[1] Schwarzenbach R. P., Escher B. I., Fenner K., Hofstetter T. B., Johnson C. A., von Gunten U., Wehrli B., Science, 2006, 313(5790), 1072 [2] Aksu Z., Process Biochemistry, 2005, 40(3/4), 997 [3] Wang L., Wu X. L., Xu W. H., Huang X. J., Liu J. H., Xu A. W., ACS Appllied Materials & Interfaces, 2012, 4(5), 2686 [4] Tan K. B., Vakili M., Hord B. A., Poh P. E., Abdullah A. Z., Salamatinia B., Separation and Purification Technology, 2015, 150, 229 [5] Dasgupta J., Sikder J., Chakraborty S., Curcio S., Drioli E., Journal of Environmental Management, 2015, 147, 55 [6] Vergili I., Kaya Y., Sen U., Gonder Z. B., Aydiner C., Resources Conservation and Recycling, 2012, 58, 25 [7] Li X. Y., Zeng S. J., Qu X. J., Dai J. Y., Liu X. F., Wang R. W., Zhang Z. T., Qiu S. L., Chemical Research in Chinese Universities, 2019, 35(3), 363 [8] Wu X. B., Wu D. C., Fu R. W., Zeng W., Dyes and Pigments, 2012, 95(3), 689 [9] Zhao R., Wang Y., Li X., Sun B. L., Jiang Z. Q., Wang C., Colloids and Surfaces B:Biointerfaces, 2015, 136, 375 [10] Dasgupta J., Singh M., Sikder J., Padarthi V., Chakraborty S., Curcio S., Ecotoxicology and Environmental Safety, 2015, 121, 271 [11] Liu N., Zhang W. F., Li X. Y., Qu R. X., Zhang Q. D., Wei Y., Feng L., Jiang L., Journal of Materials Chemistry A, 2017, 5(30), 15822 [12] Ayad M. M., El-Nasr A. A., Journal of Physical Chemistry C, 2010, 114(34), 14377 [13] Liu X. D., Yan L., Yin W. Y., Zhou L. J., Tian G., Shi J. X., Yang Z. Y., Xiao D. B., Gu Z. J., Zhao Y. L., Journal of Materials Chemistry A, 2014, 2(31), 12296 [14] Lau Y. Y., Wong Y. S., Teng T. T., Morad N., Rafatullah M., Ong S. A., Chemical Engineering Journal, 2014, 246, 383 [15] Lotito A. M., Fratino U., Mancini A., Bergna G., Di Iaconi C., International Biodeterioration & Biodegradation, 2012, 69, 62 [16] Bhattacharyya K. G., Gupta S. S., Advances in Colloid and Interface Science, 2008, 140(2), 114 [17] Qu J. Y., Shi L., He C. X., Gao F., Li B. B., Zhou Q., Hu H., Shao G. H., Wang X. Z., Qiu J. S., Carbon, 2014, 66, 485 [18] Gunasekaran R., Kanmani S., Clean Technologies and Environmental Policy, 2014, 16(3), 601 [19] Geng W. Z., Jiang H. C., Yang X., Feng Y., Wang X. Y., Geng Z., Huo M. X., Chemical Research in Chinese Universities, 2019, 35(4), 714 [20] Das R., Vecitis C. D., Schulze A., Cao B., Ismail A. F., Lu X. B., Chen J. P., Ramakrishna S., Chemical Society Reviews, 2017, 46(22), 6946 [21] Alsbaiee A., Smith B. J., Xiao L. L., Ling Y. H., Helbling D. E., Dichtel W. R., Nature, 2016, 529(7585), 190 [22] Ali I., Chemical Reviews, 2012, 112(10), 5073 [23] Zhao R., Li Y. Z., Sun B. L., Chao S., Li X., Wang C., Zhu G. S., Chemical Engineering Journal, 2019, 359, 1603 [24] Li Y., Pan B., Miao H. Y., Xu H. M., Liu X. F., Shi G., Chemical Research in Chinese Universities, 2020, 36(6), 1272 [25] Wang S. B., Peng Y. L., Chemical Engineering Journal, 2010, 156(1), 11 [26] Luo X. B., Zhan Y. C., Huang Y. N., Yang L. X., Tu X. M., Luo S. L., Journal of Hazardous Materials, 2011, 187(1/3), 274 [27] Jabli M., Saleh T. A., Sebeia N., Tka N., Khiari R., Scientific Reports, 2017, 7, 14448 [28] Liu Y., Wei J., Tian Y. X., Yan S. Q., Journal of Materials Chemistry A, 2015, 3(37), 19000 [29] Han Q., Wang Z. M., Chen X. Y., Mao C. W., Li H. Y., Yu R. B., Chemical Research in Chinese Universities, 2019, 35(4), 564 [30] Yang S. T., Chen S., Chang Y. L., Cao A. N., Liu Y. F., Wang H. F., Journal of Colloid and Interface Science, 2011, 359(1), 24 [31] Jain A., Balasubramanian R., Srinivasan M. P., Chemical Engine-ering Journal, 2016, 283, 789 [32] Zuo X., Liu Z., Chen M., Bioresour Technol, 2016, 207, 262 [33] Li Y. Z., Zhao R., Chao S., Sun B. L., Wang C., Li X., Chemical Engineering Journal, 2018, 344, 277 [34] Zhao J. H., Liu J., Li N., Wang W., Nan J., Zhao Z. W., Cui F. Y., Chemical Engineering Journal, 2016, 304, 737 [35] Zhao R., Wang Y., Li X., Sun B. L., Li Y. M., Ji H., Qiu J., Wang C., ACS Sustainable Chemistry & Engineering, 2016, 4(5), 2584 [36] Wang X. F., Yu J. Y., Sun G., Ding B., Materials Today, 2016, 19(7), 403 [37] Gadisa B. T., Appiah-Ntiamoah R., Kim H., Applied Surface Science, 2019, 491, 350 [38] Xue J. J., Wu T., Dai Y. Q., Xia Y. N., Chemical Reviews, 2019, 119(8), 5298 [39] Tu H., Huang M., Yi Y., Li Z., Zhan Y., Chen J., Wu Y., Shi X., Deng H., Du Y., Applied Surface Science, 2017, 426, 545 [40] Zhao R., Li Y. M., Li X., Li Y. Z., Sun B. L., Chao S., Wang C., Journal of Colloid and Interface Science, 2018, 514, 675 [41] Chaúque E. F. C., Dlamini L. N., Adelodun A. A., Greyling C. J., Catherine Ngila J., Applied Surface Science, 2016, 369, 19 [42] Zhang D., Li N., Cao S., Liu X., Qiao M. W., Zhang P. A., Zhao Q. Y., Song L. J., Huang X. Q., Chemical Research in Chinese Universities, 2019, 35(3), 463 [43] Li X., Zhang C. C., Zhao R., Lu X. F., Xu X. R., Jia X. T., Wang C., Li L. J., Chemical Engineering Journal, 2013, 229, 420 [44] Wang X. B., Cai W. P., Wang G. Z., Wu Z. K., Zhao H. J., Crystengcomm, 2013, 15(15), 2956 [45] Ette P. M., Selvakumar K., Kumar S. M. S., Ramesha K., Electrochimica Acta, 2018, 292, 532 [46] Wang X. B., Liu J., Xu W. Z., Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2012, 415, 288 [47] Guan X. H., Chen G. H., Shang C., Journal of Environmental Sciences, 2007, 19(4), 438 [48] Wei H., Xu M. W., Bao S. J., Yang F., Chai H., RSC Advances, 2014, 4(33), 16979 [49] Lu Z. J., Bao S. J., Gou Y. T., Cai C. J., Ji C. C., Xu M. W., Song J., Wang R. Y., RSC Advances, 2013, 3(12), 3990 [50] Chai H., Wei M. P., Su Y., Wang Y. C., Jia D. Z., Sun Z. P., Zhou W. Y., European Journal of Inorganic Chemistry, 2018, (11), 1315 [51] Zhu M. Y., Kan J. R., Pan J. M., Tong W. J., Chen Q., Wang J. C., Li S. J., Journal of Energy Chemistry, 2019, 28, 1 [52] Mallakpour S., Motirasoul F., Progress in Organic Coatings, 2017, 103, 135 [53] Mallampati R., Li X. J., Adin A., Vaiyaveettil S., ACS Sustainable Chemistry & Engineering, 2015, 3(6), 1117 [54] Yu M., Liu M., Chemical Research in Chinese Universities, 2019, 35(2), 311 [55] Zhao X., Ma X. F., Zheng P. W., Chemosphere, 2018, 202, 298 [56] Liu J. S., Liu G. N., Liu W. X., Chemical Engineering Journal, 2014, 257, 299 [57] Liang H. W., Cao X., Zhang W. J., Lin H. T., Zhou F., Chen L. F., Yu S. H., Advanced Functional Materials, 2011, 21(20), 3851 [58] Mercante L. A., Facure M. H. M., Locilento D. A., Sanfelice R. C., Migliorini F. L., Mattoso L. H. C., Correa D. S., New Journal of Chemistry, 2017, 41(17), 9087 [59] Li S. B., Jia Z. G., Li Z. Y., Li Y. H., Zhu R. S., Advanced Powder Technology, 2016, 27(2), 591 [60] Haider S., Binagag F. F., Haider A., Mahmood A., Shah N., Al-Masry W. A., Khan S. U. D., Ramay S. M., Desalination and Water Treatment, 2015, 55(6), 1609 [61] Yan J. J., Huang Y. P., Miao Y. E., Tjiu W. W., Liu T. X., Journal of Hazardous Materials, 2015, 283, 730 [62] Gupta K., Khatri O. P., Chemical Engineering Journal, 2019, 378, 122218 [63] Xu Y., Yuan D., Bao J., Xie Y., He M., Shi Z., Chen S., He C., Zhao W., Zhao C., Journal of Materials Chemistry A, 2018, 6(27), 13359 [64] Zhao R., Wang Y., Li X., Sun B. L., Wang C., ACS Applied Materials & Interfaces, 2015, 7(48), 26649 [65] Abraham R., Mathew S., Kurian S., Saravanakumar M. P., Ealias A. M., George G., Ultrasonics Sonochemistry, 2018, 49, 175 [66] Alatalo S. M., Makila E., Repo E., Heinonen M., Salonen J., Kukk E., Sillanpaa M., Titirici M. M., Green Chemistry, 2016, 18(4), 1137 |