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试样放置角度与外加辐射强度对可碳化固体表面火蔓延的影响 被引量:2
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作者 朱超 张英 孙金华 《火灾科学》 CAS CSCD 2010年第4期232-238,共7页
选取了尺寸为400mm×90mm×3mm质地较为均匀的白木作为研究对象,对不同试样放置角度和不同外加辐射强度作用下的火焰高度、火蔓延速率和失重速率等火蔓延参数进行了测量,以研究试样放置角度和辐射强度对可炭化固体表面火蔓延的... 选取了尺寸为400mm×90mm×3mm质地较为均匀的白木作为研究对象,对不同试样放置角度和不同外加辐射强度作用下的火焰高度、火蔓延速率和失重速率等火蔓延参数进行了测量,以研究试样放置角度和辐射强度对可炭化固体表面火蔓延的作用规律。研究发现,试样表面的火蔓延速率随辐射强度的增加而增加。当角度在负角度范围内时,角度的变化对火蔓延速率的影响不大,当角度在正角度范围内时,火蔓延速率随着角度的增加而迅速上升。试样失重速率随着辐射强度以及试样放置角度的增加而增加。火焰高度会随着外加辐射强度的增加而增加,并与试样失重速率的0.4次方呈正比关系。 展开更多
关键词 可碳化材料 辐射强度 试样放置角度 火蔓延速度 失重速率 火焰高度
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In-situ route for the graphitized carbon/TiO composite photocatalysts with enhanced removal efficiency to emerging phenolic pollutants 被引量:3
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作者 Yunqing Liu Peiyu Xia +4 位作者 Lingyu Li Xinyue Wang Jiaqi Meng Yuxin Yang Yihang Guo 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第9期1378-1392,共15页
TiO2 is the most photoactive material because of its superstrong photooxidizing ability,and TiO2 photocatalysis has been widely applied in sustainable water treatment and environmental remediation.However,poor sunligh... TiO2 is the most photoactive material because of its superstrong photooxidizing ability,and TiO2 photocatalysis has been widely applied in sustainable water treatment and environmental remediation.However,poor sunlight or visible-light harvesting efficiency and fast recombination rate of the photogenerated charge carriers severely limit the practical applications of TiO2.To overcome these problems,the present work demonstrates a facile in-situ co-condensation method combined with hydrothermal treatment to prepare a series of graphitized carbon/TiO2 composite photocatalysts,and anatase TiO2 phase andp-p-conjugated polycyclic aromatic carbon structure are created simultaneously.As-prepared TiO2/C composites exhibit remarkably high visible-light photocatalytic activity in the degradation of aqueous emerging phenolic pollutants,acetaminophen(APAP)and methylparaben(MPB),and apparent rate constant of the TiO2/C composite with carbon doping level of 10.3%for APAP and MPB removal is 7.6 and 2.8 times higher than that of bare TiO2,and 6.2 and 2.6 times higher than that of Degussa P25 TiO2.Based on the results of photoelectrochemical experiments,indirect chemical probe measurements,and ESR spectroscopy,it is verified that doping TiO2 with graphitized carbon is responsible for this enhanced photocatalytic activity,which renders the improved visible-light harvesting ability,the accelerated separation of the photogenerated charge carriers,and enlarged BET surface areas.Through analyzing the intermediates yielded in the photodegradation process,the pathway of visible-light photocatalytic degradation of APAP and MPB over the TiO2/C composite is proposed. 展开更多
关键词 Titanium dioxide CARBON Visible-light photocatalysis COMPOSITE Phenolic compound Water treatment
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