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基于非金属中空球臭氧催化氧化协同光催化系统处理新污染物实验设计 被引量:1
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作者 刘芳 陈淑华 +3 位作者 李晨星 朱本洁 李石 王永强 《实验技术与管理》 CAS 北大核心 2022年第12期10-17,共8页
为强化学生对新污染物处理以及以废制废的环保意识,在双碳背景下,提出臭氧催化氧化协同光催化(COP)技术强化对新污染物的降解。以非金属原料氮化碳纳米管、改进的水热浒苔生物炭和改性硅藻土制备催化剂,得到生物炭基非金属中空多孔球负... 为强化学生对新污染物处理以及以废制废的环保意识,在双碳背景下,提出臭氧催化氧化协同光催化(COP)技术强化对新污染物的降解。以非金属原料氮化碳纳米管、改进的水热浒苔生物炭和改性硅藻土制备催化剂,得到生物炭基非金属中空多孔球负载CN(HSC-CN)材料,构建了非金属臭氧催化氧化协同光催化系统(HSC-CN/COP),基于臭氧催化氧化协同光催化的耦合效应,提高污染物降解效率。20min内对新污染物四环素(TC)和对硝基苯酚(PNP)的降解率分别可达90.1%和84.3%。对二级出水的良好处理效果也证明了其作为深度处理工艺的潜力。该实验旨在:促进学生对水处理工艺及新污染物的了解,培养学生以废治废、创新传统工艺的意识,加深学生对水处理专业知识的理解,提高学生解决复杂工程问题的能力。 展开更多
关键词 臭氧催化氧化协同光催化 中空多孔球 新污染物 浒苔生物炭 氮化碳纳米管
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KBrO_3协同载贵金属TiO2光催化降解阿莫西林 被引量:3
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作者 田斐 朱荣淑 +1 位作者 董文艺 欧阳峰 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2013年第10期41-47,共7页
为提高二氧化钛光催化去除阿莫西林的效率,利用光沉积法制备了载贵金属TiO2催化剂(M/TiO2,M为Ru、Rh、Pd、Ag、Ir、Pt或Au),研究紫外光(365 nm)下KBrO3协同M/TiO2光催化降解阿莫西林的活性,并以KBrO3协同Rh/TiO2研究实验条件对催化活性... 为提高二氧化钛光催化去除阿莫西林的效率,利用光沉积法制备了载贵金属TiO2催化剂(M/TiO2,M为Ru、Rh、Pd、Ag、Ir、Pt或Au),研究紫外光(365 nm)下KBrO3协同M/TiO2光催化降解阿莫西林的活性,并以KBrO3协同Rh/TiO2研究实验条件对催化活性的影响.结果表明:M/TiO2光催化降解阿莫西林的催化活性与贵金属的功函数密切相关;KBrO3对不同M/TiO2光催化降解阿莫西林的反应均具有很好的协同效果;在Rh载量为0.1%(质量分数)、催化剂质量浓度为0.15 g/L、KBrO3浓度为0.5 mmol/L、溶液pH为5的条件下,20 mg/L的阿莫西林溶液90 min光催化降解率达100%,且该反应符合一级反应动力学模型. 展开更多
关键词 溴酸钾 协同光催化 载贵金属二氧化钛 阿莫西林 功函数 动力学
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Na and O Co-doped Carbon Nitride for Efficient Photocatalytic Hydrogen Evolution
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作者 CHEN Libo SHENG Ying +3 位作者 WU Ming SONG Jiling JIAN Jian SONG Erhong 《无机材料学报》 北大核心 2025年第5期552-560,I0011,I0012,共11页
Elemental doping is an effective strategy for tuning the band structure of graphite carbon nitride(CN)to enhance its photocatalytic performance.In this study,sodium(Na)and oxygen(O)co-doped carbon nitride(Na/O-CN_(x),... Elemental doping is an effective strategy for tuning the band structure of graphite carbon nitride(CN)to enhance its photocatalytic performance.In this study,sodium(Na)and oxygen(O)co-doped carbon nitride(Na/O-CN_(x),x=1.0,2.0,3.0,4.0)was synthesized via solid-phase reaction of sodium citrate(NaCA)and pure CN powder in the Teflon-sealed autoclave under air conditions at 180℃.Surface area of Na/O-CN_(3.0) is measured to be 18.8 m^(2)/g,increasing by 60.7%compared to that of pure CN(11.7 m^(2)/g).Bandgap energy of Na/O-CN_(3.0) is determined to be 2.68 eV,marginally lower than that of pure CN(2.70 eV),thereby enhancing its capacity for sunlight absorption.Meanwhile,the incorporation of Na and O atoms into Na/O-CN_(x) is found to effectively reduce recombination rates of photogenerated electron-hole pairs.As a result,Na/O-CN_(x) samples exhibit markedly enhanced photocatalytic hydrogen evolution activity under visible light irradiation.Notably,the optimal Na/O-CN_(3.0) sample achieves a photocatalytic hydrogen production rate of 103.2μmol·g^(–1)·h^(–1),which is 8.2 times greater than that of pure CN(11.2μmol·g^(–1)·h^(–1)).Furthermore,a series of Na/O-CN_(x)-yO_(2)(y=0,20%,40%,60%,80%,100%)samples were prepared by modulating the oxygen content within reaction atmosphere.The catalytic performance evaluations reveal that the incorporation of both Na and O atoms in Na/O-CN_(3.0) enhances photocatalytic activity.This study also introduces novel methodologies for synthesis of metal atom-doped CN materials at lower temperature,highlighting the synergistic effect of Na and O atoms in photocatalytic hydrogen production of Na/O-CN_(x) samples. 展开更多
关键词 Na and O co-doped carbon nitride synergistic effect visible light photocatalytic hydrogen evolution
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Co-enhancement of doped N and oxygen vacancies on the photocatalytic performance of ceria:Mechanism and influence of crystal faces
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作者 WANG Fan LI Jun-qi +3 位作者 MURALI Arun CHEN Chao-yi ZHANG Wei LAN Yuan-pei 《Journal of Central South University》 2025年第6期2129-2147,共19页
Nitrogen doping has significant effects on the photocatalytic performance of ceria(CeO_(2)),and the possible synergistic effect with the inevitably introduced abundant oxygen vacancies(OVs)is of great significance for... Nitrogen doping has significant effects on the photocatalytic performance of ceria(CeO_(2)),and the possible synergistic effect with the inevitably introduced abundant oxygen vacancies(OVs)is of great significance for further investigation,and the specifically exposed crystal faces of CeO_(2)may have an impact on the performance of nitrogen doped CeO_(2).Herein,nitrogen-doped CeO_(2)with different morphologies and exposed crystal faces was prepared,and its performances in the photocatalytic degradation of tetracycline(TC)or hydrogen production via water splitting were evaluated.Density functional theory(DFT)was used to simulate the band structures,density of states,and oxygen defect properties of different CeO_(2)structures.It was found that nitrogen doping and OVs synergistically promoted the catalytic activity of nitrogen-doped CeO_(2).In addition,the exposed crystal faces of CeO_(2)have significant effects on the introduction of nitrogen and the ease of OV generation,as well as the synergistic effect of nitrogen doping with OVs.Among them,the rod-like nitrogen-doped CeO_(2)with exposed(110)face(R-CeO_(2)-NH_(3))showed a photocatalytic degradation ratio of 73.59%for TC and hydrogen production of 156.89μmol/g,outperforming other prepared photocatalysts. 展开更多
关键词 nitrogen doping CeO 2 oxygen vacancies synergistic effect crystal faces PHOTOCATALYSIS
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表面电性对TiO_(2)纳米管-SiC复合填料去除养殖废水中氨氮效率的影响研究 被引量:1
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作者 洪泽 欧阳晶莹 +1 位作者 李佳欣 郑瀚 《饲料研究》 CAS 北大核心 2024年第19期75-79,共5页
试验旨在探究二氧化钛(TiO_(2))纳米管-碳化硅(SiC)复合填料在净化养殖废水方面的性能。试验采用不同前驱体通过碱性水热合成方法合成3种不同粒径和晶相的TiO_(2)纳米管,测试了3种TiO_(2)纳米管的表面电性、X射线衍射图谱和场发射扫描... 试验旨在探究二氧化钛(TiO_(2))纳米管-碳化硅(SiC)复合填料在净化养殖废水方面的性能。试验采用不同前驱体通过碱性水热合成方法合成3种不同粒径和晶相的TiO_(2)纳米管,测试了3种TiO_(2)纳米管的表面电性、X射线衍射图谱和场发射扫描电镜。研究TiO_(2)纳米管负载于SiC片上并覆盖微生物膜后,在紫外光照射和黑暗条件下去除养殖废水中氨氮污染物的性能。结果表明,晶相为锐钛矿的前驱体合成的TiO_(2)纳米管表面带负电,晶相为金红石和锐钛矿混合的前驱体合成的TiO_(2)纳米管表面带正电,而表面带正电的TiO_(2)纳米管能促进带生物负电的微生物的挂膜,进而促进对养殖废水中氨氮的去除作用;其中,负载P25 TiO_(2)纳米管的SiC片对氨氮的去除率在紫外光照射和黑暗条件下的去除率分别为86.1%和58.9%。研究表明,与黑暗条件相比,紫外光照射会影响TiO_(2)的光催化活性并提高TiO_(2)纳米管-SiC复合填料去除养殖废水中氨氮的效率。 展开更多
关键词 TiO_(2)纳米管-SiC复合填料 表面电性 光催化协同 氨氮去除效率
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