纳米Mg/Al LDH负载纤维碳复合材料对水中氟离子的净化性能任务书

 2021-10-18 22:18:36

1. 毕业设计(论文)的内容和要求

水体氟污染是重要的饮用水质安全问题,在我国北方地区和世界上许多国家都比较普遍。

饮用水除氟是国内外广泛关注的课题,同时也是迄今为止国内外尚未很好解决的重要难题。

世界卫生组织建议饮用水中氟浓度不应超过1.5mg/L,但据估计,目前全球约有2亿人口饮用的地下水中氟浓度超过该标准。

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2. 参考文献

1. Gao, C.; Yu, X.-Y.; Luo, T.; Jia, Y.; Sun, B.; Liu, J.-H.; Huang, X.-J., Millimeter-sized MgAl-LDH nanoflake impregnated magnetic alginate beads (LDH-n-MABs): a novel bio-based sorbent for the removal of fluoride in water. J. Mater. Chem. A 2014, 2 (7), 2119-2128.2. Chen, H.; Zhang, S.; Zhao, Z.; Liu, M.; Zhang, Q., Application of dopamine functional materials in water pollution control. Progress in Chemistry 2019, 31 (4), 571-579.3. 刘吉明. 层状双金属氢氧化物的制备、表征及硫酸根和氟离子吸附性能研究. 太原理工大学,博士学位论文, 2015.4. 刘航, 彭稳, 陆继长, 郭飞飞, 罗永明, 韩彩芸: 吸附法处理含氟水体的研究进展. 水处理技术 2017, 43(9):13-18.5. Kameda, T.; Oba, J.; Yoshioka, T., Recyclable Mg-Al layered double hydroxides for fluoride removal: Kinetic and equilibrium studies. J. Hazard. Mater. 2015, 300, 475-82.6. Wei, Y.; Wei, S.; Liu, C.; Chen, T.; Tang, Y.; Ma, J.; Yin, K.; Luo, S., Efficient removal of arsenic from groundwater using iron oxide nanoneedle array-decorated biochar fibers with high Fe utilization and fast adsorption kinetics. Water Res. 2019, 167, 115107.7. Tang Y, Guan X, Su T, Gao N, Wang J: Fluoride adsorption onto activated alumina: Modeling the effects of pH and some competing ions. Colloids Surf Physicochem Eng Aspects 2009, 337(1-3):33-38.8. Cai J, Zhang Y, Pan B, Zhang W, Lv L, Zhang Q: Efficient defluoridation of water using reusable nanocrystalline layered double hydroxides impregnated polystyrene anion exchanger. Water Res 2016, 102:109-116.9. Jing C, Cui J, Huang Y, Li A: Fabrication, characterization, and application of a composite adsorbent for simultaneous removal of arsenic and fluoride. ACS Appl Mater Interfaces 2012, 4(2):714-720.10. 陈家凯, 聂广泽, 刘志英, 姚远, 徐炎华: 树脂基纳米钛锆氧化物复合吸附剂同步去除水中磷和氟. 环境科学 2017, 38(5):1947-1956.11. 徐美, 赵淑芳, 王剑, 王洪玲, 崔维真: 镧改性壳聚糖对高氟饮用水的处理研究. 盐业与化工 2016(11):29-33.12. Chubar N, Gilmour R, Gerda V, Miuk M, Omastova M, Heister K, Man P, Fraissard J, Zaitsev V: Layered double hydroxides as the next generation inorganic anion exchangers: Synthetic methods versus applicability. Adv Colloid Interface Sci 2017.13. Cai J, Zhao X, Zhang Y, Zhang Q, Pan B: Enhanced fluoride removal by La-doped Li/Al layered double hydroxides. J Colloid Interface Sci 2017, 509:353-359.14. Chen Y, Zhang Q, Chen L, Bai H, Li L: Basic aluminum sulfate@graphene hydrogel composites: preparation and application for removal of fluoride. Journal of Materials Chemistry A 2013, 1(42):13101.15. Mandal S, Mayadevi S: Cellulose supported layered double hydroxides for the adsorption of fluoride from aqueous solution. Chemosphere 2008, 72(6):995-998.16. 宋宽秀 李, 颜秀茹,王建萍,张松平,韩森: 水合氧化铈的表征及其对氟离子的吸附作用. 天津大学学报 1999(06).17. 王美莲, 朱学武, 成小翔, 叶元柳, 王伟强, 甘振东, 王天玉, 丁怀宇, 李圭白: 饮用水电化学和膜分离除氟技术发展与展望. 给水排水 2017, 43(11):112-122.18. Kameda T, Oba J, Yoshioka T: Recyclable MgAl layered double hydroxides for fluoride removal: Kinetic and equilibrium studies. J Hazard Mater 2015, 300(Supplement C):475-482.19. Shang, Y.; Xu, X.; Gao, B.; Yue, Q., Highly selective and efficient removal of fluoride from aqueous solution by Zr La dual-metal hydroxide anchored bio-sorbents. J. Cleaner Prod. 2018, 199, 36-46.20. Cai, J.; Zhao, X.; Zhang, Y.; Zhang, Q.; Pan, B., Enhanced fluoride removal by La-doped Li/Al layered double hydroxides. J. Colloid Interface Sci. 2018, 509, 353-359.

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