大孔树脂对含盐有机废水中有机物吸附的研究任务书
2020-06-24 19:47:59
1. 毕业设计(论文)的内容和要求
论文要求学生掌握吸附作用机理以及吸附动力学、吸附热力学。
学会大孔树脂的改性和表面性质的调控;设计合理的实验路线,通过静态、动态吸附实验,考察影响吸附的主要因素如ph、温度、共存物等;在此基础上进一步优化树脂改性的方案。
通过上面的实验,培养学生综合设计实验能力、动手能力以及对实验获得的数据进行分析的能力,同时提高学生的外文翻译水平,为毕业生走上工作岗位或者继续深造提供良好的帮助。
2. 参考文献
[1] 顾锡慧, 大孔树脂吸附#8212;生物再生法处理高盐苯胺/苯酚废水的研究, 2008, 大连理工大学. 127. [2] 崔友国, 超高交联吸附树脂处理有机化工废水策略设计. 当代化工研究, 2017(06): 19-20. [3] 郑帅, 高氨基多孔壳聚糖树脂的制备及其对染料吸附性能的研究, 2012, 东华大学. 72. [4] 王静, 树脂吸附法处理气化废水研究, 2011, 郑州大学. 第 59页. [5] 陈晓康, 宁培森与丁著明, 树脂吸附法处理有机废水的研究进展. 热固性树脂, 2015(06): 第55-64页. [6] Hu, Y., et al., Dye adsorption by resins: Effect of ionic strength on hydrophobic and electrostatic interactions. Chemical Engineering Journal, 2013. 228: p. 392-397. [7] Hu, Y., J. Foster and T.H. Boyer, Selectivity of bicarbonate-form anion exchange for drinking water contaminants: Influence of resin properties. Separation and Purification Technology, 2016. 163: p. 128-139. [8] Shuang, C., et al., Effect of the chemical structure of anion exchange resin on the adsorption of humic acid: Behavior and mechanism. Journal of Colloid and Interface Science, 2015. 437: p. 163-169. [9] Zhang, H., et al., Combination of Na-modified zeolite and anion exchange resin for advanced treatment of a high ammonia#8211;nitrogen content municipal effluent. Journal of Colloid and Interface Science, 2016. 468: p. 128-135. [10] Beita-Sand#237;, W. and T. Karanfil, Removal of both N -nitrosodimethylamine and trihalomethanes precursors in a single treatment using ion exchange resins. Water Research, 2017. 124: p. 20-28. [11] Sun, J., et al., Effect of long-term organic removal on ion exchange properties and performance during sewage tertiary treatment by conventional anion exchange resins. Chemosphere, 2015. 136: p. 181-189. [12] Wang, W., et al., Effect of resin charged functional group, porosity, and chemical matrix on the long-term pharmaceutical removal mechanism by conventional ion exchange resins. Chemosphere, 2016. 160: p. 71-79. [13] Hosseini-Bandegharaei, A., et al., Effect of nitrate and amine functionalization on the adsorption properties of a macroporous resin towards tetracycline antibiotic. Journal of the Taiwan Institute of Chemical Engineers, 2016. 66: p. 143-153. [14] Wu, Z., Y. Meng and D. Zhao, Nanocasting fabrication of ordered mesoporous phenol#8211;formaldehyde resins with various structures and their adsorption performances for basic organic compounds. Microporous and Mesoporous Materials, 2010. 128(1-3): p. 165-179. [15] Rong, J., et al., A facile strategy toward 3D hydrophobic composite resin network decorated with biological ellipsoidal structure rapeseed flower carbon for enhanced oils and organic solvents selective absorption. Chemical Engineering Journal, 2017. 322: p. 397-407. [16] Dos Reis, L.G.T., et al., Separation of Malachite Green and Methyl Green cationic dyes from aqueous medium by adsorption on Amberlite XAD-2 and XAD-4 resins using sodium dodecylsulfate as carrier. Chemical Engineering Journal, 2011. 171(2): p. 532-540. [17] Murray, A., B. Ouml;rmeci and E.P.C. Lai, Use of sub-micron sized resin particles for removal of endocrine disrupting compounds and pharmaceuticals from water and wastewater. Journal of Environmental Sciences, 2017. 51: p. 256-264.
3. 毕业设计(论文)进程安排
2.25-3.9 查找相关文献,翻译英文文献 3.10-3.24 阅读相关文献,并撰写开题报告 3.25-4.30 学会大孔树脂的改性和表面性质的调控 5.4-5.12 考察影响吸附的主要因素如pH、温度、共存物等 5.13-6.1 修改改性方案,优化吸附条件 6.1-6.15 整理实验数据,撰写毕业论文
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