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超细沉淀硫酸钡的制备及研究进展 被引量:13
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作者 祁琪 孙青 +3 位作者 张俭 严俊 潘方珍 盛嘉伟 《无机盐工业》 CAS 北大核心 2018年第5期15-20,共6页
近年来,随着现代材料科学的迅速发展,硫酸钡(Ba SO4)作为一种理化性质优良的无机材料受到了广泛关注。普通硫酸钡(粒度为10~20μm)生产工艺粗放,品质不高,超细化处理(粒度为0.1~1μm)可大大提升产品质量,扩展其应用范围。综述了超细沉... 近年来,随着现代材料科学的迅速发展,硫酸钡(Ba SO4)作为一种理化性质优良的无机材料受到了广泛关注。普通硫酸钡(粒度为10~20μm)生产工艺粗放,品质不高,超细化处理(粒度为0.1~1μm)可大大提升产品质量,扩展其应用范围。综述了超细沉淀硫酸钡的制备及应用方面的研究进展,并对制备工艺现有的问题和未来发展提出建议。随着研究工作的推进,超细沉淀硫酸钡的制备工艺及应用领域将会得到提升与拓展。 展开更多
关键词 超细沉淀硫酸钡 直接沉淀 微反应器法 微乳液法
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超细沉淀白炭黑取代气相白炭黑的应用研究 被引量:2
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作者 郭勇辉 《江西化工》 2002年第4期140-141,共2页
关键词 超细沉淀 白炭黑 取代 气相白炭黑 应用 研究
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用作功能性添加剂的超细碳酸钙
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作者 武爱军 林屹 《世界橡胶工业》 2013年第5期15-19,共5页
超细沉淀碳酸钙(UFPCC)不仅可以用作"填料",还可以用作"功能性添加剂",少量UFPCC与补强填料(如难以混合或分散的白炭黑,炭黑)一起使用能够起到分散剂或加工助剂的作用。此外,UFPCC可以提高未硫化橡胶的黏性和伸长率... 超细沉淀碳酸钙(UFPCC)不仅可以用作"填料",还可以用作"功能性添加剂",少量UFPCC与补强填料(如难以混合或分散的白炭黑,炭黑)一起使用能够起到分散剂或加工助剂的作用。此外,UFPCC可以提高未硫化橡胶的黏性和伸长率,这些优点可促进填料/橡胶的混合与扩散,缩短混炼时间,提高补强填料的分散性。 展开更多
关键词 超细沉淀碳酸钙 分散性 黏性 沉淀法白炭黑 炭黑
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纳米塑料性能——用PCC作为PVC添加剂的优点 被引量:1
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作者 王大枋 《浙江化工》 CAS 2001年第4期55-56,共2页
关键词 纳米塑料 性能 超细沉淀碳酸钙 PCC 添加剂 聚氯乙烯
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Numerical simulation of flocculation and settling behavior of whole-tailings particles in deep-cone thickener 被引量:13
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作者 阮竹恩 李翠平 石聪 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期740-749,共10页
Rapid dewatering and thickening of whole-tailings with ultrafine particles is one of the most important processes for the whole-tailings paste preparation. Deep-cone thickener, a kind of such process for the flocculat... Rapid dewatering and thickening of whole-tailings with ultrafine particles is one of the most important processes for the whole-tailings paste preparation. Deep-cone thickener, a kind of such process for the flocculation and settling of whole-tailings, is particularly necessary to study. However, there exist many problems in observing the flocculation and settling process of whole-tailings, as well as the particle size distribution(PSD) of whole-tailings floccules in deep-cone thickener. Population balance model(PBM) is applied to predict the PSD in deep-cone thickener, and LUO model and GHADIRI model are employed to study the aggregation and fragmentation mechanism of the whole-tailings particles, respectively. Through three-dimensional numerical simulation on the whole-tailings flocculation and settling in deep-cone thickener using computational fluid dynamics(CFD)-PBM, the distribution of density and turbulent kinetic energy in deep-cone thickener were obtained, at the same time the spatio-temporal changes of whole-tailings floccules particle size distribution are analyzed. Finally, the major flocculation position in deep-cone thickener is found and the flocculation settling rules of whole-tailings are achieved. 展开更多
关键词 whole-tailings particles flocculation settling numerical simulation deep-cone thickener population balance model
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Low-temperature synthesis of ultrasmall spinel MnxCo3-xO4 nanoparticles for efficient oxygen reduction
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作者 Chengxiang Shi Sana Ullah +5 位作者 Ke Li Wei Wang Rongrong Zhang Lun Pan Xiangwen Zhang Ji-Jun Zou 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第12期1818-1825,共8页
Spinel-type manganese-cobalt oxides have been regarded as important class of electrocatalysts for oxygen reduction reaction(ORR).However,they are usually synthesized through oxidation-precipitation under aqueous ammon... Spinel-type manganese-cobalt oxides have been regarded as important class of electrocatalysts for oxygen reduction reaction(ORR).However,they are usually synthesized through oxidation-precipitation under aqueous ammonia and then crystallization at high temperature(150–180℃),which not only increases the energy consumption but also induces the growth of particles that is unfavorable for ORR.Herein,through a facile precipitation-dehydration method,ultrasmall spinel manganese-cobalt oxide nanoparticles(~5 nm)homogeneously dispersed on conductive carbon black(MnxCo3-xO4/C)were fabricated at low temperature(60℃).And the bimetallic composite oxide(Mn1.5Co1.5O4/C)with cubic spinel structure and high Mn content exhibits remarkable enhancement of ORR activity and stability compared with single metal oxide(both Mn3O4/C and Co3O4/C).The essential reason for the enhancement of activity can be attributed to the presence of the mixed Mn^3+ and Mn^4+ cations in Mn1.5Co1.5O4/C.Moreover,the ORR activity of Mn1.5Co1.5O4/C is comparable to that of commercial 20 wt% Pt/C,and the relative current density only decreases 1.4% after 12 h test,exceeding that of Pt/C and most reported manganese-cobalt oxide electrocatalysts. 展开更多
关键词 Oxygen reduction reaction Spinel Mn1.5Co1.5O4 LOW-TEMPERATURE Precipitation-dehydration method Ultrasmall nanoparticle
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Preparation of Ultra-fine Salbutamol Sulfate Particles by Reactive Precipitation and Characterization of Dry Powder Inhalant
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作者 续京 刘晓林 陈建峰 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2008年第5期791-795,共5页
The preparation of ultra-fine particles of salbutamol sulphate (SS) was accomplished with a reactive precipitation pathway, in which salbutamol and sulphuric acid were Used as reactants with the solvents of ethanol.... The preparation of ultra-fine particles of salbutamol sulphate (SS) was accomplished with a reactive precipitation pathway, in which salbutamol and sulphuric acid were Used as reactants with the solvents of ethanol.The effects of sulphuric acid concentration, reaction temperature, stirring rate, and reaction time onthesize of the particle were investigated. A binary mixture composed of lactose and SS was prepared to evaluate SS. The results showed that ultra-fine SS particles with controlled diameters ranging between 3 μm and 0.8 μm and with a narrow distribution could be achieved. The morphology consisting of clubbed particles wassuccess.fully obtained. The purity of the particles reached above 98% with-UV detection. The dose- of dry powder inhalation was obtained by blending the particles with recrystallized lactose, which acted as a carrier. The deposition quantity of the drug in breathing tract was estimated using a twin imPinger apparatus. Compared with the Shapuer powder (purchased in the market), the results showed that SS_particles had more quantifies.subsided in simulative lung.. _ 展开更多
关键词 salbutamol sulphate ultra-fine particle reactive precipitation PREPARATION dry powder inhalant DEPOSITION
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