化工学报 ›› 2018, Vol. 69 ›› Issue (5): 2290-2298.DOI: 10.11949/j.issn.0438-1157.20171153
甄文媛, 李青
收稿日期:
2017-08-22
修回日期:
2017-10-13
出版日期:
2018-05-05
发布日期:
2018-05-05
通讯作者:
李青
基金资助:
北京服装学院研究生创新项目(X2017-075)。
ZHEN Wenyuan, LI Qing
Received:
2017-08-22
Revised:
2017-10-13
Online:
2018-05-05
Published:
2018-05-05
Supported by:
supported by Postgraduate Research and Innovation Project of BIFT(X2017-075).
摘要:
以凹凸棒为载体,四氯化钛为钛源,通过溶胶-凝胶法结合超临界干燥法制备TiO2/凹凸棒复合光催化材料。采用XRD、SEM、TEM、BET、XPS等方法对材料的结构、形貌及催化性能进行表征。研究结果表明:超临界干燥可增大复合材料的比表面积,抑制TiO2发生晶型转变。凹凸棒吸附特性良好,增加了材料表面的活性位点,显著提高催化剂的光催化活性。不同煅烧温度下的TiO2均为锐钛矿型,粒径约为20 nm,呈不规则短棒状,成功负载于凹凸棒上。在400℃煅烧2 h条件下,催化剂3 h后对亚甲基蓝的降解率可达98.4%。
中图分类号:
甄文媛, 李青. 超临界干燥法制备TiO2/凹凸棒复合光催化剂[J]. 化工学报, 2018, 69(5): 2290-2298.
ZHEN Wenyuan, LI Qing. Preparation of TiO2/attapulgite composite photocatalyst by supercritical fluid drying method[J]. CIESC Journal, 2018, 69(5): 2290-2298.
[1] | LIU F, FAN F T, LV Y C, et al. Research progress on photocatalytic degradation of organic pollutants by graphene/TiO2 composite materials[J]. Journal of Chemical Industry and Engineering, 2016, 67(5):1635. |
[2] | KWON S, FAN M H, COOPER A T, et al. Photocatalytic application of micro-and nano-TiO2 in environmental engineering[J]. Critical Reviews in Environmental Science and Technology, 2008, 38(3):197-226. |
[3] | DAGHRIR R, DROGUI P, ROBERT D. Modified TiO2 for environmental photocatalytic applications:a review[J]. Industrial & Engineering Chemistry Research, 2013, 52(10):3581-3599. |
[4] | FUJISHIMA A, ZHANG X. Titanium dioxide photocatalysis:present situation and future approaches[J]. Comptes Rendus Chimie, 2006, 9(5):750-760. |
[5] | 刘山虎, 许庆峰, 邢瑞敏, 等. 二氧化钛光催化技术应用于室内甲醛降解的研究进展[J]. 化学研究, 2016, 27(4):502-513. LIU S H, XU Q F, XING R M, et al. Advances in photocatalytic degradation of indoor formaldehyde based on the photocatalyst TiO2[J]. Chemical Research, 2016, 27(4):502-513. |
[6] | 蒋国民, 魏静, 晁成, 等. 细菌纤维素负载TiO2用于DDPN废水光催化降解研究[J]. 功能材料, 2014, 46(2):2023-2027. JIANG G M, WEI J, CHAO C, et al. Study of biotemplated preparation of TiO2 nanoparticles/bacterial cellulose hybrid nanofiber for degradation of DDNP wastewater[J]. Journal of Functional Materials, 2014, 46(2):2023-2027. |
[7] | ACHAMO T, YADAV O P. Removal of 4-nitrophenol from water using Ag-N-P-tridoped TiO2 by photocatalytic oxidation technique[J]. Analytical Chemistry Insights, 2016, 11(11):29. |
[8] | 那平, 张海燕. 超声波及压力处理的TiO2柱撑蒙脱土的制备与光催化性能[J]. 化工学报, 2006, 57(5):1242-1246. NA P, ZHANG H Y. Preparation and photocatalytic performance of TiO2 pillared montmorillonites treated by ultrasonic and pressure[J]. Journal of Chemical Industry and Engineering (China), 2006, 57(5):1244-1246. |
[9] | UMEBAYASHI T, YAMAKI T, ITOH H, et al. Band gap narrowing of titanium dioxide by sulfur doping[J]. Applied Physics Letters, 2002, 81(3):454-456. |
[10] | 翟友存, 冯炜, 邹克华, 等. TiO2光催化剂的掺杂改性和固定化研究[J]. 环境科学与管理, 2013, 38(1):99-103. ZHAI Y C, FENG W, ZOU K H, et al. Study on doping modification and immobilization of TiO2 photocatalyst[J]. Environmental Science and Management, 2013, 38(1):99-111. |
[11] | 傅剑锋, 季民, 金洛楠, 等. TiO2光催化降解水中天然有机物富里酸的动力学模型[J]. 化工学报, 2005, 56(6):1009-1014. FU J F, JI M, JIN L N, et al. Kinetic model for fulvic acid degradation by TiO2-photocatalysis in water[J]. Journal of Chemical Industry and Engineering(China), 2005, 56(6):1009-1014. |
[12] | 张昌远, 黄祥平, 万兰芳, 等. 高比表面积TiO2纳米颗粒的制备及光催化性能研究[J]. 三峡大学学报, 2011, 33(3):110. ZHANG C Y, HUANG X P, WAN L F, et al. Synthesis of nanometer sized TiO2 with large surface area and its photocatalytic activities[J]. Journal of China Three Gorges University, 2011, 33(3):110. |
[13] | 孙振世, 陈英旭, 柯强, 等. TiO2/膨润土纳米复合光催化剂降解偶氮染料的研究[J]. 环境科学学报, 2003, 23(1):129-133. SUN Z S, CHEN Y X, KE Q, et al. Photocatalytic degradation of azo dye by TiO2/bentonite nanocomposite[J]. Acta Scientiae Circumstantiae, 2003, 23(1):129-133. |
[14] | 陶丽琴, 赵义侠, 康卫民, 等. 聚四氟乙烯超细纤维负载二氧化钛光催化性能[J]. 硅酸盐学报, 2016, 44(1):89-94. TAO L Q, ZHAO Y X, KANG W M, et al. Preparation of titanium dioxide loaded on polytetrafluoroethylene superfine-fiber and its photocatalytic performance[J]. Journal of the Chinese Ceramic Society, 2016, 44(1):89-94. |
[15] | STRINI A, ROVIELLO G, RICCIOTTI L, et al. TiO?-based photocatalytic geopolymers for nitric oxide degradation[J]. Materials, 2016, 9(7):513. |
[16] | KEIHAN A H, HOSSEINZADEH R, FARHADIAN M, et al. Solvothermal preparation of Ag nanoparticle and graphene co-loaded TiO2 for the photocatalytic degradation of paraoxon pesticide under visible light irradiation[J]. RSC Advances, 2016, 6:83673-83687. |
[17] | 霍成立. 凹凸棒基复合功能材料的应用基础研究[D]. 长沙:中南大学, 2014. HUO C L. Fundamental research on palygorskite-based functional composites[D]. Changsha:Central South University, 2014. |
[18] | 陈天虎. 苏皖凹凸棒石粘土纳米尺度矿物学及地球化学[D]. 合肥:合肥工业大学, 2003. CHEN T H. Nanometer scale mineralogy and geochemistry of palygorskite clays in the border of Jiangsu and Anhui province[D]. Hefei:Hefei University of Technology, 2003. |
[19] | TANG J, MU B, WANG W, et al. Fabrication of manganese dioxide/carbon/attapulgite composites derived from spent bleaching earth for adsorption of Pb(Ⅱ) and brilliant green[J]. RSC Advances, 2016, 6(43):36534-36543. |
[20] | XIANG L, PAN Y C, ZENG G F, et al. Preparation of poly (ether-block-amide)/attapulgite mixed matrix membranes for CO2/N2 separation[J]. Journal of Membrane Science, 2016, 500:66-75. |
[21] | LUO M B, LIN H L, SONG J R. Study on adsorption properties of attapulgite clay to uranium in waste water[C]//The International Conference on Bioinformatics and Biomedical Engineering. IEEE, 2008:3127-3130. |
[22] | 胡春, 王怡中. 凹凸棒负载TiO2对偶氮染料和纺织废水光催化脱污[J]. 环境科学学报, 2001, 21(1):123-125. HU C, WANG Y Z. TiO2/attapulgite photocatalyst for solar detoxification of dyes and textile wastewater[J]. Acta Scientiae Circumstantiae, 2001, 21(1):123-125. |
[23] | 霍鹏, 张青, 张滨, 等. 超临界流体萃取技术的应用与发展[J]. 河北化工, 2010, 33(3):25-26. HUO P, ZHANG Q, ZHANG B, et al. The application and development of supercritical fluid extraction technology[J]. Hebei Chemical Engineering and Industry, 2010, 33(3):25-26. |
[24] | 胡盛, 周艳红, 田大听, 等. 热处理对盱眙凹凸棒石结构和形貌的影响[J]. 化工新型材料, 2013, 41(6):143-145. HU S, ZHOU Y H, TIAN D T, et al. Effect of heat treatment on structure and morphology of attapulgite in Xuyi[J]. New Chemical Materials, 2013, 41(6):143-145. |
[25] | CHEN Q H, LIU H L, XIN Y J, et al. TiO2 nanobelts-effect of calcinations temperature on optical, photoelectrochemical and photocatalytic properties[J]. Electrochimica Acta, 2013, 111(4):284-291. |
[26] | HE F, MA F, LI J L, et al. Effect of calcinations temperature on the structural properties and photocatalytic activities of solvothermal synthesized TiO2 hollow nanoparticles[J]. Ceramics International, 2014, 40(5):6441-6446. |
[27] | WANG C C, YING J Y. Sol-gel synthesis and hydrothermal processing of anatase and rutile titania nanocrystal[J]. Chemistry of Materials, 1999, 11(11):3113-3120. |
[28] | 林发蓉, 何代平, 蔡铎昌, 等. 超临界干燥法制备的锐钛矿TiO2纳米晶的性能研究[J]. 西华师范大学学报(自然科学版), 2007, 28(1):49-52. LIN F R, HE D P, CAI D C, et al. Study on properties of anatase TiO2 nanocrystallites prepared by supercritical drying[J]. Journal of China West Normal University (Natural Sciences), 2007, 28(1):49-52. |
[29] | MA W, LU Z, ZHANG M. Investigation of structural transformations in nanophase titanium dioxide by Raman spectroscopy[J]. Applied Physics A:Material Science and Processing, 1998, 66(6):621-627. |
[30] | CHEN Q F, JIANG D, SHI W M, et al. Visible-light-activated Ce-Si co-doped TiO2 photocatalyst[J]. Applied Surface Science, 2009, 255(18):7918-7924. |
[31] | GOTTLIEB A, SHAW C, SMITH A, et al. The toxicity of textile reactive azo dyes after hydrolysis and decolourisation[J]. Journal of Biotechnology, 2003, 101(1):49-56. |
[32] | 刘艾芹, 闫永胜, 李春香, 等. 高纯超微细凹凸棒土的制备及应用研究[J]. 无机盐工业, 2007, 39(12):19-22. LIU A Q, YAN Y S, LI C X, et al. Research on preparation and application of ultrafine high-purity attapulgite[J]. Inorganic Chemicals Industry, 2007, 39(12):19-22. |
[33] | 郑建东, 常彬彬, 陈涛涛, 等. 凹凸棒土高温改性的研究[J]. 应用化工, 2010, 39(12):1835-1842. ZHENG J D, CHANG B B, CHEN T T, et al. Study on the high temperature modification of attapulgite[J]. Applied Chemical Industry, 2010, 39(12):1835-1842. |
[34] | XU Z B, KONG X J, YU J L. Study on TiO2/diatomite composite photocatalyst[J]. Chinese Journal of Rare Metals, 2007, 31(1):92-96. |
[35] | 王成, 操家顺, 谢坤, 等. 凹凸棒土改性及其在水处理中的应用研究进展[J]. 应用化工, 2016, 45(8):1575-1578. WANG C, CAO J S, XIE K, et al. Research progress of the modification of attapulgite and its application in water treatment[J]. Applied Chemical Industry, 2016, 45(8):1575-1578. |
[36] | 李春全, 艾伟东, 孙志明, 等. V-TiO2/凹凸棒石复合光催化材料的制备与研究[J]. 人工晶体学报, 2016, 45(3):654-660. LI C Q, AI W D, SUN Z M, et al. Preparation and research of V-TiO2/palygorskite composite photocatalytic material[J]. Journal of Synthetic Crystals, 2016, 45(3):654-660. |
[37] | 仰榴青. 国产凹凸棒土的研究[J]. 江苏理工大学学报, 1995, 16(1):55-60. YANG L Q. Study on Chinese attapulgites[J]. Journal of Jiangsu University of Science and Technology, 1995, 16(1):55-60. |
[38] | SING K S W, EVERETT D H, HUAL R A W, et al. Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity[J]. Pure & Appl. Chem., 1982, 57(4):603-619. |
[39] | 谢晶晶. 热处理凹凸棒石结构、物性演化及其对磷的吸附作用[D]. 合肥:合肥工业大学, 2013. XIE J J. Structure and physical-chemistry property evolution of heat-treatment palygorskite as well as adsorption for phosphorus[D]. Hefei:Hefei University of Technology, 2013. |
[40] | 汪怀远, 于贞, 朱艳吉, 等. 水热法制备TiO2片晶及光催化性能[J]. 化工学报, 2011, 62(S2):97-101. WANG H Y, YU Z, ZHU Y J, et al. Hydrothermal synthesis of titanium dioxide flaky crystal and its photocatalytic performance[J]. CIESC Journal, 2011, 62(S2):97-101. |
[41] | 陈天虎, 王健, 庆承松, 等. 热处理对凹凸棒石结构、形貌和表面性质的影响[J]. 硅酸盐学报, 2006, 34(11):1406-1410. CHEN T H, WANG J, QING C S, et al. Effect of heat treatment on structure, morphology and surface properties of palygorskite[J]. Journal of the Chinese Ceramic Society, 2006, 34(11):1406-1410. |
[42] | YAMAKI T, UMEBAYASHI T, SUMITA T, et al. Fluorine-doping in titanium dioxide by ion implantation technique[J]. Nuclear Instrument and Methods in Physics Research Section B, 2003, 206(3):254-258. |
[43] | HUANG D G, LIAO S J, ZHOU W B, et al. Synthesis of samarium and nitrogen co-doped TiO2 by modified hydrothermal method and its photocatalytic performance for the degradation of 4-chlorophenol[J]. Journal of Physics and Chemistry of Solids, 2009, 70(5):853-859. |
[44] | JING L Q, XU Z L, SUN X J, CAI W M. The surface properties and photocatalytic activities of ZnO ultrafine particles[J]. Applied Surface Science, 2001, 180(3/4):308-314. |
[45] | LINSEBIGLER A L, LU G Q, YATES J T, et al. Photocatalysis on TiO2 surfaces:principles, mechanisms, and selected results[J]. Chemical Reviews, 1995, 95(3):735-758. |
[46] | DENG L J, XIE Y, ZHANG G K. Synthesis of C-Cl-codoped titania/attapulgite composite with enhanced visible-light photocatalytic activity[J]. Chinese Journal of Catalysis, 2017, 38(2):379-388. |
[47] | UCHIDA H, SASAKI T, OGURA K. Dark catalytic reduction of CO2 over prussion blue deposited TiO2 and the photo-reactivation of the catalyst[J]. Journal of Molecular Catalysis, 1994, 93(3):269-277. |
[48] | SUN Z M, HU Z B, YAN Y, et al. Effect of preparation conditions on the characteristics and photocatalytic activity of TiO2/purified diatomite composite photocatalysts[J]. Applied Surface Science, 2014, 314(10):251-259. |
[49] | D'ELIA D, BEAUGER C, HOCHEPIED J F, et al. Impact of three different TiO2 morphologies on hydrogen evolution by methanol assisted water splitting:nanoparticles, nanotubes and aerogels[J]. International Journal of Hydrogen Energy, 2011, 36(22):14360-14373. |
[1] | 范孝雄, 郝丽芳, 范垂钢, 李松庚. LaMnO3/生物炭催化剂低温NH3-SCR催化脱硝性能研究[J]. 化工学报, 2023, 74(9): 3821-3830. |
[2] | 杨百玉, 寇悦, 姜峻韬, 詹亚力, 王庆宏, 陈春茂. 炼化碱渣湿式氧化预处理过程DOM的化学转化特征[J]. 化工学报, 2023, 74(9): 3912-3920. |
[3] | 吴雷, 刘姣, 李长聪, 周军, 叶干, 刘田田, 朱瑞玉, 张秋利, 宋永辉. 低阶粉煤催化微波热解制备含碳纳米管的高附加值改性兰炭末[J]. 化工学报, 2023, 74(9): 3956-3967. |
[4] | 李艺彤, 郭航, 陈浩, 叶芳. 催化剂非均匀分布的质子交换膜燃料电池操作条件研究[J]. 化工学报, 2023, 74(9): 3831-3840. |
[5] | 程业品, 胡达清, 徐奕莎, 刘华彦, 卢晗锋, 崔国凯. 离子液体基低共熔溶剂在转化CO2中的应用[J]. 化工学报, 2023, 74(9): 3640-3653. |
[6] | 陈杰, 林永胜, 肖恺, 杨臣, 邱挺. 胆碱基碱性离子液体催化合成仲丁醇性能研究[J]. 化工学报, 2023, 74(9): 3716-3730. |
[7] | 杨学金, 杨金涛, 宁平, 王访, 宋晓双, 贾丽娟, 冯嘉予. 剧毒气体PH3的干法净化技术研究进展[J]. 化工学报, 2023, 74(9): 3742-3755. |
[8] | 刘远超, 关斌, 钟建斌, 徐一帆, 蒋旭浩, 李耑. 单层XSe2(X=Zr/Hf)的热电输运特性研究[J]. 化工学报, 2023, 74(9): 3968-3978. |
[9] | 杨菲菲, 赵世熙, 周维, 倪中海. Sn掺杂的In2O3催化CO2选择性加氢制甲醇[J]. 化工学报, 2023, 74(8): 3366-3374. |
[10] | 李凯旋, 谭伟, 张曼玉, 徐志豪, 王旭裕, 纪红兵. 富含零价钴活性位点的钴氮碳/活性炭设计及甲醛催化氧化应用研究[J]. 化工学报, 2023, 74(8): 3342-3352. |
[11] | 陈佳起, 赵万玉, 姚睿充, 侯道林, 董社英. 开心果壳基碳点的合成及其对Q235碳钢的缓蚀行为研究[J]. 化工学报, 2023, 74(8): 3446-3456. |
[12] | 杨欣, 彭啸, 薛凯茹, 苏梦威, 吴燕. 分子印迹-TiO2光电催化降解增溶PHE废水性能研究[J]. 化工学报, 2023, 74(8): 3564-3571. |
[13] | 陈雅鑫, 袁航, 刘冠章, 毛磊, 杨纯, 张瑞芳, 张光亚. 蛋白质纳米笼介导的酶自固定化研究进展[J]. 化工学报, 2023, 74(7): 2773-2782. |
[14] | 邢美波, 张中天, 景栋梁, 张洪发. 磁调控水基碳纳米管协同多孔材料强化相变储/释能特性[J]. 化工学报, 2023, 74(7): 3093-3102. |
[15] | 汤晓玲, 王嘉瑞, 朱玄烨, 郑仁朝. 基于Pickering乳液的卤醇脱卤酶催化合成手性环氧氯丙烷[J]. 化工学报, 2023, 74(7): 2926-2934. |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||