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不同微细水核直径的掺水乳化柴油制备方法和影响因素 被引量:2
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作者 王兆文 曹俊辉 +3 位作者 袁波 王宇洲 吕嵩 成晓北 《农业工程学报》 EI CAS CSCD 北大核心 2021年第6期235-242,共8页
随着燃油车和重型农用机械数量的增加,石油资源消耗急剧上升,掺水乳化柴油作为一种新型可替代燃料受到了广泛关注。水核直径对掺水乳化柴油的微爆特性影响较大,但目前缺乏组分不变下的目标水核直径掺水乳化柴油的制备方法和适宜的水核... 随着燃油车和重型农用机械数量的增加,石油资源消耗急剧上升,掺水乳化柴油作为一种新型可替代燃料受到了广泛关注。水核直径对掺水乳化柴油的微爆特性影响较大,但目前缺乏组分不变下的目标水核直径掺水乳化柴油的制备方法和适宜的水核直径表征方法。该研究基于CV模型,开发了适合水核微观结构的图像识别程序;创新性地提出采用对数正态分布函数拟合和表征水核直径的分布。结果表明,相对于索特平均直径,基于对数正态分布函数拟合的表征参数可以更准确地描述掺水乳化柴油内部水核分布情况。随后,基于正交设计方法,通过调节超声波乳化的乳化时间、乳化功率和超声波频率参数实现了组分不变情况下不同水核直径的掺水乳化柴油的制备;并基于新的表征参数,研究了制备参数对掺水乳化柴油中水核直径的影响规律以及敏感性等特征。研究表明:超声波频率、乳化功率和乳化时间3个制备因素对最大直径的极差为0.744、2.880、1.038,对分布标准差的极差分别为0.028、0.120、0.034,因此各因素的影响优先级分别为:乳化功率、乳化时间、超声波频率。随着乳化功率、乳化时间的增加,乳化效果明显增强,掺水乳化柴油中水核直径的拟合最大值与分布标准差逐渐减小,使得掺水乳化柴油中水核直径既小又平均,而超声波频率的影响则不明显;此外当水核直径及分布标准差减少到一定值后,增加乳化功率比增长乳化时间对掺水乳化柴油水核的细化影响更大,该研究可为乳化柴油制备水供参考。 展开更多
关键词 柴油 参数 乳化液 水核直径 表征参数 正交设计
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基于相图法的W/O型微乳液体系稳定性分析 被引量:16
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作者 潘海敏 杨伯伦 +2 位作者 李萌萌 李国智 贺拥军 《高校化学工程学报》 EI CAS CSCD 北大核心 2006年第5期679-684,共6页
以辛基苯基聚氧乙烯醚(TX-10)、十二烷基磺酸钠(SDS)和十六烷基三甲基溴化铵(CTAB)为表面活性剂,以正戊醇、正己醇和正庚醇为助表面活性剂,以正戊烷为油相,制备了油包水型(W/O)微乳液。用相图法分析了微乳液体系的热力学稳定性,计算了... 以辛基苯基聚氧乙烯醚(TX-10)、十二烷基磺酸钠(SDS)和十六烷基三甲基溴化铵(CTAB)为表面活性剂,以正戊醇、正己醇和正庚醇为助表面活性剂,以正戊烷为油相,制备了油包水型(W/O)微乳液。用相图法分析了微乳液体系的热力学稳定性,计算了水核半径的大小,并考察了影响微乳液W/O区域范围的各种因素。结果表明:这几种微乳液体系在实验条件下能自发形成;微乳液的水核半径处于纳米量级,可作为制备纳米粒子的超微反应器;以TX-10为表面活性剂时,水核可以包容更多的水分子,微乳液的W/O区域较大;而以CTAB为表面活性剂时,由于其极性头之间的空间和静电排斥作用强,微乳液的W/O区域最小;以硝酸镧溶液作为分散相时,微乳液的W/O区域变化较小;随着温度的升高,微乳液的W/O区域显著减小。 展开更多
关键词 微乳液 纳米反应器 水核 相图法 热力学稳定性
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W/O型微乳法制备超细片状WO_3的研究 被引量:2
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作者 宋涛 丘泰 +2 位作者 沈春英 李志顺 陈小杰 《材料科学与工程学报》 CAS CSCD 北大核心 2007年第1期102-104,94,共4页
在TritonX-100/正己醇/环己烷/水微乳液体系中制备了超细片状WO3。XRD谱图表明,超细薄片为三斜相和单斜相混合的WO3晶体。SEM结果表明,制备的WO3为大小均匀的超细片状粒子。BET测试表明,超细片状WO3具有很大的比表面积。考察了两个关键... 在TritonX-100/正己醇/环己烷/水微乳液体系中制备了超细片状WO3。XRD谱图表明,超细薄片为三斜相和单斜相混合的WO3晶体。SEM结果表明,制备的WO3为大小均匀的超细片状粒子。BET测试表明,超细片状WO3具有很大的比表面积。考察了两个关键参数ω0和反应物浓度对产物尺寸和形貌的影响。并对TritonX-100/正己醇/环己烷/水微乳液体系制备超细片状WO3的机理进行了初步探讨。 展开更多
关键词 W/O微乳液 水核直径 超细片状WO3
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Review of wastewater treatment technologies,soil and water conservation measures in nuclear power plants,and inspirations to Fukushima accident
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作者 WANG Chu NIU Jianzhi +2 位作者 LUN Xiaoxiu ZHANG Linus BERNDTSSON Ronny 《中国水土保持科学》 CSCD 北大核心 2024年第6期10-28,193-200,共27页
[Background]The previous studies suggest that radioactive elements like Cs and Sr may adversely affect marine ecosystems and the fishing industry.Traditional treatment systems for radioactive wastewater like the Advan... [Background]The previous studies suggest that radioactive elements like Cs and Sr may adversely affect marine ecosystems and the fishing industry.Traditional treatment systems for radioactive wastewater like the Advanced Liquid Processing System(ALPS)and Kurion have faced challenges in limiting concentration and achieving safety criteria.Studies suggest potential long-term impacts on benthic organisms and seafood networks due to radioactive elements like Cs and Sr from the discharged radioactive wastewater,which may hinder post-disaster recovery and provoke economic losses in the fishing industry both domestically and internationally.A series of studies indicate that there are issues of Cs and Sr pollution migration in soil and water conservation in Fukushima.[Methods]To provide feasible solutions,the main article includes five nuclear wastewater treatment technologies,and soil and water conservation measures for different media(water and soil)were evaluated through reviewing the previous fifteen years'articles.To provide feasible solutions,the main articles,the phytoextraction technologies in Cs and Sr treatment within different land use areas were wildly analyzed(Camellia japonica,Arabidopsis halleri and other local species).[Results]1)A 99.9%removal rate for Cs^(+)and 99.5%for Sr^(2+)was achieved by the KFe[Fe(CN)_(6)]and BaSO_(4)co-precipitation method.2)For membrane filtration,Sr^(2+)and Cs^(+)were removed using metal-organic framework(MOF/graphene oxide)and ion exchange techniques using inorganic materials like titanosilicates.The absorption efficiency of membrane filtration for Sr^(2+)and Cs^(+)was at least 92%and 94%,respectively.The study analyzed soil and water conservation technologies in different land uses,river basins and catchments.3)The underground water treatment mainly were completed via the membrance technologies like reverse osmosis and Permeable Reactive Barriers(PRB)technologies.The ^(90) Sr concentration decreased 77%-91%compared to the initial concentration by PRB technology.These diverse methods offered effective strategies for radioactive wastewater treatment,especially the co-precipitation method may be feasible remediation measures to ensure ecological safety surrounding nuclear power utilizing areas.Soil and water conservation measures for soil pollution treatment mainly focused on the use of stabilizers to hinder the migration of Cs and Sr in the soil and the effects of wind erosion such as interpolyelectrolyte complexes.[Conclusions]We evaluated the pollution of Cs and Sr in the Fukushima nuclear radiation soil and water to provide solutions for the treatment of nuclear wastewater and to prevent radionuclide pollutants from migrating into the soil and water. 展开更多
关键词 Fukushima nuclear power accident nuclear wastewater treatment environmental strategy soil and water conservation technologies
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Evolution of distribution and content of water in cement paste by low field nuclear magnetic resonance 被引量:14
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作者 佘安明 姚武 袁万城 《Journal of Central South University》 SCIE EI CAS 2013年第4期1109-1114,共6页
The low field nuclear magnetic resonance (NMR), as a nondestructive and noninvasive technique, was employed to investigate the water distribution and content in cement paste with different water-to-cement ratio (w/c r... The low field nuclear magnetic resonance (NMR), as a nondestructive and noninvasive technique, was employed to investigate the water distribution and content in cement paste with different water-to-cement ratio (w/c ratio) during early and later hydration stages. From the water distribution spectrum deduced from relaxation time distribution in paste, it is suggested that the water fills in the capillary pores at initial period, and then diffuses to the mesopores and gel pores in hydration products with the hydration proceeding. The decrease of peak area in water distribution spectrum reflects the transformation from physically bound water to chemically bound water. In addition, based on the connection between relaxation time and pore size, the relative content changes of water in various states and constrained in different types of pores were also measured. The results demonstrate that it is influenced by the formation of pore system and the original water-to-cement ratio in the paste. Consequently, the relative content of capillary water is dropped to less than 2% in the paste with low w/c ratio of 0.3 when being hydrated for 1 d, while the contents are still 16% and 36% in the pastes with w/c ratios of 0.4 and 0.5, respectively. 展开更多
关键词 cement water DISTRIBUTION water-to-cement ratio PORE nuclear magnetic resonance
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Pore structure formation and hydration characteristics of cement paste with temperature rising inhibitor
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作者 ZHAO Hai-tao XIANG Yu +6 位作者 ZHANG Hao SHEN De-jian CHEN Xiao-dong HUANG Jie XU Wen LI Hua WANG Yu-jiang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1674-1685,共12页
The early-age thermal cracking easily generates and severely impairs the durability of concrete.The temperature rising inhibitor(TRI)was utilized to regulate the temperature evolution by controlling the cement hydrati... The early-age thermal cracking easily generates and severely impairs the durability of concrete.The temperature rising inhibitor(TRI)was utilized to regulate the temperature evolution by controlling the cement hydration process.This paper aimed to investigate the pore structure formation and hydration characteristics of cement paste containing TRI by low-field nuclear magnetic resonance.The experiment showed that the T_(2) peak of cement paste shifted from 7.32 ms to 0.23 ms regardless of TRI addition.But the pattern of pore structure formation was changed with TRI addition,that is,the pore structure formation was delayed,and the pore successively shifted to left in two parts.In addition,TRI addition significantly prolonged the duration of gel pore formation and greatly decreased the increase rate of gel water,which implied that TRI introduction hindered the growth of C-S-H,and subsequently decreased the hydration rates and delayed the main hydration peak.Meanwhile,TRI dissolved and diffused rapidly at 40℃,delaying the hydration of cement paste seriously.Moreover,TRI brought about the C-S-H nucleation homogeneous and the ion concentration uniform,which might reduce the localized curvature occurring on the sheet of C-S-H,and then decreased the T_(2) intensity of capillary water and gel water. 展开更多
关键词 pore structure formation hydration characteristics temperature rising inhibitor low-field nuclear magnetic resonance cement paste
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Coupled thermo-hydro-mechanical-migratory model for dual-porosity medium and numerical analysis 被引量:6
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作者 张玉军 杨朝帅 《Journal of Central South University》 SCIE EI CAS 2011年第4期1256-1262,共7页
A coupled thermo-hydro-mechanical-migratory model of dual-porosity medium for saturated-unsaturated ubiquitous-joint rockmass was established,in which the stress field and the temperature field were single,but the see... A coupled thermo-hydro-mechanical-migratory model of dual-porosity medium for saturated-unsaturated ubiquitous-joint rockmass was established,in which the stress field and the temperature field were single,but the seepage field and the concentration field were double,and the influences of sets,spaces,angles,continuity ratios,stiffnesses of fractures on the constitutive relationship of the medium were considered.Also,the relative two-dimensional program of finite element method was developed.Taking a hypothetical nuclear waste repository as a calculation example,the case in which the rockmass was unsaturated dual-porosity medium and radioactive nuclide leak was simulated numerically,and the temperatures,negative pore pressures,saturations,flow velocities,nuclide concentrations and principal stresses in the rockmass were investigated.The results show that the negative pore pressures and nuclide concentrations in the porosity and fracture present different changes and distributions.Even though the saturation degree in porosity is only about 1/10 that in fracture,the flow velocity of underground water in fracture is about three times that in porosity because the permeability coefficient of fracture is almost four orders higher than that of porosity.The value of nuclide concentration in fracture is close to that in porosity. 展开更多
关键词 ubiquitous-joint rockmass dual-porosity medium thermo-hydro-mechanical-migratory coupling model numericalanalysis
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Remaining oil distribution in models with different heterogeneities after CO_(2) WAG injection:Visual research by nuclear magnetic resonance technique 被引量:4
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作者 WANG Ye-fei LI Zong-yang +2 位作者 ZHANG Shi-ming LIU De-xin DING Ming-chen 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第5期1412-1421,共10页
Water alternating gas(WAG)injection is a widely used strategy for enhancing oil recovery(EOR)during gas flooding,and the mechanisms,operating parameters,and influencing factors of which have been extensively studied.H... Water alternating gas(WAG)injection is a widely used strategy for enhancing oil recovery(EOR)during gas flooding,and the mechanisms,operating parameters,and influencing factors of which have been extensively studied.However,with respect to its capacity in expanding macroscopic sweep volume under varying heterogeneities,the related results appear inadequate.In this research,three cores with different heterogeneities were used and flooded by the joint water and CO_(2) WAG,then the effects of heterogeneity on oil recovery were determined.More importantly,the cores after CO_(2) WAG injection were investigated using the nuclear magnetic resonance(NMR)technique for remaining oil distribution research,which could help us to understand the capacity of CO_(2) WAG in enlarging sweep volume at different heterogeneities.The results show that the presence of heterogeneity may largely weaken the effectiveness of water flooding,the more severe the heterogeneity,the worse the water flooding.The WAG injection of CO_(2) performs well in EOR after water flooding for all the cores with different heterogeneities;however,it could barely form a complete or full sweep throughout the low-permeability region,and un-swept bypassed regions remain.The homogeneous core is better developed by the injection of the joint water and CO_(2) WAG than the heterogeneous and fractured cases. 展开更多
关键词 heterogeneous reservoir enhancing oil recovery CO_(2)WAG injection sweep volume remaining oil nuclear magnetic resonance
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Influence of CaO-based expansive agent,superabsorbent polymers and curing temperature on pore structure evolution of early-age cement paste
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作者 ZHAO Hai-tao LI Xiao-long +5 位作者 XIE Dong-sheng DI Yun-fei HUANG Jie XU Wen WANG Peng-gang ZUO Jun-qing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第5期1663-1673,共11页
Cracks easily generate in concrete at early age owing to the shrinkage deformation.CaO-based expansion agent(CEA)and superabsorbent polymers(SAP)have been extensively used for the mitigation of concrete shrinkage.The ... Cracks easily generate in concrete at early age owing to the shrinkage deformation.CaO-based expansion agent(CEA)and superabsorbent polymers(SAP)have been extensively used for the mitigation of concrete shrinkage.The macroscopic properties of concrete are highly determined by the microstructure.In this study,the influence of CEA and SAP addition on the pore structure evolution of cement paste under different curing temperatures was evaluated via low-field nuclear magnetic resonance spectroscopy.Test results indicated that,in cement paste,a higher CEA content led to a higher porosity and a larger most probable pore diameter(MPPD).Meanwhile,SAP addition increased the porosity and MPPD of CEA cement paste at early age but decreased them after 7 d,and a higher SAP content always brought a higher porosity and MPPD.Furthermore,the addition of SAP led to a lower porosity and MPPD of CEA cement paste than that of plain cement paste after 14 d.Moreover,the porosity and MPPD of CEA cement paste decreased first and subsequently increased as the curing temperature raised. 展开更多
关键词 cement paste pore structure CaO-based expansion agent superabsorbent polymers curing temperature low-field nuclear magnetic
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