Efficient removal of phosphate from aqueous solution using novel magnetic nanocomposites with Fe_3O_

来源 :Journal of Rare Earths | 被引量 : 0次 | 上传用户:frenta
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Fe_3O_4@SiO_2 magnetic nanoparticles functionalized with mesoporous cerium oxide(Fe_3O_4@SiO_2@mCeO_2) was fabricated as a novel adsorbent to remove phosphate from water. The prepared adsorbent was characterized by X-ray diffractometry(XRD), transmission electron microscopy(TEM), nitrogen adsorption-desorption and vibrating sample magnetometry(VSM), and its phosphate removal performance was investigated through the batch adsorption studies. Characterization results confirmed that mesoporous cerium oxide was successfully assembled on the surface of Fe_3O_4@SiO_2 nanoparticles, and the synthesized adsorbent possessed a typical core-shell structure with a BET surface area of 195 m~2/g, accessible mesopores of 2.6 nm, and the saturation magnetization of 21.11 emu/g. The newly developed adsorbent had an excellent performance in adsorbing phosphate, and its maximum adsorption capacity calculated from the Langmuir model was 64.07 mg/g. The adsorption was fast, and the kinetic data could be best fitted with the pseudo-second-order kinetic model. The phosphate removal decreased with the increase of solution pH(2 to 10), while the higher ionic strength slightly promoted the phosphate adsorption. The presence of Cl~– and SO~(2–)_4 could enhance the adsorption of phosphate whereas HCO~–_ 3 had interfering effect on the phosphate adsorption. The adsorption mechanism was studied by analyzing Zeta potential and FTIR spectroscopy, and the results indicated that the replacement of the surface hydroxyl groups by phosphate ions with the formation of inner-sphere complex played a key role in the phosphate adsorption. The spent adsorbent could be quickly separated from aqueous solution with the assistance of the external magnetic field, and the adsorbed phosphate could be effectively desorbed using a 1 mol/L NaOH solution. Fe 3 O 4 @ SiO 2 magnetic nanoparticles functionalized with mesoporous cerium oxide (Fe_3O_4 @ SiO_2 @ mCeO_2) was fabricated as a novel adsorbent to remove phosphate from water. The prepared adsorbent was characterized by X-ray diffractometry (XRD), transmission electron microscopy (TEM), nitrogen adsorption-desorption and vibrating sample magnetometry (VSM), and its phosphate removal performance was investigated through the batch adsorption studies. Characterization results confirmed that mesoporous cerium oxide was successfully assembled on the surface of Fe_3O_4 @ SiO_2 nanoparticles, and the proposed adsorbent possessed a typical core-shell structure with a BET surface area of ​​195-2 m / g, accessible mesopores of 2.6 nm, and the saturation magnetization of 21.11 emu / g. The newly developed adsorbent had an excellent performance in adsorbing phosphate, and its maximum adsorption capacity calculated from the Langmuir model was 64.07 mg / g. The adsorption was fast, and the kinetic data could be be The fitted of the pseudo-second-order kinetic model. The phosphate removal decreased with the increase of solution of pH (2 to 10), while the higher ionic strength slightly promoted the phosphate adsorption. -) _4 could enhance the adsorption of phosphate on HCO3 ~ -3 had interfering effect on the phosphate adsorption. The adsorption mechanism was studied by analyzing Zeta potential and FTIR spectroscopy, and the results indicated that the replacement of the surface hydroxyl groups by phosphate ions with the formation of inner-sphere complex played a key role in the phosphate adsorption. The spent adsorbent could be quickly separated from aqueous solution with the assistance of the external magnetic field, and the adsorbed phosphate could be effectively desorbed using a 1 mol / L NaOH solution.
其他文献
4月22日,黑龙江省水利厅召开了中小河流水能资源开发规划编制工作视频会议,全省各地(市)水务局通过视频参加了会议。高敏副厅长在会上作了重要讲话,厅水电局局长张学雷传达了
拜耳材料科技公司在其位于德国Domagen的装置投资2 000万美元建多元醇装置,该多元醇是生产聚氨酯的一种前体,用CO2作为一种原料。该装置计划于2016年启动,将有5 000 t/a的产
Three types of semi-cry stalline photovoltaic polymers were synthesized by incorporating a siloxane-terminated organic/inorganic hybrid side-chain and changing
我们报道了一种Pd/Co_3O_4纳米颗粒负载于Al_2O_3纳米片的三元催化剂催化甲烷的高效燃烧。其中,Pd/Co_3O_4负载于碱性氧化铝的复合材料活化甲烷C―H键的能力比Si O_2、Zr O_2
11月23日,中国家居行业年度盛典“红星美凯龙创享星盛典”在常州举行。中国质量认证中心(CQC)主任王克娇,中国家具协会副理事长陈宝光,红星美凯龙集团董事长车建新、副总裁车
《品德与社会》课程标准指出:儿童的生活是课程的基础。儿童的品德和社会性源于他们对生活的认识、体验和感悟。儿童的现实生活对其品德的形成和社会性发展具有特殊的价值。
在小学数学教学中运用多媒体技术,能为学生创设学习情境,充分发挥学生的视听作用,激发学生的学习兴趣,进而有效地提高教学质量和教学效率。  一、多媒体技术的优势  1.多媒体技术能激发学生的兴趣  俗话说:“兴趣是最好的老师。”多媒体技术能为学生提供丰富多彩、生动逼真的教学资源,激发学生的好奇心,提高他们学习的兴趣。如在学习“单价、数量和总价”时,教师可以利用多媒体播放一些购物画面,可以有学生买学习用
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
请下载后查看,本文暂不支持在线获取查看简介。 Please download to view, this article does not support online access to view profile.
土建工程图表达能力是空间思维能力、知识应用能力、工程驾驭能力、行为表达能力等诸多能力的综合体现。文章结合当前土建工程图的表达要求和学生的能力,提出应将空间思维能