Preparation and Characterization of Carbon Foam Derived from Fine Coal and Phenolic Resin

https://doi.org/10.22146/ijc.21138

Dodi Irwandi(1), Zainal Alim Mas’ud(2*), Komar Sutriah(3), Muhammad Khotib(4)

(1) Department of Chemistry, Faculty of Mathematic and Natural Sciences, Bogor Agricultural University, Darmaga Campus, Kimia Building, Tanjung Street, Bogor 16680 Health Polytechnic of Ministry of Health Jakarta II, Jl. Hang Jebat III Blok F3 Kebayoran Baru Jakarta Selatan 12120
(2) Department of Chemistry, Faculty of Mathematic and Natural Sciences, Bogor Agricultural University, Darmaga Campus, Kimia Building, Tanjung Street, Bogor 16680
(3) Department of Chemistry, Faculty of Mathematic and Natural Sciences, Bogor Agricultural University, Darmaga Campus, Kimia Building, Tanjung Street, Bogor 16680
(4) Department of Chemistry, Faculty of Mathematic and Natural Sciences, Bogor Agricultural University, Darmaga Campus, Kimia Building, Tanjung Street, Bogor 16680
(*) Corresponding Author

Abstract


Carbon foam from fine coal and phenolic resin mixture had been prepared by heating in nitrogen atmosphere. The composition of fine coal in a mixture was 30, 35, 40, 45 and 50%. Physical and mechanical characters of carbon foam that were determined from each of these compositions were density, porosity, compressive strength, and oxidation resistance and thermal insulation. Microstructure was observed by scanning electron microscope (SEM). Thermal insulation was tested using an insulation index approach with Styrofoam for comparison. The result showed that the density and compressive strength were proportional to the composition, otherwise, the porosity. Oxidation resistance that was up to 45% composition still showed proportional value. Microstructure observations showed an irregular distribution of pore and uninform diameter. Insulation index of 34 to 50 °C showed almost the same values of all compositions and greater than styrofoam up to 50-150% which mean carbon foam had a better thermal insulation properties than styrofoam.

Keywords


carbon foam; thermal insulation; insulation index; fine coal; phenolic resin

Full Text:

Full Text Pdf


References

[1] IEA - International Energy Agency Clean Coal Centre, 2011, Opportunities for fine coal utilisation, http:// www.iea-coal.org.uk.

[2] Valdés, A.F., and Garcia, A.B., 2006, Fuel, 85 (5-6), 607–614.

[3] Barraza, J., Guerrero, J., and Pineres, J., 2013, Fuel Process. Technol., 106, 498–500.

[4] Lestiani, D.D., Muhayatun, and Adventini, N., 2010, Jurnal Sains dan Teknologi Nuklir Indonesia, 11 (1), 27–33.

[5] Han, O.H., Kim, M.K., Kim, B.G., Subasinghe, N., and Park, C.H., 2014, Fuel Process. Technol., 126, 49–59.

[6] Uslu, T., Sahinoglu, E., and Yavuz, M., 2012, Fuel Process. Technol., 101, 94–100.

[7] Wu, X., Liu, Y., Fang, M., Mei, L., and Luo, B., 2011, Carbon, 49 (5), 1782–1786.

[8] Chen, C., Kennel, E.B., Stiller, A.H., Stansberry, P.G., and Zondlo, J.W., 2006, Carbon, 44 (8), 1535–1543.

[9] Baran, D., Yardim, M.F., Atakül, H., and Ekinci, E., 2013, New Carbon Mater., 28 (2), 127–133.

[10] Liu, H., Li, T., Wang, X., Zhang, W., and Zhao, T., 2014, J. Anal. Appl. Pyrolysis, 110, 442–447.

[11] Farhan, S., Wang, R.M., Jiang, H., and Ul-Haq, N., 2014, J. Anal. Appl. Pyrolysis, 110, 229–234.

[12] Ford, W.D., 1964, US Patent, US3121050.

[13] Wang, X., Zhong, J., Wang, Y., and Yu, M., 2006, Carbon, 44 (8), 1560–1564.

[14] Rogers, D.K., and Plucinski, J.W., 2003, US Patent, US6656238 B1.

[15] Calvo, M., García, R., and Moinelo, S.R., 2008, Energy Fuels, 22 (5), 3376–3383.

[16] Manocha, S.M., Patel, K., and Manocha, L.M., 2010, Indian J. Eng. Mater. Sci., 17, 338–342.

[17] Rogers, D.K., Plucinski, J.W., and Dale, G., 2009, US Patent, US7544222 B2.

[18] Wang, Y., Min, Z., Cao, M., and Xu, D., 2009, New Carbon Mater., 24 (4), 321–326.

[19] Min, Z., Cao, M., Zhang, S., Wang, X., and Wang, Y., 2007, New Carbon Mater., 22 (1), 75–79.

[20] Smith, D.S., Alzina, A., Bourret, J., Nait-Ali, B., Pennec, F., Tessier-Doyen, N., Otsu, K., Matsubara, H., Elser, P., and Gozenbach, U.T., 2013, J. Mater. Res., 28 (17), 2260–2272.



DOI: https://doi.org/10.22146/ijc.21138

Article Metrics

Abstract views : 2393 | views : 2498


Copyright (c) 2016 Indonesian Journal of Chemistry

Creative Commons License
This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.

 


Indonesian Journal of Chemistry (ISSN 1411-9420 /e-ISSN 2460-1578) - Chemistry Department, Universitas Gadjah Mada, Indonesia.

Web
Analytics View The Statistics of Indones. J. Chem.