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Efficient removal of atrazine in water with a Fe3O4/MWCNTs nanocomposite as a heterogeneous Fenton-like catalyst

机译:用Fe3O4 / MWCNTs纳米复合材料作为非均相Fenton催化剂有效去除水中的r去津

摘要

Fe3O4 and multi-walled carbon nanotube hybrid materials (Fe3O4/MWCNTs) were synthesized by a coprecipitation combined hydrothermal method. The nanocomposites were applied for adsorption and degradation of atrazine (ATZ) in the presence of H2O2. The obtained catalysts were characterized by TEM, XRD, BET, XPS and Raman spectroscopy. The effects of solution pH, catalysts dosage, H2O2 concentration and iron leaching on the degradation of ATZ were investigated. Fe3O4/MWCNTs showed a higher utilization efficiency of H2O2, higher ability of adsorption for ATZ and higher degradation efficiency of ATZ than Fe3O4 nanoparticles in the batch degradation experiment. The degradation efficiency increased with the solution pH decreasing from 8.0 to 3.0. The catalytic results showed that Fe3O4/MWCNTs presented good performance for the degradation of ATZ, achieving 81.4% decomposition of ATZ after 120 min at reaction conditions of H2O2 concentration 3.0 mmol L-1, catalysts dosage 0.1 g L-1, ATZ concentration 10.0 mg L-1, pH 5.0 and T 30 degrees C. Three degradation products (desethylatrazine, desisopropylatrazine, and 2-hydroxyatrazine) were detected during a heterogeneous Fenton reaction in solution. The stability, and reusability of Fe3O4/MWCNTs for ATZ degradation were also investigated.
机译:采用共沉淀水热法合成了Fe3O4和多壁碳纳米管杂化材料(Fe3O4 / MWCNTs)。该纳米复合材料用于在过氧化氢存在下吸附和降解阿特拉津(ATZ)。通过TEM,XRD,BET,XPS和拉曼光谱对所获得的催化剂进行表征。研究了溶液pH,催化剂用量,H2O2浓度和铁浸出对ATZ降解的影响。在分批降解实验中,Fe3O4 / MWCNTs与Fe3O4纳米颗粒相比,具有更高的H2O2利用率,更高的ATZ吸附能力和更高的ATZ降解效率。降解效率随着溶液pH从8.0降低到3.0而增加。催化结果表明,Fe3O4 / MWCNTs在H2O2浓度为3.0 mmol L-1,催化剂用量为0.1 g L-1,ATZ浓度为10.0 mg的条件下反应120 min,降解ATZ的性能良好,分解率为81.4%。 L-1,pH 5.0和T 30摄氏度。在溶液中的非均相Fenton反应过程中检测到三种降解产物(去乙基阿特拉津,去异丙基阿特拉津和2-羟基阿特拉津)。还研究了Fe3O4 / MWCNTs对ATZ降解的稳定性和可重复使用性。

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