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131.
132.
Sun-Jae Kim E.G. Lee S.D. Park C.J. Jeon Y.H. Cho C.K. Rhee W.W. Kim 《Journal of Sol-Gel Science and Technology》2001,22(1-2):63-74
The photocatalytic characteristics of nanostructured TiO2 ultrafine powder with rutile phase produced using the homogeneous precipitation process at low temperatures (HPPLT) were compared with those of commercial P-25 TiO2 powder by flame hydrolysis. The TiO2 powder by the HPPLT showed much higher photoactivity in the removal rate, showing lower pH values in the solution than the P-25 powder when eliminating metal ions such as Pb and Cu from the aqueous metal-EDTA solutions. This can be inferred as the more rapid photo-oxidation or -reduction of metal ions from the aqueous solution, together with relatively higher efficiencies in the use of an electron-hole pair formed on the surface of the TiO2 particles under UV light irradiation. Also, in the view of the TiO2 particle morphology, compared to the well-dispersed spherical P-25 particles, the agglomerated TiO2 secondary particles by the HPPLT consist of acicular typed primary particles with a thickness in the range of 3–7 nm and the primary particles radialize in all directions, which would be more effective to photocatalytic reactions without the large electron-hole recombination on the surface of the TiO2 particle under UV light irradiation. It can be, therefore, thought that the higher photoactivity of the rutile TiO2 powder by the HPPLT in the aqueous solutions results mainly from having a larger surface area by the acicular shaped primary particles with very thin thickness and radialization in all directions. 相似文献
133.
合成氨催化剂研究的新进展 总被引:21,自引:0,他引:21
近20多年来,随着英国BP公司钌基催化剂的发明和我国亚铁基熔铁催化剂体系的创立,标志着合成氨催化剂进入了一个新的发展时期,由唯一的传统Fe3O4路线发展为三条技术路线,并各自取得了重大进展.本文扼要介绍了Fe3O4基传统催化剂和钌基催化剂的主要研究成果和发展趋势,着重综述了我国独创的Fe1-xO基熔铁催化剂的发现及其高活性机理探讨方面的研究成果.回顾了20世纪合成氨工业及其催化剂从创立、发展,到取得辉煌成就的历程,展望了21世纪的发展趋势. 相似文献
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Summary : A commercial diglycidylether of bisphenol A (DGEBA) was modified with an acrylonitrile-butadiene-styrene-copolymer (ABS) and cured with the diamine hardener 4,4′-diaminodiphenylsulfone (DDS). The curing kinetics was followed by DSC- and PVT-measurements. The polymerization induced phase separation (PIPS) was studied using light microscopy and electron microscopy. While the cloud point analyzed by light microscopy is independent of the ABS content, the curing is accelerated by the presence of ABS. The non-linear dependency of the curing rate on the ABS content must have its origin in the different morphologies developed due to PIPS. 相似文献
136.
计算了球形均匀D-3He先进燃料靶惯性约束聚变(ICF)的燃耗和增益。讨论了这种堆系统的能量平
衡。设计了一种新型的由毛细管阵列组成具有抗辐射损伤、可自动更新的液态金属锂自由表面多孔湿壁,用它取
出聚变能。同时与D-T热核燃料靶系统的燃耗和增益及它们不同的堆工程特性作了比较。 相似文献
137.
高等数学教学中落实素质教育之浅见 总被引:7,自引:0,他引:7
本文主要讨论了数学素质教育的重要性及如何具体在高等数学教学中培养学生的数学素质 相似文献
138.
我校精品课程《高等代数》建设的思路是,围绕财经特色主题,坚持以高等代数理论为基础,以经济、管理类的专业为依托,以数学实验室为训练基地,将数学建模的思想融入到《高等代数》的教学活动中.这种教学模式的改变不仅有利于学生的培养,而且有助于培养出一支有较高水平的师资队伍.使我们的《高等代数》课程真正成为高水平、高质量的示范性课程. 相似文献
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140.
Advanced drug delivery micro- and nanosystems have been widely explored due to their appealing specificity/selectivity, biodegradability, biocompatibility, and low toxicity. They can be applied for the targeted delivery of pharmaceuticals, with the benefits of good biocompatibility/stability, non-immunogenicity, large surface area, high drug loading capacity, and low leakage of drugs. Cardiovascular diseases, as one of the primary mortalities cause worldwide with significant impacts on the quality of patients’ life, comprise a variety of heart and circulatory system pathologies, such as peripheral vascular diseases, myocardial infarction, heart failure, and coronary artery diseases. Designing novel micro- and nanosystems with suitable targeting properties and smart release behaviors can help circumvent crucial challenges of the tolerability, low stability, high toxicity, and possible side- and off-target effects of conventional drug delivery routes. To overcome different challenging issues, namely physiological barriers, low efficiency of drugs, and possible adverse side effects, various biomaterials-mediated drug delivery systems have been formulated with reduced toxicity, improved pharmacokinetics, high bioavailability, sustained release behavior, and enhanced therapeutic efficacy for targeted therapy of cardiovascular diseases. Despite the existing drug delivery systems encompassing a variety of biomaterials for treating cardiovascular diseases, the number of formulations currently approved for clinical use is limited due to the regulatory and experimental obstacles. Herein, the most recent advancements in drug delivery micro- and nanosystems designed from different biomaterials for the treatment of cardiovascular diseases are deliberated, with a focus on the important challenges and future perspectives. 相似文献