




版权说明:本文档由用户提供并上传,收益归属内容提供方,若内容存在侵权,请进行举报或认领
文档简介
1、申请者 : - 申请导师: - 2015年3月25日,-大学博士申请科研陈述,Outline,1. PersonalInformation 2. Research Progress During Graduate Period 3. Research Topics and Interests,1.PersonalInformation,Education: 09/2012-06/2015. Food Science, State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University.
2、 09/2008-06/2012. B. Eng., Food Science and Engineering, Anhui Agricultural University. 09/2008-06/2012. Chu Zhou High School. Awards: National Encouragement Scholarship, Professional Third-class Scholarship, Triple A Outstanding Student, Outstanding Student Leaders, School Outstanding Graduation Th
3、esis, etc.,PersonalInformation,LanguageProficiency: Ability to search and read English literature skillfully from all kinds of English database. Ability to write English papers independently. ComputerSkills: Microsoft office, Endnote, Origin, Omnic, Photoshop, Spass, Chemical Office, XPert Highscore
4、 Plus, etc.,2. Research Progress During Graduate Period,Water-drinking fluorosis covered about 2.2 million km2, 1.4 millions of people,Limitations of traditional adsorbent : (1)Narrow pH range (2)Low adsorption capacity(3)Secondary pollution,Fig. 2-1 Distribution of fluorosis in China,2.1 Background
5、:Distribution of fluorosis in China,2. Research Progress During Graduate Period,2.2 Removal of fluoride from drinking water using tea waste loaded with Al/Fe oxides,Fig. 2-2 Graphical abstract of tea waste loaded with Al/Fe oxides,2. Research Progress During Graduate Period,Fig. 2-3 Effect of pH on
6、the qe of biosorbents,Table 2-1 The adsorption capacity of fluoride,q0 of activated alumina was 1.45 mg/g at pH 7 (Jagtap, 2012).,2.2 Removal of fluoride from drinking water using tea waste loaded with Al/Fe oxides,pH of drinking water: 6.0-8.0,Research Progress,2.2 Removal of fluoride from drinking
7、 water using tea waste loaded with Al/Fe oxides,Fig. 2-4 Residual concentration of Fe (a) and Al (b) in fluoride solution with pH after adsorption,pH of drinking water: 6.0-8.0,2. Research Progress During Graduate Period,2. Research Progress During Graduate Period,2.3 Tea waste supported Al oxides n
8、anoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Fig. 2-4. Molecular structure of APAM,Carboxylic acid functional groups of organic acids have demonstrated a positive effect on enhancement of fluoride adsorption from aqueous (Velazquez-Jimenez, 2014; Li, 2013; Wang, 2011).,2. Research
9、Progress During Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Fig. 2-5 SEM images of Tea-Al (a) and Tea-APAM-Al (b),Table 2-2 Surface area, pore volume and pore diameter of biosorbents.,15 times,16 times,2. Research Progress During
10、Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Fig. 2-6. Effect of pH on the adsorption capacity of biosorbents,pH of drinking water: 6.0-8.0,Table 2-3 The adsorption capacity of fluoride,q0 of activated alumina was 1.45 mg/g at pH 7
11、 (Jagtap, 2012),29 times,2. Research Progress During Graduate Period,Fig. 2-4. Molecular structure of APAM,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Fig. 2-7 Concentration of fluoride and sulfate ions in solution as a function of contact time w
12、ith initial fluoride concentration of 30 mg/L,The results indicated that anion exchange with sulfate ions was one of the important mechanisms for fluoride removal,2. Research Progress During Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM
13、-Al),The band at 1109 cm-1 disappeared after adsorption of fluoride implying that SO42 had played an important role in fluoride removal.,Fig. 2-8. FTIR spectra of biosorbents,2. Research Progress During Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylami
14、de (Tea-APAM-Al),Tea-APAM-Al showed a remarkable increase from 4.02% to 15.99% in comparison to Tea-Al. The quantity of sulfate ion could be increased with the participation of APAM among the loading progress. Sulfate ions might be replaced by fluoride, which was consistent with the results of FTIR
15、and adsorption experiments.,Table 2-4 XPS analysis of Tea-Al, Tea-APAM-Al before and after fluoride adsorption,NaF:684.5 eV,The results suggested that Al atoms participated in fluoride adsorption process. A new F (1s) peak was found at 685.5 eV, which was higher than the 684.5 eV for NaF, signifying
16、 that surface reactions had occurred.,2. Research Progress During Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Fig. 2-9 XPS spectra of the Al 2p (a) and F 1s (b) of Tea-APAM-Al before and after adsorption,2. Research Progress Durin
17、g Graduate Period,2.3 Tea waste supported Al oxides nanoparticles with help of Anionic polyacrylamide (Tea-APAM-Al),Table 2-5 Chemical parameters of ground water before and after treatment with Tea-APAM-Al,2. Research Progress During Graduate Period,Summarize:,Two kinds of Tea-Al-Fe exhibited superi
18、or fluoride adsorption than traditional adsorbents. Tea-Al-Fe could be used to remove fluoride without pH adjustment. The residual concentrations of Al and Fe in drinking water adsorbed by Tea-Al-Fe at different pH ranges from 5.0 to 10.0 were below the WHO standard.,2. Research Progress During Graduate Period,Publications 1 2 3 4 5,3.Research Topics and Interests,3.1 The potential abilities of polysaccharide and its derivatives to remove fluor
温馨提示
- 1. 本站所有资源如无特殊说明,都需要本地电脑安装OFFICE2007和PDF阅读器。图纸软件为CAD,CAXA,PROE,UG,SolidWorks等.压缩文件请下载最新的WinRAR软件解压。
- 2. 本站的文档不包含任何第三方提供的附件图纸等,如果需要附件,请联系上传者。文件的所有权益归上传用户所有。
- 3. 本站RAR压缩包中若带图纸,网页内容里面会有图纸预览,若没有图纸预览就没有图纸。
- 4. 未经权益所有人同意不得将文件中的内容挪作商业或盈利用途。
- 5. 人人文库网仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对用户上传分享的文档内容本身不做任何修改或编辑,并不能对任何下载内容负责。
- 6. 下载文件中如有侵权或不适当内容,请与我们联系,我们立即纠正。
- 7. 本站不保证下载资源的准确性、安全性和完整性, 同时也不承担用户因使用这些下载资源对自己和他人造成任何形式的伤害或损失。
最新文档
- 2025至2030年中国鱼肝油果汁市场分析及竞争策略研究报告
- 2025至2030年中国阳离子格子水洗绒面料市场分析及竞争策略研究报告
- 2025至2030年中国钻锣机主轴夹头市场分析及竞争策略研究报告
- 2025至2030年中国蹲厕冲洗阀市场分析及竞争策略研究报告
- 2025至2030年中国自动间隙调整臂市场分析及竞争策略研究报告
- 2025至2030年中国红色小花点摇粒绒市场分析及竞争策略研究报告
- 2025至2030年中国直流脉冲氩弧焊机市场分析及竞争策略研究报告
- 2025至2030年中国水产专用肥市场分析及竞争策略研究报告
- 2025至2030年中国有字铝盖市场分析及竞争策略研究报告
- 2025至2030年中国抗震垫市场分析及竞争策略研究报告
- 《常用音频接口介绍》课件:深入了解各种音频接口的特点与应用
- 2025年山西航空产业集团有限公司招聘笔试参考题库含答案解析
- 构建博物馆研学教育的新模式
- 2024 大模型典型示范应用案例集-1
- 《先兆流产中西医结合诊疗指南》
- 2024上半年系统集成项目管理工程师真题及答案
- 古代汉语专题-003-国开机考复习资料
- 检察机关保密知识培训
- 四川省甘孜藏族自治州(2024年-2025年小学五年级语文)人教版期末考试(下学期)试卷及答案
- 04事理说明文阅读-2022-2023学年八年级语文下册知识梳理与能力训练
- 四川省绵阳市2024-2025学年高一数学下学期期末教学质量测试试题
评论
0/150
提交评论