發表論文:
[1].Construction of multivariate donor‐acceptor heterojunction in covalent organic frameworks for enhanced photocatalytic oxidation: Regulating electron transfer and superoxide radical generation, Chinese Journal of Catalysis, 2024, 66, 181-194
[2].Tuning intramolecular charge transfer of covalent organic frameworks with triazine structure for enhanced peroxymonosulfate activation performance on the catalytic degradation of organic pollutants under visible light irradiation, Separation and Purification Technology, 2024, 340, 126659
[3].Reduction strategies of polycyclic aromatic hydrocarbons in farmland soils: Microbial degradation, plant transport inhibition, and their mechanistic analysis, Journal of Hazardous Materials, 2024, 465, 133397
[4].Improved microbial-plant soil bioremediation of PAHs and heavy metal through in silico methods, Journal of Hazardous Materials, 2024, 478, 135524
[5].The overlooked reaction of H2O2 decomposition over carbonaceous cathodes, Separation and Purification Technology, 2024, 349, 127809
[6].CoOOH with a highly negative CB band for visible-light-driven photocatalytic degradation of refractory organic pollutants in peroxymonosulfate system: Enhanced performance and multi-path synergetic mechanisms, Journal of Hazardous Material, 2023, 460, 132403
[7].Quantitatively regulating the ketone structure of covalent triazine-based frameworks for efficient visible-light photocatalytic degradation of organic pollutants: tunable performance and mechanisms. Journal of Hazardous Material, 2023, 444, 130366
[8].Adsorption-enhanced photocatalytic waterborne virus inactivation by graphite carbon nitride conjugated with covalent organic frameworks, Chemical Engineering Journal, 2023, 472, 144893
[9].Regulating energy band structures of triazine covalent organic frameworks with electron-donating/withdrawing substituents for visible-light-responsive photocatalytic tetracycline degradation and Cr (VI) reduction, Journal of Hazardous Material, 2023, 446, 130756
[10].Electron-rich ketone-based covalent organic frameworks supported nickel oxyhydroxide for highly efficient peroxymonosulfate activation and sulfadiazine removal: performance and multi-path reaction mechanisms. Separation and Purification Technology, 2022, 121350
[11].Micrometer-sized NiOOH hierarchical spheres for enhanced degradation of sulfadiazine via synergistic adsorption and catalytic oxidation in peroxymonosulfate system. Chinese Chemical Letters, 2022, 33 (2), 930-934
[12].Enhanced catalytic oxidation of 2,4-dichlorophenol via singlet oxygen dominated peroxymonosulfate activation on CoOOH@Bi2O3 composite. Frontiers of Environmental Science and Engineering, 2021
[13].A novel MnOOH coated nylon membrane for efficient removal of 2,4-dichlorophenol through peroxymonosulfate activation. Journal of Hazardous Material, 2021, 414, 125526
[14].劉彪; 蘇紅時; 劉兆煐; 宋微; 國營; 呂聰*.東北某城市臭氧污染特征及影響因素分析.世界地質, 2021, 40(01): 210-217.
[15].Qihui Zhang; Dan He; Xinran Li; Wei Feng; Cong Lyu*; Yifeng Zhang.Mechanism and performance of singlet oxygen dominated peroxymonosulfate activation on CoOOH nanoparticles for 2,4-dichlorophenol degradation in water. Journal of Hazardous Material, 2020, 384: 1-8
[16].New insights into MnOOH/peroxymonosulfate system for catalytic oxidation of 2, 4-dichlorophenol: Morphology dependence and mechanisms. Chemosphere 2020, 255, 126961
[17].Facile synthesis and synergistic mechanism of CoFe2O4@three-dimensional graphene aerogels towards peroxymonosulfate activation for highly efficient degradation of recalcitrant organic pollutants. Science of The Total Environment 2020, 749, 141466
[18].Enhanced catalytic oxidation of benzotriazole via peroxymonosulfate activated by CoFe2O4 supported onto nitrogen-doped three-dimensional graphene aerogels. Chemical Engineering Journal, 2020, 400, 125897
[19].呂聰; 鞠魯男; 劉佳露; 任航; 趙治權; 方晨; 李晨陽; 杜軍.cDCE好氧礦化菌群的多樣性及群落結構特征.華南理工大學學報(自然科學版), 2019, (09): 107-112+138.
[20].張鳳君; 劉哲華; 蘇小四; 呂聰; 劉佳露.土壤類型及組分對熱活化過硫酸鹽氧化降解土壤中揮發性氯代烴的影響.吉林大學學報(地球科學版), 2018, (04): 1212-1220.
[21.Cong Lu, Xuejiao Yang, Shengyu Zhang, Qihui Zhang, Xiao-si Su, Preparation and performance of manganese-oxide-coated zeolite for the removal of manganese-contamination in groundwater, Environmental Technology, 2017, 1-10, DOI: 10.1080/**.2017.**(SCI, IF=1.751)
[22].Jialu Liu, Fengjun Zhang, Xuejiao Yang, Yongjuan Zhu, Rensheng Li,Cong Lu,*. Chelated Fe(II) activated persulfate oxidation of phenol: experimental optimization, reaction kinetics and mechanism, Fresenius Environmental Bulletin, 2017, 26(6): 3979-3985.(SCI, IF=0.425)
[23].Jialu Liu, Zhehua Liu, Fengjun Zhang, Xiaosi Su,Cong Lu *, Thermally activated persulfate oxidation of NAPL chlorinated organic compounds: effect of soil composition on oxidant demand in different soil-persulfate systems, Water Science & Technology, 2017, 75(8): 1794-1803(SCI, IF=1.046)
[14].王博強,李晨陽,汪治,盧偉,張冬至,呂聰*,沈福東,CO2-咸水-砂巖相互作用過程中微生物群落結構動態變化特征,環境科學,2017. 38(07):344-353(EI)
[25].董招君; 蔣惠忠; 牛姝; 呂聰; 張鳳君.環境化學實驗教學改革新思路.教育教學論壇, 2017, (52): 276-278.
[26].Shuo Pang, Ji-guo Huang, Yun Su, Bo Geng, Su-yuan Lei, Yu-ting Huang,Cong Lu *, Xing-juan Liu, Synthesis and Modification of Zn-doped TiO2 Nanoparticles for the Photocatalytic Degradation of Tetracycline, Photochemistry and Photobiology, 2016, 92(5): 651-657. (SCI, IF=2.088)
[27].Cong Lu, Dandan Zhou, Jun Wang, Removal of multi-dye wastewater by the novel integrated adsorption and Fenton oxidation process in a fluidized bed reactor, Environmental Science and Pollution Research, 2016, 23(20) :20893–20903.(SCI, IF=2.760)
[28].Chenyang Li, Fengjun Zhang,Cong Lu,*, Jie Hao , Jianbin Song, Shengyu Zhang, Effects of H2S injection on the CO2-brine-sandstone interaction under 21 MPa and 70 °C, Marine Pollution Bulletin, 2016,10617–10624. (SCI, IF=3.099)
[29].Tianye Wang, Fengjun Zhang, Guosheng Xiao, Shuang Zhong,Cong Lu*. Synthesis of Bi2WO6/Bi2O3 composite with enhanced photocatalytic activity by a facile one-step hydrothermal synthesis route. Photochemistry and Photobiology, 2015, 91(2):291-297. (SCI, IF=2.684)
[30].Han Jia, Jialu Liu, Shuang Zhong, Fengjun Zhang, Zhuo Xu, Xijun Gong,Cong Lu*, Manganese oxide coated river sand for Mn(II) removal from groundwater. Journal of Chemical Technology & Biotechnology 2015, 90(9): 1727-1734 (SCI, IF=2.494).
[31].Fengjun Zhang, Wei Lu, Guosheng Xiao, Zhuojing Liu, Fanwei Xing,Cong Lu,*. The Effect of pH Values on the Synthesis, Microstructure and Photocatalytic Activity of Ce-Bi2O3 by a Two-Step Hydrothermal Method. Photochemistry and Photobiology 2015. 91, 1064-1070. (SCI, IF=2.684)
[32].Fengjun Zhang, Zijian Liu, Wei Lu,Cong Lu,*, Chuan Lyu, Xiansheng WangThe Synthesis and Photocatalytic Properties of TiO2 Nanotube Array by Starch-Modified Anodic Oxidation, Photochemistry and Photobiology 2015, 91(6): 1309-1314 (IF=2.684)
[33].Cong Lu, Yan Sun, Jialu Liu, Xiansheng Wang, Su-Ling Liu, Wei Feng*, Enhanced photochromism of heteropolyacid/polyvinylpyrolidone composite film by TiO2 doping. Journal of Applied Polymer Science, 2015, 132(10) (SCI, IF=1.5).
[34].劉佳露,盧偉,張鳳君,蘇小四,朱永娟,李仁聲,呂聰*,活化過硫酸鹽去除地下水中苯酚的動力學研究.中國環境科學, 2015,35(9):2677~2681(EI)
[35].張鳳君; 賈晗; 劉佳露; 董佳新; 盧偉; 呂聰.有機氯代烴在壤土中的吸附和解吸特性.吉林大學學報(地球科學版), 2015, (05): 1515-1522.
[36].Jing Zhao, Wei Lu, Fengjun Zhang,Cong Lu*, Juanjuan Du, Rongyue Zhu, Lei Sun, eva luation of CO2 solubility-trapping and mineral-trapping in microbial-mediated CO2-brine-sandstone interaction. Mar Pollut Bull 2014, 85, (1), 78-85. (SCI, IF=2.793)
[37].Jialu Liu, Xijun Gong, Shijun Song, Fengjun Zhang,Cong Lu*, Heat-Activated Persulfate Oxidation of Chlorinated Solvents in Sandy Soil. J Spectrosc 2014 (SCI, IF=0.831).
[38].Cong Lu*, Mette M. Broholm, Ida L. Fabriciusc, Poul L. Bjerg, Determination of Matrix Pore Size Distribution in Fractured Clayey Till and Assessment of Matrix Migration of Dechlorinating Bacteria. Bioremediat J 2014 18, 295-308. (SCI, IF=0.714)
[39].呂聰; 張鳳君; 鄒東雷; 周丹丹; 牛姝; 趙曉波.“科技文獻檢索”課程研究性教學改革與創新.科教文匯(上旬刊), 2014, (08): 42-43.
[40].張鳳君; 劉兆煐; 李晨陽; 陶怡; 呂聰.油頁巖原位開采的大氣環境風險評估.科技導報, 2013, (26): 44-47.
[41].Cong Lu, Mette M. Broholm, Fengjun Zhang, Poul L. Bjerg. Sorption of chlorinated solvents and degradation products on natural clayey tills. Chemosphere. 2011, 83, 1467-1474 (SCI, IF=3.25).
[42].Cong Lu, Fengjun Zhang, Ying Lu, Yi Liu, Shuang Zhong. Screening and Identification of Aerobic Denitrifier with Nitrite as Substrate. The Workshop on Civil Engineering and Energy Engineering (CEEE), 2011, pp. 3418 - 3421. (EI).
[43].Cong Lu, Fengjun Zhang, Yi Liu, Xinjing Peng and Ying Liu. Breeding efficient aerobic denitrifier by UV-irradiation. Chemical, Biological and Environmental Engineering (ICBEE), 2010 2nd International Conference, 2010, pp. 212-215. (SCI/EI).
[44].張鳳君;賈晗;劉佳露;董佳新;盧偉;呂聰*.有機氯代烴在黏土類土壤中的吸附和解吸特性.吉林大學學報(地球科學版) 2015, 45(5): 1515-1522.
[45].肖國生,劉佳露,劉卓婧,張鳳君,呂聰*, Ce摻雜Bi_2O_3光催化劑的制備、表征及其可見光催化性能.發光學報, 2014(08), 956-963.(EI)
[46].呂聰;張鳳君;鄒東雷;周丹丹;牛姝;趙曉波,“科技文獻檢索”課程研究性教學改革與創新.科教文匯(上旬刊) 2014, (08), 42-43.
[47].張鳳君;劉兆煐;李晨陽;陶怡;呂聰*,油頁巖原位開采的大氣環境風險評估.科技導報2013, (26), 44-47.
[48].張鳳君;賈晗;李晨陽;孟慶玲;趙靜;呂聰*,生物曝氣技術修復地下水中的苯和二甲苯實驗研究.科技導報2013, (19), 53-57.
[49].劉卓婧;宮喜君;張鳳君;呂聰*;趙靜,摻雜銪氧化鉍光催化劑的制備及其可見光的光催化性能.吉林大學學報(理學版) 2013, (03), 538-544.
[50].張鳳君;劉卓婧;劉兆煐;賈春玉;趙旭;呂聰*, TiO2光催化劑改性研究進展.科技導報2013, (17), 66-71.
[51].張鳳君;王斯佳;馬慧;呂聰;王禹博,三氯乙烯和四氯乙烯在土壤和地下水中的污染及修復技術.科技導報2012, (18), 65-72.
[52].溫海威;呂聰;王天野;王禹博;張鳳君,沈陽地區農村地下飲用水中重金屬健康風險評價.中國農學通報2012, (23), 242-247.
[53].陶怡;王霄;呂聰;張鳳君;吳耀文;孫健,減壓膜蒸餾法處理苯胺廢液研究.水處理技術2012, (07), 45-48.
[54].孟慶玲;張力文;呂聰;張鳳君;丁照權,生物曝氣技術對石油類污染地下水的修復效果及去除機制.吉林大學學報(地球科學版) 2012, (S1), 402-407.
[55].鐘爽;呂聰;王斯佳;張鳳君;朱磊,接觸氧化除錳濾池的快速啟動.化工學報2011, (05), 1435-1440.
[56].呂聰;馬玖彤;劉懿;張鳳君,紫外誘變選育優勢好氧反硝化菌株.環境科學學報2008, (10), 1976-1980.
[57].呂聰;馬玖彤;劉懿;張鳳君.紫外誘變選育低亞硝酸鹽積累的好氧反硝化菌株, 2008中國環境科學學會學術年會,中國重慶, 2008;中國重慶, 2008; pp 2351-2352-2353-2354-2355-2356.