The development of environmentally friendly adsorbents has been extensively carried out to overcome the detrimental effects of heavy metal accumulation, which has persistently become a global ecological problem. In pursuit of generating eco-friendly adsorbents, a green method for synthesizing thiamine functionalized-Fe3O4 (FT) was developed in this study. A one-step chemical oxidation and functionalization technique was used to prepare FT using the ammonia-containing solvent. A molar ratio of ammonia:Fe:thiamine of 15:1:1 was shown to produce FT15 with high yield, adsorptivity, and purity. XRD, XPS, FTIR, SEM, and SQUID characterization of FT15 revealed the formation of superparamagnetic thiamine functionalized Fe3O4 in their particles. This superparamagneticity facilitates the easy recovery of FT15 particles from the waste-containing solution by using an external magnetic force. The batch adsorption of Cu(II) onto FT15 showed the best fit with the Sips adsorption isotherm model with a maximum adsorption capacity of 426.076 mg g- 1, which is 5.69-fold higher capacity than the control unmodified Fe3O4 (F15). After five adsorption-desorption cycles, the FT15 can maintain up to 1.95- fold higher capacity than the freshly synthesized F15. Observation on the physicochemical properties of the postadsorption materials showed the contribution of an amine group, pyrimidine ring, and the thiazolium group of thiamine in boosting its adsorption capacity. This study provides important findings to advance the adsorptivity of magnetic adsorbents with promising recoverability from aqueous solution by employing naturally available and environmentally friendly compounds such as thiamine.
Trích dẫn: Trần Nguyễn Phương Lan, Huỳnh Quốc Khanh, Văn Minh Nhựt, Lê Phan Hưng, Mai Vĩnh Phúc, Bùi Văn Hữu, Nguyễn Thành Công, Lê Thành Công và Nguyễn Thái Sơn, 2020. Tối ưu hóa hiệu suất trích ly tinh dầu bưởi của thiết bị trích ly dạng pilot. Tạp chí Khoa học Trường Đại học Cần Thơ. 56(5A): 10-19.
Tran-Nguyen, P.L., Wang, M.J., Liu, J.C. and Ju, Y.H., 2016. Potential of using activated sludge as feedstock for biodiesel production in Taiwan. Can Tho University Journal of Science. Special issue: Renewable Energy: 11-17.
Trích dẫn: Trần Nguyễn Phương Lan, Lương Huỳnh Vủ Thanh, Trần Thanh Trúc, Lý Kim Phụng, Phạm Quốc Phú, Ngô Trương Bảo Trang, Nguyễn Thị Anh Thư, Lê Phan Hưng, Huỳnh Quốc Khanh, Thi Trần Anh Tuấn và Trần Nguyễn Phương Dung, 2020. Tổng hợp zeolite NaA/NaX từ tro trấu không nung bằng phương pháp thủy nhiệt. Tạp chí Khoa học Trường Đại học Cần Thơ. 56(6A): 22-32.
Tạp chí: Biofuels: Alternative Feedstocks and Conversion Processes for the Production of Liquid and Gaseous Biofuels (Second Edition) Biomass, Biofuels, Biochemicals
Tạp chí khoa học Trường Đại học Cần Thơ
Lầu 4, Nhà Điều Hành, Khu II, đường 3/2, P. Xuân Khánh, Q. Ninh Kiều, TP. Cần Thơ
Điện thoại: (0292) 3 872 157; Email: tapchidhct@ctu.edu.vn
Chương trình chạy tốt nhất trên trình duyệt IE 9+ & FF 16+, độ phân giải màn hình 1024x768 trở lên