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| 1 | Analysis of characteristics and mechanism of current system on the west coast of Guangdong of China in summer显示文摘On the basis of data of drifting bottles’ tracks and the current measured in anchored stations, as well as temperature and salinityobserved in cruise investigations and coastal stations, ADCP current data and AVHRR surface sea temperature (SST) data on thewestern coast of Guangdong, synthetic results of analysis showed that the coastal currents in the west of the mouth of the ZhujiangRiver were mainly westward in summer, which constituted the north branch of cyclonic gyre in the east of the Qiongzhou Straits. Partof its water flowed westward into the Beibu Gulf through the Qiongzhou Straits. The coastal current pattern was not identical with thetraditional current system which flowed westward in the Qiongzhou Straits in winter and eastward in summer. The summertime’ scoastal current was always westward, maybe temporarily turning northeast only when the southwest wind was strong. The importantcharacteristics of coastal current on the western coast of Guangdong, in the Qiongzhou Straits and in the north of the Beibu Gulf wereanalyzed and their mechanisms also were explained. | BAO Xianwen HOU Yijun CHEN Changshen CHEN Fei SHI Maochong | 2005 | Acta Oceanologica Sinica2005,24,4: | 16 |
| 2 | Novel multi–SO_(3)H functionalized ionic liquids as highly efficient catalyst for synthesis of biodiesel显示文摘Biodiesel is an attractive alternative to fossil fuels due to the energy and environmental concerns. In this paper, seven different multi –SO_(3)H functionalized ILs based on the low-cost less-substituted amines, which contained massive sites for functionalization of sulfonic acid groups and further treatment of sulfonate-based anions, were prepared as catalysts with high acidity and desirable catalytic activity for the synthesis of biodiesel from the esterification of oleic acid with methanol. The physicochemical properties of these acidic ILs were characterized by a variety of analytical techniques such as FT-IR, EA, TGA, and the Br?nsted acidity was well determined by UV–vis. Among the ILs prepared, [EDA-PS][P-TSA] showed the highest catalytic activity for esterification due to its high acidity and appropriate miscibility with reactants, with an ultrahigh97.58% conversion of oleic acid under the optimum conditions(i.e. reaction time, 1.8 h;catalyst amount, 3 wt%;alcohol/acid molar ratio, 13:1,temperature 70℃) acquired from the Box–Behnken response surface methodology. With the novel strategy of multi –SO_(3) H modification on ILs,our catalyst had an approaching or even superior oleic acid conversion rate compared to other reported catalysts with considerably lower catalyst dosage and shorter reaction time. More importantly, it also exhibited high generality for converting various FFA feedstocks into biodiesel with considerable conversion within 93.59–94.33% under a rather lower catalyst dosage, which showed the valuable potential for converting low-cost oils into biodiesel from an economic and environmental perspective. | Meichen Li Jie Chen Ling Li Changshen Ye Xiaocheng Lin Ting Qiu | 2021 | Green Energy & Environment2021,6,2: | 1 |
| 3 | A finite volume numerical approach for coastal circulation studies:Comparisons with finite difference models显示文摘 | Chen Changshen Huang Haosheng Beardsley Robert C | 2007 | Journal of Geophysical Research2007,112,03018: | 1 |
| 4 | An UnstructuredGrid, Finite-Volume, Three-Dimensional, Primitive Equations Ocean Model: Application to Coastal O- cean and Estuaries显示文摘 | Chen Changshen Liu Hedong | 2003 | Journal of Atmospheric and Oceanic Technology2003,20,: | 1 |
| 5 | Polymeric ionic liquids(PILs)with high acid density:Tunable catalytic performance for biodiesel production显示文摘A series of polymeric ionic liquids(PILs)used as effective heterogeneous catalysts for biodiesel production via esterification of free fatty acids(FFAs)were effectively prepared by the reaction of poly(ethylene imine)(PEI)polymers with different molecular weight and 1,3-propanesultone,followed by the further acidification with differential effective acids,i.e.H2SO4,CF3SO3H,CH3SO3H or p-toluenesulfonic acid(p-TSA).Ultrahigh acidity and catalytic performance were achieved and could be fine-tuned by simply adjusting the molecular weight of PEI and by further treatment of acids.Specifically,under the optimal conditions(i.e.reaction temperature was 70℃,reaction time was 2.0 h,catalyst dosage was 3.15%(mass),and alcohol/acid molar ratio was 14:1)acquired through the Box-BEHNKEN response surface methodology,a high oleic acid conversion of 98.42%could be obtained over the optimal PIL,PEI(70000)-PS-p-TSA.Additionally,our PILs also showed high generality for esterification of other FFAs,with general high conversion over 90%noted in each case even under much milder reaction conditions compared to other conventional catalysts. | Xiaocheng Lin Youjie Huang Ling Li Changshen Ye Jie Chen Ting Qiu | 2021 | Chinese Journal of Chemical Engineering2021,34,10: | 1 |
| 6 | Facile one-pot synthesis of a BiOBr/Bi_(2)WO_(6) heterojunction with enhanced visible-light photocatalytic activity for tetracycline degradation显示文摘Photocatalytic removal of tetracycline(TC)from the wastewater is of great value in the chemical and environmental engineering field.Here,we introduced a facile one-step method for the synthesis of BiOBr/Bi2WO6 heterojunctions by using cheap CTAB as the Br source.We showed the possibility of our method to fine-tune the content of BiOBr in the produced BiOBr/Bi2WO6 by simply changing the dosage of cetyltrimethylammonium bromide(CTAB),providing a platform for the delicate tuning of the visiblelight absorbance ability of the composites.With a suitable heterojunction structure of BiOBr/Bi2WO6-0.2,it exhibited an ultrarapid photocatalytic activity towards TC(20 mgL^(-1)),with a competitive removal efficiency of 88.1%within 60 min and an ultrahigh removal rate of 0.0349 min^(-1).It could also be robustly recycled for at least 5 cycles with slight removal efficiency loss.We demonstrated that this exciting photocatalytic performance was due to the highly decreased recombination of photoinduced electrons and holes on our composites by constructing this heterojunction structure,and the resultingOH andO^(-)_(2)contributed to the effective degradation of TC to CO_(2). | Duanlian Tang Xiaoyan Chen Jiayan Yan Zhuo Xiong Xiaoyu Lou Changshen Ye Jie Chen Ting Qiu | 2023 | Chinese Journal of Chemical Engineering2023,53,1: | 0 |
| 7 | Facile synthesis of efficient pentaethylenehexamine-phosphotungstic acid heterogeneous catalysts for oxidative desulfurization显示文摘The ultra-deep desulfurization of oil needs to be solved urgently due to various problems,including environmental pollution and environmental protection requirements.Oxidative desulfurization(ODS)was considered to be the most promising technology.The facile synthesis of highly efficient and stable HPW-based heterogeneous catalysts for oxidative desulfurization is still a challenging task.In this paper,pentamethylene hexamine(PEHA)and phosphotungstic acid(HPW)were combined by a simple one-step method to prepare a heterogeneous catalyst of PEHA-HPW for the production of ultra-deep desulfurization fuel oil.The composite material exhibited excellent catalytic activity and high recyclability,which could reach a 100% dibenzothiophene(DBT)removal rate in 30 min and be recycled at least 5 times.Experiments and DFT simulations were used to better examine the ODS mechanism of PEHA-HPW.It was proved that the rich amino groups on the surface of PEHA-HPW play a crucial role.This work provides a simple and feasible way for the manufacture of efficient HPW-based catalysts. | Chongfu Wu Changsheng Chen Zhaoyang Qi Jie Chen Qinglian Wang Changshen Ye Ting Qiu | 2023 | Chinese Journal of Chemical Engineering2023,63,11: | 0 |