全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2015 

微波强化掺Al-TiO2改性膨润土的制备及其结构表征
Preparation of bentonite modified by Al-TiO2 with microwave radiation and its structure characterization

DOI: 10.13801/j.cnki.fhclxb.20141118.006

Keywords: 微波,改性膨润土,TiO2,制备,结构表征,微观结构
microwave
,modified bentonite,TiO2,preparation,structure characterization,microstructure

Full-Text   Cite this paper   Add to My Lib

Abstract:

为制备一种新型水处理吸附剂复合材料, 在微波作用下, 采用掺Al-TiO2作为改性剂制备改性膨润土, 考察了最佳微波辐射条件, 利用EDS、SEM、FTIR、XRD、N2吸附-脱附和差热热重(DSC-TGA)等手段对样品进行表征。结果表明: 辐射功率260 W, 辐射时间8 min为最佳微波辐射条件; 改性膨润土中的改性剂已进入到膨润土层间, 与蒙脱石骨架发生成键反应, 形成Ti—O—Si键; 改性膨润土的层间距由1.280 nm增大至1.533 nm, 比表面积由39.66 m2·g-1增大至72.05 m2·g-1, 孔隙体积由0.103 4 cm3·g-1增大至0.140 5 cm3·g-1, 对亚甲基蓝的饱和吸附量也由32.56 g/100 g增大至57.96 g/100 g, 且热稳定性较改性前明显提高。 In order to prepare a new composite of water treatment adsorbent, modified bentonite was prepared under microwave radiation by using doped Al-TiO2 as modifier. The best condition of microwave radiation was investigated. The samples were characterized by EDS, SEM, FTIR, XRD, N2 adsorption-desorption, differential scanning calorimetry and thermal gravity analysis (DSC-TGA). The results show that the best condition of microwave radiation are microwave power 260 W and microwave time 8 min. The modifier enters into the interlayer of bentonite and Ti—O—Si bond is formed between the framework of bentonite in the modified bentonite. The interlayer spacing increases from 1.280 nm to 1.533 nm, the surface area increases from 39.66 m2·g-1 to 72.05 m2·g-1, the pore volume increases from 0.103 4 cm3·g-1 to 0.140 5 cm3·g-1, while the saturated adsorption capacity of methylene blue increases from 32.56 g/100 g to 57.96 g/100 g, and the thermal stability is evidently improved by modification. 国家自然科学基金(51308131);广东省教育部产学研项目(2012B090400030)

References

[1]  Ye C X, Yang R J, Yi D Q. Structure and properties of calcium nano-montmorillonite/ammonium polyphosphate compounds[J].Acta Materiae Compositae Sinica, 2013, 30(3): 1-6 (in Chinese). 叶春雪, 杨荣杰, 仪德启. 钙基纳米蒙脱土/聚磷酸铵复合物的结构与性质[J]. 复合材料学报, 2013, 30(3): 1-6.
[2]  Su D, Mou Q W. Research on organic modification of Na+-bentonites with octadecylamine[J]. Materials Review, 2008, 22(Suppl.2): 412-415 (in Chinese). 粟笛, 牟其伍. 十八胺对钠基膨润土有机化改性的研究[J].材料导报, 2008, 22(增刊2): 412-415.
[3]  Mu K Y, Zhao T T, Zhang Y M, et al. Study on phosphorus removal using zirconium-modified bentonite as composite materials[J].Environmental Engineering, 2014(3): 60-64 (in Chinese). 穆凯艳, 赵田甜, 张樱美, 等. 膨润土载锆除磷复合材料的研究[J]. 环境工程, 2014(3): 60-64.
[4]  Toor M, Jin B, Dai S, et al.Activating natural bentonite as a cost-effective adsorbent for removal of Congo-red in wastewater[J]. Journal of Industrial and Engineering Chemistry, 2014, 33(3): 1979-1987.
[5]  Rahardjo A K, Susanto M J J, Kurniawan A, et al.Modified ponorogo bentonite for the removal of ampicillin from wastewater[J].Journal of Hazardous Materials, 2011, 190(1-3): 1001-1008.
[6]  Tan S Z, Zhang K H, Liu Y L.Preparation and property of montmorillonite composite materials exchanged with Cu2+and quaternary phosphonium cation[J].Acta Materiae Compositae Sinica, 2006, 23(3): 82-86 (in Chinese). 谭绍早, 张葵花, 刘应亮.季鏻盐-铜/蒙脱土复合材料的制备及性能[J]. 复合材料学报, 2006, 23(3): 82-86.
[7]  Tang W G.Study on preparation of inorganic/organic composite modified bentonite and removal of ammonia nitrogen and phosphorus[D].Guangzhou: Guangdong University of Technology, 2011 (in Chinese). 唐文广. 无机-有机复合膨润土制备及其处理氨氮和磷的研究[D]. 广州: 广东工业大学, 2011.
[8]  Li Y H, Ma W, Qian S L, et al.Preparation and characterization of bentonite-organic composite water-retaining agent[J].Chinese Journal of Spectroscopy Laboratory, 2013, 30(5): 2403-2406 (in Chinese). 栗印环, 马稳, 钱淑丽, 等. 膨润土-有机复合保水剂的制备及表征[J]. 光谱实验室, 2013, 30(5): 2403-2406.
[9]  Wei T Y, Cao Y H, Tong Z F.Modification of bentonite by microwave irradiation and its mechanism[J].The Chinese Journal of Process Engineering, 2005, 5(4): 411-413 (in Chinese). 韦藤幼, 曹玉红, 童张法. 微波强化膨润土的改性及其作用机理[J]. 过程工程学报, 2005, 5(4): 411-413.
[10]  Foletto E L, Paz D S, Gündel A.Acid-activation assisted by microwave of a Brazilian bentonite and its activity in the bleaching of soybean oil[J].Applied Clay Science, 2013, 83(10): 63-67.
[11]  Fan H, Nie J X, Wu G F, et al.Study on microwave modified bentonite and its adsorption properties of phosphorus[J]. Non-Metallic Mines, 2014, 37(1): 69-71 (in Chinese). 范恒, 聂锦旭, 吴光锋, 等. 微波改性膨润土对含磷废水的吸附性能研究[J]. 非金属矿, 2014, 37(1): 69-71.
[12]  Zhang X L, Li Y H, Hao P P, et al. Study on adsorption aniline of bentonite modified by microwave and organic matter[J]. Non-Metallic Mines, 2011, 34(3): 71-74 (in Chinese). 张秀兰, 栗印环, 郝盼盼, 等. 微波法膨润土有机改性及对苯胺的吸附研究[J]. 非金属矿, 2011, 34(3): 71-74.
[13]  Yu H Q, Yan L G, Xin X D, et al.Synthesis and characterization of CTMAB and PDMDAAC modified organobentonite[J].Spectroscopy and Spectral Analysis, 2011, 31(5): 1393-1397 (in Chinese). 于海琴, 闫良国, 辛晓东, 等. CTMAB和PDMDAAC有机改性膨润土的制备及其表征[J]. 光谱学与光谱分析, 2011, 31(5): 1393-1397.
[14]  Lai D W, Li D X, Yang J, et al.Preparation and properties of PA6 modified by phenolic resin-montmorillonite and KH550-halloysite[J].Acta Materiae Compositae Sinica, 2013, 30(4): 22-28 (in Chinese). 赖登旺, 李笃信, 杨军, 等. 酚醛-蒙脱土和KH550-埃洛石复配改性尼龙6的制备及性能[J].复合材料学报, 2013, 30(4): 22-28.
[15]  Wang Y, Zhang T, Feng H X, et al.Study on adsorption of methylene blue from aqueous solution by anion surfactant modified bentonites[J].Non-Metallic Mines, 2008, 31(2): 57-61 (in Chinese). 王毅, 张婷, 冯辉霞, 等. 阴离子改性膨润土对水中亚甲基蓝吸附性能研究[J]. 非金属矿, 2008, 31(2): 57-61.
[16]  Shao H, Zhang Z F.Preparation and application of CTMAB/CPAM composite bentonite[J].Environmental Science & Technology, 2014, 37(7): 117-123 (in Chinese). 邵红, 张志芳. CTMAB/CPAM/膨润土复合材料的制备与应用[J]. 环境科学与技术, 2014, 37(7): 117-123.
[17]  Huang Z Y. The study of preparation and photocatalyse ability of TiO2/bentonite composite material[D]. Nanning: Guangxi University, 2007 (in Chinese). 黄昭宇. TiO2/膨润土复合材料的制备及光催化性能的研究[D]. 南宁: 广西大学, 2007.
[18]  Zhu P F, Liu M, Niu D, et al. Characterization and property of Cu-Fe-TiO2/bentonite composite photocatalyst[J]. Chinese Journal of Spectroscopy Laboratory, 2013, 30(3):1277-1281 (in Chinese). 朱鹏飞, 刘梅, 牛笛, 等. Cu-Fe-TiO2/膨润土复合光催化剂的表征及性能[J]. 光谱实验室, 2013, 30(3): 1277-1281.
[19]  Li Y Y, Liu W H, Chen F Q, et al. Adsorption properties of thiol-functionalized bentonite for heavy metals[J].Chinese Journal of Environmental Engineering, 2013, 7(8): 3013-3018 (in Chinese). 李媛媛, 刘文华, 陈福强, 等. 巯基化改性膨润土对重金属的吸附性能[J]. 环境工程学报, 2013, 7(8): 3013-3018.
[20]  Wang D Z.Treatment of amononiac nitrogen wastewater by means of thermal-modified bentonite[J]. Journal of Safety and Environment, 2006, 6(5): 14-16 (in Chinese). 王代芝. 热改性膨润土对氨氮废水的处理[J]. 安全与环境学报, 2006, 6(5): 14-16.
[21]  Zhao Z G. Adsorption application principle[M].Beijing: Chemical Industry Press, 2005: 72, 140 (in Chinese). 赵振国. 吸附作用应用原理[M]. 北京: 化学工业出版社, 2005: 72, 140.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133