JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究

鲁锋 牛塬塬 谷玉娜 韩秀丽

鲁锋, 牛塬塬, 谷玉娜, 等. 响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究[J]. 轻工学报, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
引用本文: 鲁锋, 牛塬塬, 谷玉娜, 等. 响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究[J]. 轻工学报, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
LU Feng, NIU Yuanyuan, GU Yuna and et al. Response surface methodology for optimization of pefloxacin adsorption using activated carbon prepared from corncob[J]. Journal of Light Industry, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
Citation: LU Feng, NIU Yuanyuan, GU Yuna and et al. Response surface methodology for optimization of pefloxacin adsorption using activated carbon prepared from corncob[J]. Journal of Light Industry, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013

响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究

    作者简介: 鲁锋(1980-),男,河南省周口市人,河南省周口生态环境监测中心高级工程师,主要研究方向为大气环境检测。E-mail:46436185@qq.com;
  • 基金项目: 国家自然科学基金项目(22178328)
    生物质资源加工与高效利用杰出外籍科学家工作室资助项目(GZS2022007)

  • 中图分类号: X703.1

Response surface methodology for optimization of pefloxacin adsorption using activated carbon prepared from corncob

  • Received Date: 2021-05-24
    Accepted Date: 2022-03-26

    CLC number: X703.1

  • 摘要: 以农业废弃物玉米芯为原料,采用水蒸气活化法制备玉米芯基活性炭,研究其对水体中培氟沙星 (PFX)的吸附性能。结果表明:玉米芯基活性炭的微孔结构丰富,采用响应面法中Box-Behnken design模型优化出的最佳吸附条件为玉米芯基活性炭用量0.6 g/L,吸附时间382 min,PFX溶液pH值3.76;Langmuir和Koble-Corrigan等温吸附模型可以很好地描述玉米芯基活性炭对PFX的吸附过程;玉米芯基活性炭对PFX的吸附是一个自发吸热的熵增过程;吸附过程符合准二级动力学模型;当吸附温度为298 K时,玉米芯基活性炭对PFX的最大吸附量为70.42 mg/g,可用于PFX废水的处理。
    1. [1]

      ZHANG C L,CUI S J,WANG Y.Adsorption removal of pefloxacin from water by halloysite nanotubes[J].Journal of Industrial and Engineering Chemistry,2015,23:12-15.

    2. [2]

      ZHOU Y Y,HE Y Z,XIANG Y J,et al.Single and simultaneous adsorption of pefloxacin and Cu (Ⅱ) ions from aqueous solutions by oxidized multiwalled carbon nanotube[J].Science of the Total Environment,2019,646:29-36.

    3. [3]

      YU J,VODYANIK M A,SMUGA-OTTO K,et al.Bacteria subsisting on antibiotics[J].Science, 2007, 318(5858):1917-1920.

    4. [4]

      YIP C,LEE A J.Gatifloxacin-induced hyperglycemia:A case report and summary of the current literature[J].Clinical Therapeutics,2006,28(11):1857-1866.

    5. [5]

      CHEN K,ZHOU J L.Occurrence and behavior of antibiotics in water and sediments from the Huangpu River, Shanghai, China[J].Chemosphere,2014,95:604-612.

    6. [6]

      CHEN J,LIU Y S,ZHANG J N,et al.Removal of antibiotics from piggery wastewater by biological aerated filter system:Treatment efficiency and biodegradation kinetics[J].Bioresource Technology,2017,238:70-77.

    7. [7]

      BELTRÁN F J,AGUINACO A,GARCÍA-ARAYA J F,et al.Ozone and photocatalytic processes to remove the antibiotic sulfamethoxazole from water[J].Water Research,2008,42(14):3799-3808.

    8. [8]

      LIU X C,YANG D X,ZHOU Y Y,et al.Electrocatalytic properties of N-doped graphite felt in electro-Fenton process and degradation mechanism of levofloxacin[J].Chemosphere,2017,182:306-315.

    9. [9]

      姜鹏,李一兵,童雅婷,等.氧化石墨烯负载零价纳米铁吸附水中环丙沙星的研究[J].环境科学学报,2016,36(7):2443-2450.

    10. [10]

      MALIK R,GOYAL A,YADAV S,et al.Functionalized magnetic nanomaterials for rapid and effective adsorptive removal of fluoroquinolones:Comprehensive experimental cum computational investigations[J]. Journal of Hazardous Materials, 2019, 364:621-634.

    11. [11]

      XIANG Y J,YANG X,XU Z Y,et al. Fabrication of sustainable manganese ferrite modified biochar from vinasse for enhanced adsorption of fluoroquinolone antibiotics:Effects and mechanisms[J].Science of the Total Environment,2020,709:136079.

    12. [12]

      HAN X L,HE Y,ZHAO H H,et al.Optimization of preparation conditions of activated carbon from the residue of desilicated rice husk using response surface methodology[J].Korean Journal of Chemical Engineering,2014,31(10):1810-1817.

    13. [13]

      ZHANG X B,ZHANG Y C,NGO H H,et al.Characterization and sulfonamide antibiotics adsorption capacity of spent coffee grounds based biochar and hydrochar[J]. Science of the Total Environment,2020,716:137015.

    14. [14]

      ZHANG X Y,HAN X L,CHANG C,et al.Bisphenol S adsorption with activated carbon prepared from corncob:Optimization using response surface methodology[J]. International Journal of Chemical Engineer,2020,18(4):1-12.

    15. [15]

      YU X,HAN Z J,FANG S Q,et al.Optimized preparation of high value-added activated carbon and its adsorption properties for methylene blue[J].International Journal of Chemical Reactor Engineering,2019,17(8):1-16.

    16. [16]

      HU Q S,LIU Y L,GU X Y,et al.Adsorption behavior and mechanism of different arsenic species on mesoporous MnFe2O4 magnetic nanoparticles[J]. Chemosphere,2017,181:328-336.

    17. [17]

      马志强,胥思勤,彭刚毅,等.富里酸对金属Sb (Ⅲ)的吸附作用研究[J].应用化工,2020,49(9):2190-2194.

    18. [18]

      HAMILTON A R,HUTCHEON G A,ROBERTS M,et al.Formulation and antibacterial profiles of clay-ciprofloxacin composites[J].Applied Clay Science,2014,87:129-135.

    1. [1]

      方亦成杨菁陆诚玮冯奇汪旭 . 基于层次分析法的加热卷烟感官评价指标筛选及其权重建立. 轻工学报, 2024, 39(2): 107-113. doi: 10.12187/2024.02.014

    2. [2]

      吴澄宇李迎秋 . 韭花精油主成分对单增李斯特氏菌的抑菌活性和抑菌机理. 轻工学报, 2024, 39(2): 36-42. doi: 10.12187/2024.02.005

  • 加载中
计量
  • PDF下载量:  17
  • 文章访问数:  496
  • 引证文献数: 0
文章相关
  • 收稿日期:  2021-05-24
  • 修回日期:  2022-03-26
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索
鲁锋, 牛塬塬, 谷玉娜, 等. 响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究[J]. 轻工学报, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
引用本文: 鲁锋, 牛塬塬, 谷玉娜, 等. 响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究[J]. 轻工学报, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
LU Feng, NIU Yuanyuan, GU Yuna and et al. Response surface methodology for optimization of pefloxacin adsorption using activated carbon prepared from corncob[J]. Journal of Light Industry, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013
Citation: LU Feng, NIU Yuanyuan, GU Yuna and et al. Response surface methodology for optimization of pefloxacin adsorption using activated carbon prepared from corncob[J]. Journal of Light Industry, 2022, 37(5): 105-112. doi: 10.12187/2022.05.013

响应面法优化玉米芯基活性炭对培氟沙星的吸附性能研究

    作者简介:鲁锋(1980-),男,河南省周口市人,河南省周口生态环境监测中心高级工程师,主要研究方向为大气环境检测。E-mail:46436185@qq.com
  • 1. 河南省周口生态环境监测中心, 河南 周口 466000;
  • 2. 郑州大学 化工学院, 河南 郑州 450001;
  • 3. 河南省杰出外籍科学家工作室, 河南 郑州 450001
基金项目:  国家自然科学基金项目(22178328)生物质资源加工与高效利用杰出外籍科学家工作室资助项目(GZS2022007)

摘要: 以农业废弃物玉米芯为原料,采用水蒸气活化法制备玉米芯基活性炭,研究其对水体中培氟沙星 (PFX)的吸附性能。结果表明:玉米芯基活性炭的微孔结构丰富,采用响应面法中Box-Behnken design模型优化出的最佳吸附条件为玉米芯基活性炭用量0.6 g/L,吸附时间382 min,PFX溶液pH值3.76;Langmuir和Koble-Corrigan等温吸附模型可以很好地描述玉米芯基活性炭对PFX的吸附过程;玉米芯基活性炭对PFX的吸附是一个自发吸热的熵增过程;吸附过程符合准二级动力学模型;当吸附温度为298 K时,玉米芯基活性炭对PFX的最大吸附量为70.42 mg/g,可用于PFX废水的处理。

English Abstract

参考文献 (18) 相关文章 (2)

目录

/

返回文章