The Research on the Adsorptive Capability and Adsorption Isotherm of Modified Talcum Powder to Methylene Blue

Article Preview

Abstract:

The preparation conditions of modified talcum powder were investigated by discuss the effects of nitric acid mass concentration, nitric acid soak temperature, roasting temperature and roasting time on adsorption properties of methylene blue by talcum powder. Methylene blue dye, as target pollutant, exhibits difficult biochemical degradable characters. The adsorption isotherm of adsorption process was discussed by using the Langmuir isotherm model and Freundlich isotherms model. The results show that the rate of adsorption of methylene blue decreased with the increasing of roasting temperatures and nitric acid soak temperature of modificated talcum powder. The adsorption value of methylene blue of the modified talcum powder increased gradually,then decreased with the increase of roasting time. Compare with the unmodified talcum powder,the adsorption value of methylene blue of the modified talcum powder decreased when roasting temperature and roasting time is too high. With the nitric acid mass concentration increasing, the adsorption of methylene blue on the modified talcum powder increased. It is found that the adsorptive ability of modified talcum powder by HNO3 is higher than original talcum powder. The best talcum powder modified preparation condition is that nitric acid mass concentration 50%, the nitric acid soaks temperature 40°C, calcined temperature 200°C for 120 mins. The removal rate of methylene blue is 84.6% under these preparation conditions. The experimental date fitted very well with the Langmuir isotherms model.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 610-613)

Pages:

1443-1448

Citation:

Online since:

December 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Chong Sun, Junxiong Lin, Lan Wang. Journal of Zhejiang Sci-Tech University. Vol. 27(2010), pp.36-40.

Google Scholar

[2] Kang S F. Chemosphere. Vol. 41(2000), pp.1287-1294.

Google Scholar

[3] Jinquan Liu, Di Jia, Xingfang Yao. Acta Petrologica Et Mineralogica. Vol. 22(2003), pp.377-380.

Google Scholar

[4] He Yan, Xiujuan Yu, Guifen Gong. Journal of Harbin University of Science and Technology. Vol.10 (2005), pp.108-111.

Google Scholar

[5] Chunli Kang, Xiaojian Tang, Yang Wang, et al. Journal of Jilin University (Science Edition). Vol. 42(2004),pp.479-481.

Google Scholar

[6] Chunping Liu, Junshen Liu, Lin Sun, et al. Ion Exchange and Adsorption. Vol. 22(2006), pp.161-167.

Google Scholar

[7] Liuxin Fan, Zengyan Zhou. Environmental Protection. Vol. 9(2002), pp.22-23.

Google Scholar

[8] Sharma P, Kaur H, Sharma M, et al. Environ Monit Assess.Vol.183(2011),pp.151-195.

Google Scholar

[9] Yunshu Feng, Ping Li, Shuang Cui, et al. Industrial Water & Wastewater. Vol. 42(2011), pp.25-27.

Google Scholar

[10] Lin Wei. Study on the adsorption of talcum powder to adsorb the heavy iron [D]. Xi an: Chang an University, 2008. In Chinese

Google Scholar

[11] Shuchuan Peng, Shisheng Wang, Tianhu Chen, et al. Journal of the Chinese Ceramic Society. Vol.34(2006),pp.733-738.

Google Scholar

[12] Qinfu Liu, Lihua Hou, Liyun Zhang, et al. Non-Metallic Mines.Vol.31 (2008), pp.12-15.

Google Scholar

[13] Wei, Yang Lidong Wang, Sen Lin, et al. Journal of Shenyang Jianzhu University (Natural Science).Vol.23(2007), pp.1004-1008.

Google Scholar

[14] Wangqing Shen, Song Qin. Industrial Water Treatment.Vol.32(2012),pp.38-40.

Google Scholar

[15] Xianzhong Bu, Zhenhui Liu, Chonghui Zhang. Journal of Ceramics. Vol.33 (2012), pp.54-58.

Google Scholar

[16] Aijuan Yuan. Study on the Preparation of Bentonite Granules and Decoloration Performances in Wastewater Treatment [D]. Ji nan: Shandong university.2009. In Chinese

Google Scholar

[17] Zohre Shahryari, Ataallah Soltani Goharrizi, Mehdi Azadi. International Journal of Water Resources and Environmental Engineering.Vol.2 (2010), pp.16-28.

Google Scholar

[18] Nader Yousefi, Ali Fatehizadeh, Elham Azizi. Sacha Journal of Environmental Studies. Vol.1(2011), pp.81-91.

Google Scholar