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活性炭负载Fe/Mo双金属催化剂处理HMX废水研究

王若璇 王守飞 唐俊岚 邹凯健 王小军 周林成 叶正芳

含能材料2026,Vol.34Issue(5):539-550,12.
含能材料2026,Vol.34Issue(5):539-550,12.DOI:10.11943/CJEM2026019

活性炭负载Fe/Mo双金属催化剂处理HMX废水研究

Fe/Mo Bimetallic Catalyst Supported on Activated Carbon for HMX Wastewater Treatment

王若璇 1王守飞 2唐俊岚 1邹凯健 2王小军 2周林成 1叶正芳3

作者信息

  • 1. 兰州大学化学化工学院,甘肃 兰州 730000
  • 2. 甘肃银光化学工业集团有限公司,甘肃 白银 730999
  • 3. 北京大学环境科学与工程学院,北京 100871
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摘要

Abstract

To address the treatment dilemma of HMX production wastewater characterized by complex components,high toxici-ty and poor biodegradability,a heterogeneous Fenton catalyst Fe2.5Mo/AC loaded with Fe/Mo bimetals was prepared via the impregnation-high temperature carbonization method using chitosan-modified activated carbon(AC)as the carrier.The amino functional groups of chitosan were adopted to anchor metal active sites and inhibit the agglomeration of active components;meanwhile,Mo was introduced to construct a Fe-Mo bimetallic synergistic system,which accelerated the Fe³⁺/Fe²⁺ redox cycle and improved the generation efficiency of·OH.Results showed that a stable Fe-Mo-O/N composite structure was formed inside the catalyst with uniformly distributed active sites.Batch experimental results indicated that the catalytic system was applicable to a wide pH range of 2.09-7.15.The removal efficiencies of HMX and COD reached 83.1%and 44.5%,respectively,and the B/C ratio of wastewater was increased from 0.011 to 0.367,presenting an obvious improvement in biodegradability.The optimal reaction conditions were determined as catalyst dosage of 5 g·L-1,H2O2 concentration of 300 mM and reaction temperature of 25℃.Radical quenching experiments combined with electron paramagnetic resonance(EPR)tests verified that·OH,1O2 and·O2-jointly participated in the degradation of HMX.After seven cycles of reuse,the HMX removal rate remained above 70%with extremely low metal leaching capacity.During 14 h continuous operation in the fixed bed reactor,the removal efficiencies of COD and HMX were stably maintained above 70%and 60%,respectively.

关键词

非均相Fenton高级氧化技术/奥克托今(HMX)废水/双金属协同/污染治理/活性炭/可生化系数值(BOD/COD,B/C)

Key words

heterogeneous Fenton advanced oxidation processes/HMX wastewater/bimetallic synergy/contamination remedia-tion/activated carbon/biodegradability coeffient(BOD/COD,B/C ratio)

分类

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引用本文复制引用

王若璇,王守飞,唐俊岚,邹凯健,王小军,周林成,叶正芳..活性炭负载Fe/Mo双金属催化剂处理HMX废水研究[J].含能材料,2026,34(5):539-550,12.

含能材料

1006-9941

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