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| 1 | Degradation of phenol by ozone in the presence of Fenton reagent in a rotating packed bed显示文摘 | Zeng Zequan Zou Haikui Li Xin | 2013 | Chemical Engineering Journal2013,229,: | 1 |
| 2 | Controlled telease of avermectin from porous hollow silica nanopartieles显示文摘 | WEN Lixiong LI Zhuzhu ZOU Haikui | 2005 | Pest Management Science2005,61,6: | 1 |
| 3 | Stabilized amorphous glibenclamide nanoparticles by highgravity technique显示文摘 | Yu Lei Li Caixia Le Yuan Chen Jianfeng Zou Haikui | | 0,,1: | 1 |
| 4 | Degradation of phenol by oz- one in the presence of Fenton reagent in a rotating packed bed 显示文摘 | Zeng Zequan Zou Haikui Li Xin | 2013 | Chemical Engineering Journal2013,229,: | 1 |
| 5 | Ozonation of phenol with OJFe ( Ⅱ ) in acidic environment in a rotating packed bed 显示文摘 | Zeng Zequan Zou Haikui Li Xin | 2012 | In- dustrial & Engineering Chemistry Research2012,51,10: | 1 |
| 6 | Study on mechanical prop-erty of epoxy composite filled with nano-sized calcium carbonateparticles显示文摘 | Li Lei Zou Haikui Shao Lei | 2005 | Journal of Materials Science2005,40,5: | 1 |
| 7 | Degradation of phenol by ozone in the presence of Fenton reagent in a rotating packed bed 显示文摘 | Zeng Zequan Zou Haikui Li Xin Arowo M Sun Baochang Chen Jianfeng Chu Guangwen Shao Lei | 2013 | Chemical Engineering Journal2013,229,: | 1 |
| 8 | Degradation of phenol by ozone in the presence of Fenton reagent in a rotating packed bed显示文摘 | Zeng Zequan Zou Haikui Li Xin | 2013 | Chem Eng J2013,229,: | 1 |
| 9 | Controlled release of avermectin from porous hollow silica nanoparticles显示文摘 | WEN Lixiong LI Zhuzhu ZOU Haikui | 2005 | Pest Management Science2005,61,6: | 1 |
| 10 | Study on the catalytic degradation of sodium lignosulfonate to aromatic aldehydes over nano-CuO:Process optimization and reaction kinetics显示文摘As one of the few renewable aromatic resources,the research of depolymerization of lignin into highvalue chemicals has attracted extensive attention in recent years.Catalytic wet aerobic oxidation(CWAO)is an effective technology to convert lignin like sodium lignosulfonate(SL),a lignin derivative,into aromatic aldehydes such as vanillin and syringaldehyde.However,how to improve the yield of aromatic aldehyde and conversion efficiency is still a challenge,and many operating conditions that significantly affect the yield of these aromatic compounds have rarely been investigated systematically.In this work,we adopted the stirred tank reactor(STR)for the CWAO process with nano-CuO as catalyst to achieve the conversion of SL into vanillin and syringaldehyde.The effect of operating conditions including reaction time,oxygen partial pressure,reaction temperature,SL concentration,rotational speed,catalyst amount,and NaOH concentration on the yield of single phenolic compound was systematically investigated.The results revealed that all these operating conditions exhibit a significant effect on the aromatic aldehyde yield.Therefore,they should be regulated in an optimal value to obtain high yield of these aldehydes.More importantly,the reaction kinetics of the lignin oxidation was explored.This work could provide basic data for the optimization and design of industrial operation of lignin oxidation. | Yingjie Song Shuqi Zhong Yingjiao Li Kun Dong Yong Luo Guangwen Chu Haikui Zou Baochang Sun | 2023 | Chinese Journal of Chemical Engineering2023,53,1: | 0 |
| 11 | Comparison on Estimation of Wood Biomass Using Forest Inventory Data显示文摘Based on sixth and seventh national forestry inventory data of the six provinces,including Guangdong,Jiangxi,Guizhou,Shaanxi,Jilin and Beijing,the three methods(IPCC,continuous function for biomass expansion factor and weighted biomass regression model) were selected to estimate wood biomass in this paper.The estimation of the three methods were compared and analyzed from calculating process,method characters,repeatability and verifiability to stability of growth rate of biomass between two periods.The results showed the total biomass estimated by IPCC method with variable BEF2 was large,the total biomass estimated by IPCC method with constant BEF2 was small and the total biomasses estimated by continuous function for biomass expansion factor and weighted biomass regression model were middle.The biomass expansion factor derived from weighted regression model was most stable in the different provinces. Based on the seventh national forestry inventory data, the biomass expansion factors of various kinds of tree species derived from IPCC and the weighted regression model were more stable than the biomass expansion factors derived from continuous function method.The growth rate of biomass between two periods was the same regular pattern as the biomass expansion factors. | Li Haikui Zhao Pengxiang Lei Yuancai Zeng Weisheng | 2012 | Chinese Forestry Science and Technology2012,11,3: | 0 |
| 12 | Sulfonation of 1,4-diaminoanthraquinone leuco by chlorosulfonic acid:Kinetics and process intensification显示文摘The work herein employed a rotating packed bed(RPB)to intensify the sulfonation process of 1,4-diaminoanthraquinone leuco(DL)in an attempt to improve the yield of the product 1,4-diaminoanthra quinone-2-sulfonic acid(DSA).First,the effects of operating conditions in a stirred tank reactor(STR),including stirring speed,chlorosulfonic acid/DL molar ratio(η),solvent/DL mass ratio(ζ),reaction temperature and dropping speed of chlorosulfonic acid,on the yield of DSA were investigated.The yield of DSA can reach 87.34%under the optimal operating conditions:stirring speed of 500 r·min^(-1),ηof 4.5,ζof 7,reaction temperature of 150℃,dropping speed of 0.61 ml·min^(-1).In addition,the kinetics of the sulfonation process via the shrinking core model revealed that the reaction is controlled by diffusion via a product layer under the reaction temperature of 140℃.Furthermore,the RPB was employed to intensify the mass transfer between liquid and solid phases during the sulfonation reaction process.The results showed that the DSA yield of 92.69%obtained by RPB was 5.35%higher than that by STR,indicating that RPB can significantly intensify the mass transfer in the liquid-solid phase sulfonation reaction process. | Bing Liu Yingjiao Li Moses Arowo Guangwen Chu Yong Luo Liangliang Zhang Haikui Zou Baochang Sun | 2023 | Chinese Journal of Chemical Engineering2023,58,6: | 0 |