Journal of Industrial and Engineering Chemistry, Vol.105, 63-73, January, 2022
A novel conversion for blast furnace slag (BFS) to the synthesis of hydroxyapatite-zeolite material and its evaluation of adsorption properties
E-mail:
Blast furnace slag (BFS), as a byproduct from manufacturing iron, served as a cost-effective raw material for preparation of hydroxyapatite-zeolite composite material (HAP-ZE); this research introduces a way of synthesizing hydroxyapatite-zeolite composite material (HAP-ZE) using BFS with alkaline fusion and hydrothermal treatment. According to analysis with XRD, FT-IR, BET, ICP, FE-SEM, EDX and elemental mapping, the major phases in the HAP-ZE composite material synthesized under the most desirable conditions (at aging time of 6 h and at Ca/P ratio (starting gel) = 1.67) were identified to be zeolite and HAP with molar ratio of Ca/P = 1.61, Si/Al = 1.31, Na/Al = 1.75 and with a mean surface area of 44.22 m2.g-1. Moreover, the research found that the minor metals (Mg, Fe, K, etc.) generated from BFS have little influence on the synthesis of HAP-ZE. The thus obtained HAP-ZE material has a great adsorption performance in removing Mn2+, NH4 + and phosphate ions mixed in water, on grounds of the higher ion-exchange capacities and abundantly existing Ca2+ ions in HAP-ZE structure. This novel process makes synthesizing HAPZE composite material from BFS possible and lays a great foundation for effective application of BFS.
- Kuwahara Y, Ohmichi T, Kamegawa T, Mori K, Yamashita H, J. Mater. Chem., 20, 5052 (2010)
- Ren QQ, Zhang YZ, Long Y, Zou ZS, Pei JJ, Ceram. Int., 44, 11628 (2018)
- Harish ML, Narendra H, Afzal MA, J. Comput. Theor. Nanos., 17, 4304 (2020)
- Han D, Kim JH, Han M, Yi ST, KSCE J. Civ. Eng., 24, 902 (2020)
- Lee T, Kim S, Park SG, Materials, 13, 4620 (2020)
- Kuwahara Y, Tamagawa S, Fujitani T, Yamashita H, B. Chem, Soc. Jpn., 89, 472 (2016)
- Oguz E, J. Hazard. Mater., 114(1-3), 131 (2004)
- Yamaguchi S, Hongo T, Environ. Sci. Pollut. R., 20, 1 (2020)
- Tian P, Dong HW, Wu XM, Huo LQ, Xue YK, Energ. Metall. Ind., 39, 9 (2020)
- Czuma N, Katarzyna Z, Motak M, Galvez ME, Costa PD, Fuel, 267 (2020)
- Shawabkeh R, Al-Harahsheh A, Hami M, Khlaifat A, Fuel, 83(7-8), 981 (2004)
- Kordatos K, Gavela S, Ntziouni A, Pistiolas KN, Kyritsi A, Kasselouri-Rigopoulou V, Microporous Mesoporous Mater., 115, 189 (2008)
- Belviso C, Perchiazzi N, Cavalcante F, Ind. Eng. Chem. Res., 58(44), 20472 (2019)
- Belviso C, Abdolrahimi M, Peddis D, et al., Microporous Mesoporous Mater., 319 (2021)
- Belviso C, Piancastelli A, Sturini M, Belviso S, Microporous Mesoporous Mater., 299 (2020)
- Li XY, Jian Y, Liu XQ, Shi LY, Zhang DY, Su LB, Acs. Sustainable. Chem. Eng., 5, 6124 (2017)
- Anuwattana R, Balkus KJ, Asavapisit S, Khummongkol P, Microporous Mesoporous Mater., 111, 260 (2008)
- Li CX, Zhong H, Wang S, Xue JR, Zhang ZY, Colloids Surf. A: Physicochem. Eng. Asp., 470, 258 (2015)
- Novembre D, Sabatino BD, Gimeno D, Garcia-Valles M, Martinez-Manent S, Microporous Mesoporous Mater., 75, 1 (2004)
- Lee CH, Lee MG, J. Environ. Sci. Int., 27, 1215 (2018)
- Kuwahara Y, Ohmichi T, Mori K, Katayama I, Yamashita H, J. Mater. Sci., 43(7), 2407 (2008)
- Sugano Y, Sahara R, Murakami T, Narushima T, Iguchi Y, Ouchi C, ISIJ Int., 45, 937 (2006)
- Zhao HY, Releken YS, Xia YY, Han XW, Zhang C, Wang WJ, Sci. Adv. Mater., 12, 124 (2020)
- Zawisza K, Sobierajska P, Nowak N, Kedziora A, Korzekwa K, Pozniak B, Tikhomirov M, Miller J, Mrowczynska L, Wiglusz RJ, Mat. Sci. Eng., 106, 1 (2020)
- Bouiahya K, Oulguidoum A, Laghzizil A, Shalabi M, Nunzi JM, Colloids Surf. A: Physicochem. Eng. Asp., 595 (2020)
- Smiciklas I, Dimovic S, Plecas I, Mitric M, Water. Res., 40, 2267 (2006)
- Zhang DY, Luo HM, Zheng LW, Wang KJ, Li HX, Wang Y, Feng HX, J. Hazard. Mater., 241, 418 (2012)
- Zendehdel M, Shoshtari-Yeganeh B, Khanmohamadi H, Cruciani G, Process. Saf. Environ., 109, 172 (2017)
- Zendehdel M, Shoshtari-Yeganeh B, Cruciani G, J. Iran. Chem. Soc., 13, 1915 (2016)
- Iqbal N, Abdul Kadir MR, Mahmood NHB, et al., Ceram. Int., 40, 16091 (2014)
- Kuwahara Y, Ohmichi T, Kamegawa T, Mori K, Yamashita H, Chem. Lett., 38(6), 626 (2009)
- Watanabe Y, Yamada H, Ikoma T, Tanaka J, Stevens GW, Komatsu Y, J. Chem. Technol. Biot., 89, 963 (2014)
- Zhang ML, Zhang HY, Xu D, Han L, Niu DX, Zhang LY, Wu WS, Tian BH, Desalination, 277(1-3), 46 (2011)
- Wu DY, Sul Y, Chen XC, He SB, Wang X, Kong H, Fuel, 87(10-11), 2194 (2008)
- Young RA(Ed.), Oxford: International Union of Crystallography/Oxford University Press, 1993.
- Clews CJB, Maslen EN, Rietveld HM, Sabine TH, Nature, 192, 154 (1961)
- Rietveld HM, Ph. D. Thesis, Univ. of Western Australia, 1963.
- Rietveld HM, Acta Cryst., 20, 508 (1966)
- Rietveld HM, Acta Cryst., 22, 151 (1967)
- Rietveld HM, J. Appl. Cryst., 2, 65 (1969)
- Stork L, Muller P, Dronskowski R, Ortlepp JR, Z. Krist.-Cryst. Mater., 220, 201 (2005)
- Cartlidge S, Meier WM, Zeolites, 4, 218 (1984)
- Kuwahara Y, Ohmichi T, Kamegawa T, Mori K, Yamashita H, J. Mater. Chem., 19, 7263 (2009)
- Murakami T, Sugano Y, Narushima Y, Iguchi Y, Ouchi C, ISIJ Int., 51, 901 (2011)
- Cundy CS, Cox PA, Chem. Rev., 103(3), 663 (2003)
- Ryu GU, Kim GM, Khalid HR, Materials, 12, 2131 (2019)
- Aminian A, Solati-Hashjin M, Samadikuchaksaraei A, Bakhshi F, Gorjipour F, Farzadi A, Moztarzadeh F, Schmucker M, Ceram. Int., 37, 1219 (2011)
- Sofronia AM, Baies R, Anghel EM, Marinescu CA, Tanasescu S, Mat. Sci. Eng. C, 43, 153 (2014)
- Alshemary AZ, Akram M, Goh YF, Tariq U, Butt FK, Abdolahi A, Hussain R, Ceram. Int., 41, 11886 (2015)
- Alfaro S, Rodriguez C, Valenzuela MA, Bosch P, Mater. Lett., 61, 4655 (2007)
- Alkan M, Hopa C, Yilmaz Z, Guler H, Microporous Mesoporous Mater., 86, 176 (2005)
- Mohamed RM, Ismail AA, Kini G, Ibrahim IA, Koopman B, Colloids Surf. A: Physicochem. Eng. Asp., 348, 87 (2009)
- Driessens FCM, Boltong MG, Maeyer EAPD, Wenz R, Nies B, Planell JA, Biomaterials, 23, 4011 (2002)
- Kim SR, Lee JH, Kim YT, Riu DH, Jung SJ, Lee YJ, Chung SC, Kim YH, Biomaterials, 24, 1389 (2003)
- Kazemian H, Naghdali Z, Kashani TG, Farhadi F, Adv. Powder. Technol., 21, 279 (2010)
- Karadag D, Koc Y, Turan M, Armagan B, J. Hazard. Mater., 136(3), 604 (2006)
- Alshameri A, Yan CJ, Al-Ani Y, Dawood AS, Ibrahim A, Zhou C, Wang H, J. Taiwan. Inst. Chem. Eng., 45, 554 (2014)
- He Y, Lin H, Dong Y, Liu Q, Wang L, Chemosphere, 164, 387 (2016)
- Guo T, Yang H, Liu Q, Gu H, Wang N, Yu W, Dai Y, Water Sci. Technol., 2017, 570 (2018)
- Karadag D, Koc Y, Turan M, Ozturk M, J. Hazard. Mater., 144(1-2), 432 (2007)
- Mazloomi F, Jalali M, J. Environ. Chem. Eng., 4, 240 (2015)
- Abollino O, Aceto M, Malandrino M, Sarzanini C, Mentasti E, Water. Res., 37, 1619 (2003)
- Donat R, Akdogan A, Erdem E, Cetish H, J. Colloid Interface Sci., 286(1), 43 (2005)
- Motsi T, Rowson NA, Simmons MJH, Int. J. Miner. Process., 92(1-2), 42 (2009)