开发与应用

废暖贴组分回收用于处理亚甲基蓝染料废水的实验研究

  • 钱春园 ,
  • 李忠山 ,
  • 吴刚 ,
  • 龚智远 ,
  • 移博 ,
  • 张婷
展开
  • 兰州理工大学石油化工学院,兰州 730050
钱春园(1994-),女,硕士研究生,主要从事环境催化方面的研究,E-mail: 805362279@qq.com。

网络出版日期: 2020-12-07

基金资助

兰州理工大学创新创业训练项目(DC2019047);国家自然科学基金(51302123);广东省重点实验室开放基金项目(KF2018001)

Experiment on recycling of waste warm paste component used for treatment of MB in wastewater

  • Qian Chunyuan ,
  • Li Zhongshan ,
  • Wu Gang ,
  • Gong Zhiyuan ,
  • Yi Bo ,
  • Zhang Ting
Expand
  • College of Petrochemical Engineering,Lanzhou University of Technology,Lanzhou 730050

Online published: 2020-12-07

摘要

利用回收的废暖贴组分作为非均相催化剂,采用单因素法讨论H2O2用量、催化剂用量、染料初始浓度和pH等对废水中难降解有机污染物亚甲基蓝(MB)去除效率的影响,并优化非均相Fenton反应体系的操作条件。通过用废暖贴组分对染料废水的处理研究,达到“以废治废”的目的,从而降低废水的处理成本。

本文引用格式

钱春园 , 李忠山 , 吴刚 , 龚智远 , 移博 , 张婷 . 废暖贴组分回收用于处理亚甲基蓝染料废水的实验研究[J]. 化工新型材料, 2020 , 48(11) : 256 -259 . DOI: 10.19817/j.cnki.issn 1006-3536.2020.11.057

Abstract

Using the recovered waste warm paste component as a heterogeneous catalyst,the effect of H2O2 dosage,catalyst dosage,dye initial concentration and pH on the removal efficiency of refractory organic pollutant methylene blue (MB) in wastewater was discussed by single factor method.And optimized the operating conditions of the heterogeneous Fenton reaction system.By using the waste warming paste component to treat the dye wastewater,the purpose of “treating waste by waste” was achieved,thereby reducing the treatment cost of the wastewater.

参考文献

[1] Cong H P,Ren X C,Wang P,et al.Macroscopic multifunctional graphene-based hydrogels and aerogels by a metal ion induced self-assembly process[J].ACS Nano,2012,6(3):2693-2703.
[2] Mahmoodi N M.Synthesis of magnetic carbon nanotube and photocatalytic dye degradation ability[J].Environmental Monitoring & Assessment,2014,186(9):5595-5604.
[3] Yao L,Zhang L,Wang R,et al.A new integrated approach for dye removal from wastewater by polyoxometalates functionalized membranes[J].Journal of Hazardous Materials,2016,301:462-470.
[4] Konicki W,Aleksandrzak M,Mijowska E.Equilibrium,kinetic and thermodynamic studies on adsorption of cationic dyes from aqueous solutions using graphene oxide[J].Chemical Engineering Research & Design,2017,123:35-49.
[5] Lin Y,Ma J,Liu W,et al.Efficient removal of dyes from dyeing wastewater by powder activated charcoal/titanate nanotube nanocomposites:adsorption and photoregeneration[J].Environmental Science and Pollution Research,2019,26(10):10263-10273.
[6] Shuang J,Yi M Z,Chen S L,et al.Recyclable adsorbent of BiFeO3/Carbon for purifying industrial dye wastewater via photocatalyticreproducible[J].Green Energy & Environment,2019,4(1):70-78.
[7] Murray A,rmeci B.Competitive effects of humic acid and wastewater on adsorption of methylene blue dye by activated carbon and non-imprinted polymers[J].Journal of Environmental Sciences,2018,66(4):310-317.
[8] Shi J,Zhang B,Liang S,et al.Simultaneous decolorization and desalination of dye wastewater through electrochemical process[J].Environmental Science and Pollution Research,2018,25(4):1-10.
[9] Zhang Y J,He P Y,Chen H.A novel CdO/graphene alkali-activated steel slag nanocomposite for photocatalytic degradation of dye wastewater[J].Ferroelectrics,2018,522(1):1-8.
[10] Houas A,Lachheb H,Kisibi M,et al.Photocatalytic degradation pathway of methylene blue in water[J].Applied Catalysis B Environmental,2001,31(2):145-157.
[11] Rafatullah M,Sulaiman O,Hashim R,et al.Adsorption of methylene blue on low-cost adsorbents:a review[J].Journal of Hazardous Materials,2010,177(1-3):70-80.
[12] Kannan N,Sundaram M M.Kinetics and mechanism of removal of methylene blue by adsorption on various carbons—a comparative study[J].Dyes and Pigments,2001,51(1):25-40.
[13] 周殷,胡长伟,李建龙.柚子皮吸附水溶液中亚甲基蓝的机理研究[J].环境科学研究,2008,21(5):49-54.
[14] 徐仁扣,赵安珍,肖双成,等.农作物残体制备的生物质炭对水中亚甲基蓝的吸附作用[J].环境科学,2012,33(1):142-146.
[15] 刘晶冰,燕磊,白文荣,等.高级氧化技术在水处理的研究进展[J].水处理技术,2011,37(3):11-17.
[16] 黎华恒.高级氧化技术在难降解工业废水中的应用[J].能源与环境,2019,152(1):81-82.
[17] Monteoliva-García A,Martín-Pascual J,Muío M M,et al.Removal of carbamazepine,ciprofloxacin and ibuprofen in real urban wastewater by using light-driven advanced oxidation processes[J].International Journal of Environmental Science and Technology,2019,16(10):6005-6018.
[18] Diana M P,Espinosa-Barrera P,Rincón-Ortíz J,et al.Advanced oxidation of antihypertensives losartan and valsartan by photo-electro-Fenton at near-neutral pH using natural organic acids and a dimensional stable anode-gas diffusion electrode (DSA-GDE) system under light emission diode (LED) lighting[J].Environmental Science & Pollution Research,2019,26(5):4426-4437.
[19] 王莹莹,赵业军.Fenton氧化法处理苯酚废水的研究[J].山东化工,2018,47(6):161-162.
[20] 奚世超,曹卫宇,徐大刚,等.Fenton氧化法去除废水中青霉素的降解规律及其动力学模型[J].净水技术,2018,37(11):95-102.
[21] Kang Y W,Hwang K Y.Effects of reaction conditions on the oxidation efficiency in the Fenton process[J].Water Research,2000,34(10):2786-2790.
Options
文章导航

/