Journal of Industrial and Engineering Chemistry, Vol.78, 164-171, October, 2019
Recovery of polyphenols from water using Zr-based metal-organic frameworks and their nanocomposites with graphene nanoplatelets
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In this study, Zr-based metal organic frameworks (UiO-66) and graphene nanoplatelets UiO-66 nanocomposites (GNP/UiO-66) were prepared using acid promoted method, and used for adsorption of two different polyphenols; oleuropein and hydroxytyrosol. Different characterization techniques used for exploring the morphological and structure properties of the UiO-66 and GNP/UiO-66 nanocomposites. The adsorption of oleuropein and hydroxytyrosol was studied by UiO-66 and different GNP/ UiO-66 nanocomposites and results showed that most of the oleuropein and hydroxytyrosol were removed from the solution in 60 min and 180 min, respectively. The kinetic modelling of adsorption was studied. The adsorption isotherms were constructed at different pH values.
- Sun W, Frost B, Liu J, Oncotarget, 8(11), 17409 (2017)
- Martinez L, Ros G, Nieto G, Medicines, 5(1), 13 (2018)
- Talhaoui N, Taamalli A, Gomez-Caravaca AM, Fernandez-Gutierrez A, Segura-Carretero A, Food Res. Int., 77, 92 (2015)
- Li C, Zheng Y, Wang X, Feng S, Di D, J. Sci. Food Agric., 9(15), 2826 (2011)
- Ena A, Pintucci C, Carlozzi P, J. Biotechnol., 157(4), 573 (2012)
- Liu Y, Liu Y, Zhang J, Wu X, Wei J, Pei D, Di D, Colloid Polym. Sci., 293(8), 2395 (2015)
- Chen L, Li X, Tanner EEL, Compton RG, Chem. Sci., 8(7), 4771 (2017)
- Al-Khateeb LA, Almotiry S, Salam MA, Chem. Eng. J., 248, 191 (2014)
- Stock N, Biswas S, Chem. Rev., 112(2), 933 (2012)
- Cavka JH, Jakobsen S, Olsbye U, Guillou N, Lamberti C, Bordiga S, Lillerud KP, J. Am. Chem. Soc., 130(42), 13850 (2008)
- DeCoste JB, Peterson GW, Schindler BJ, Killops KL, Browe MA, Mahle JJ, J. Mater. Chem. A, 1(38), 11922 (2013)
- Cavka JH, Jakobsen S, Olsbye U, Guillou N, Lamberti C, Bordiga S, Lillerud KP, Cambridge Crystallogr. Data Cent. (2014).
- Momma K, Izumi F, J. Appl. Crystallogr., 44(6), 1272 (2011)
- Zhao Q, Yuan W, Liang JM, Li JP, Int. J. Hydrog. Energy, 38(29), 13104 (2013)
- Qiu JH, Feng Y, Zhang XF, Jia MM, Yao JF, J. Colloid Interface Sci., 499, 151 (2017)
- Katz MJ, Brown ZJ, Colon YJ, Siu PW, Scheidt KA, Snurr RQ, Hupp JT, Farha OK, Chem. Commun., 49(82), 9449 (2013)
- Akpinar I, Yazaydin AO, Ind. Eng. Chem. Res., 56(51), 15122 (2017)
- Han Y, Liu M, Li K, Zuo Y, Wei Y, Xu S, Zhang G, Song C, Zhang Z, Guo X, CrystEngComm, 17(33), 6434 (2015)
- Thommes M, Kaneko K, Neimark AV, Olivier JP, Rodriguez-Reinoso F, Rouquerol J, Sing KSW, Pure Appl. Chem. (2015).
- Wang C, Liu X, Chen JP, Li K, Sci. Rep., 5 (2015)
- Ghasemi-Kooch M, Dehestani M, Housaindokht MR, Bozorgmehr MR, J. Mol. Liq., 241, 367 (2017)
- Lagergren S, Sven K, Vetenskademiens Handl., 24, 1 (1898)
- Ho YS, McKay G, Process Biochem., 34(5), 451 (1999)
- Morris JC, Weber WJ, J. Santi. Eng. Div. ASCE, 89, 31 (1963)
- Wan J, Tao T, Zhang Y, Liang X, Zhou A, Zhu C, Choi JW, Luo S, RSC Adv., 6(28), 23233 (2016)
- Langmuir I, J. Am. Chem. Soc., 40(9), 1361 (1918)
- Freundlich H, Z. Phys. Chem., 57, 385 (1906)
- Sips R, J. Chem. Phys., 16(5), 490 (1948)
- Yuan JJ, Wang CZ, Ye JZ, Tao R, Zhang YS, Molecules, 20(2), 2903 (2015)