Micrometer-sized NiOOH hierarchical spheres for enhanced degradation of sulfadiazine via synergistic adsorption and catalytic oxidation in peroxymonosulfate system

被引:3
作者
Cong Lyu [1 ,2 ]
Lu Zhang [1 ,2 ]
Dan He [1 ,2 ]
Boyuan Su [3 ]
Ying Lyu [1 ,2 ]
机构
[1] Key Lab of Groundwater Resources and Environment, Ministry of Education, Jilin University
[2] Jilin Provincial Key Laboratory of Water Resources and Environment, Jilin University
[3] Department of Chemistry and Environmental Science, New Jersey Institute of Technology
基金
中国国家自然科学基金; 国家重点研发计划;
关键词
D O I
暂无
中图分类号
X703 [废水的处理与利用]; TQ426 [催化剂(触媒)];
学科分类号
080502 ; 081705 ; 083002 ;
摘要
As an antibiotic,sulfadiazine has posed a serious threat to humans and ecosystems due to its chronic toxicity.The advanced oxidation processes (AOPs) via heterogeneous catalytic activation of peroxymonosulfate (PMS) have significant potential for the degradation of antibiotics.However,there are multiple restrictions including non-specifically binding to target contaminants,which would deplete oxidation capacity,and lacking energy effectiveness due to inefficient utilization of reactive oxygen species (ROS).To overcome these obstacles,we adopted the“bait-hook&destroy”strategy in this study.Herein,we synthesized a novel micrometer-sized Ni OOH hierarchical spheres assembled from nanosheets,which have relatively large specific surface areas and yield specified cavities to“bait-hook”sulfadiazine and PMS onto the surface cavities.This process was further conductive to effective generation of ROS and subsequently“destruction”of sulfadiazine with elevated mass transformation rate.20.4%of sulfadiazine can adsorb to Ni OOH surface in less than 30 min (0.0051 min-1),and then sulfadiazine was completely degraded in 90min intervals in the Ni OOH/PMS system.The degradation rate constant (k=0.0537 min-1) was about5.3,2.5 and 2.2 times higher than that in Ni2O3/PMS,Ni O/PMS and Ni(OH)2/PMS system,respectively.This was ascribed to the synergistic catalytic oxidation and adsorption process occurred on the surface of Ni OOH.Appreciably,there were both non-radicals (~1O2) and radicals (O2·-and SO4·-) involved in the Ni OOH/PMS system,and~1O2was distinguished as the dominated ROS for degradation of sulfadiazine.This study provides a novel strategy via synergistic adsorption and catalytic oxidation,and indicates that the micrometer-sized Ni OOH hierarchical sphere as heterogeneous catalyst is an attractive candidate for potential application of the SR-AOPs technology in water treatment.
引用
收藏
页码:930 / 934
页数:5
相关论文
共 42 条
  • [1] Efficient activation of peroxymonosulfate by hollow cobalt hydroxide for degradation of ibuprofen and theoretical study.[J].Mingfeng Ma;Long Chen;Jingzhu Zhao;Wen Liu;Haodong Ji;.Chinese Chemical Letters.2019, 12
  • [2] Secondary battery inspired ɑ-nickel hydroxide as an efficient Ni-based heterogeneous catalyst for sulfate radical activation
    Dongting Yue
    Xufang Qian
    Meng Ren
    Mengyuan Fang
    Jinping Jia
    Yixin Zhao
    [J]. Science Bulletin, 2018, 63 (05) : 278 - 281
  • [3] Degradation of acetaminophen by activated peroxymonosulfate using Co(OH) 2 hollow microsphere supported titanate nanotubes: Insights into sulfate radical production pathway through CoOH + activation.[J].Long Chen;Haodong Ji;Juanjuan Qi;Taobo Huang;Chong-Chen Wang;Wen Liu.Chemical Engineering Journal.2021,
  • [4] Insights into catalytic activation of peroxymonosulfate for carbamazepine degradation by MnO 2 nanoparticles in-situ anchored titanate nanotubes: Mechanism; ecotoxicity and DFT study.[J].Fei Pan;Haodong Ji;Penghui Du;Taobo Huang;Chong Wang;Wen Liu.Journal of Hazardous Materials.2021,
  • [5] Pre-accumulation and in-situ destruction of diclofenac by a photo-regenerable activated carbon fiber supported titanate nanotubes composite material: Intermediates; DFT calculation; and ecotoxicity.[J].Chenyuan Dang;Fengbin Sun;Huan Jiang;Taobo Huang;Wen Liu;Xingmin Chen;Haodong Ji.Journal of Hazardous Materials.2020, prepublish
  • [6] A concentrate-and-destroy technique for degradation of perfluorooctanoic acid in water using a new adsorptive photocatalyst.[J].Fan Li;Zongsu Wei;Ke He;Lee Blaney;Xinquan Cheng;Tianyuan Xu;Wen Liu;Dongye Zhao.Water Research.2020,
  • [7] Can Cu 2 ZnSnS 4 nanoparticles be used as heterogeneous catalysts for sulfadiazine degradation?.[J].Haojie Zhang;Chan Zhou;Hanxuan Zeng;Lin Deng;Zhou Shi.Journal of Hazardous Materials.2020, prepublish
  • [8] Efficient removal of triclosan via peroxymonosulfate activated by a ppb level dosage of Co(II) in water: Reaction kinetics; mechanisms and detoxification.[J].Jianbiao Peng;Chaonan Zhang;Yaozong Zhang;Shuai Shao;Pingping Wang;Guoguang Liu;Hang Dong;Dexin Liu;Jialu Shi;Zhiguo Cao;Haijin Liu;Shixiang Gao.Ecotoxicology and Environmental Safety.2020, C
  • [9] Enhanced degradation of clothianidin in peroxymonosulfate/catalyst system via core-shell FeMn N-C and phosphate surrounding.[J].Pijun Duan;Yuanfeng Qi;Shanshan Feng;Xiaoming Peng;Wei Wang;Yue Yue;Yanan Shang;Yanwei Li;Baoyu Gao;Xing Xu.Applied Catalysis B: Environmental.2020, @
  • [10] Effect of molecular structure on the adsorption affinity of sulfonamides onto CNTs: Batch experiments and DFT calculations.[J].Yunbo Liu;Yunlan Peng;Baohua An;Laicai Li;Yong Liu.Chemosphere.2020,