.58 и 0.71 sm3/g) pine bark carbonizats reasonable to obtain at temperature 300 and 400 °С correspondingly. The correlation of a iodine sorption with volume of micropores width 0.73–3.0 nm (R2=0.964) and a methylene blue sorption with volume of micropores width 0.84–2.0 nm (R2=0.995), which present in the activated carbons structure, was established. It was shown, that low capacity of the activated carbons to vitamin B12 sorption determine by low mesopores volume with width ≥5 nm (no more than 0.0014 sm3/g). It was shown, that the activated carbon based on carbonizat obtained at 400 °С demonstrates a maximal sorption capacity to a iodine and a methylene blue (1.57 g/g и 697.1 mg/g correspondingly), that in 1.4 and 2.7 times exceeds the dates of an industrial activated carbon for medical purposes.


Author(s):  
A.M. Youssef ◽  
Th. El-Nabarawy ◽  
S.E. Samra

2019 ◽  
Vol 6 (7) ◽  
pp. 190579 ◽  
Author(s):  
Altaf H. Basta ◽  
Vivian F. Lotfy ◽  
Philippe Trens

To recommend the beneficial effect of the pulping process on enhancing agro-wastes as precursors for the production of high-performance activated carbons (ACs), different pulping methods (alkali, sulfite and neutral sulfite) were applied on two available Egyptian agriculture by-products (rice straw and sugar cane bagasse), using the one-step pyrolysis method and H 3 PO 4 activating agent. The adsorption performance of the different prepared ACs was evaluated in terms of Iodine Numbers and their sorption properties for removing the methylene blue (MB) from aqueous solutions. The corresponding sorption processes were also analysed using Lagergren first order, pseudo-second order and intraparticle diffusion models. Data revealed that the applied pulping conditions were effective for removing the non-cellulosic constituents of agro-residues. This was demonstrated by the hydrogen/carbon and oxygen/carbon ratios, thermal stability and IR-measurements of the final pulps. These data were effective on the particular sorption properties of RS and SCB-based ACs. Interestingly, the pulping process is a profound modification of the SCB-based fibres, on which it induced a clear increase of the specific surface areas of the corresponding ACs even though they had an impact on the sorption of MB and iodine. These values are superior to the reported data on agro-based ACs with H 3 PO 4 activators. Pulping processes therefore play a dual role in the sorption properties of ACs. The first important role is the impact on the specific surface areas and the second impact is a profound modification of the surface chemistry of the ACs. Therefore, SCB-based ACs can be seen as an economical breakthrough product, and an alternative to the high-cost commercial ACs for the purification of industrial wastewaters.


2014 ◽  
Vol 45 (4) ◽  
pp. 1937-1946 ◽  
Author(s):  
Antoine Venault ◽  
Mohamed C. Ncibi ◽  
Céline Pochat-Bohatier ◽  
Laurent Vachoud ◽  
Denis Bouyer ◽  
...  

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