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Masahiro?Okada Takumi?Matoba Masayoshi?OkuboEmail author 《Colloid and polymer science》2003,282(2):193-197
The influence of nonionic emulsifier, included inside styrene-methacrylic acid copolymer [P(S-MAA)] particles during emulsion copolymerization, on the formation of multihollow structure inside the particles via the alkali/cooling method (proposed by the authors) was examined in comparison to emulsifier-free particles. It was clarified that the nonionic emulsifier included inside the P(S-MAA) particles eased the formation of multihollow structure.Part CCL of the series studies on suspension and emulsion 相似文献
13.
The General Rate model has been developed and solved to describe protein adsorption in an expanded bed. The model takes into account axial and local variation of particle size distribution (PSD), external and intra-particle mass transfer resistances, and dispersion in liquid phase. The influence of PSD on breakthrough profiles has been analysed. The simulation results show that for a significantly high expanded bed the lower part of the breakthrough curve profiles, calculated for local particle size distribution (LPSD) and for axial average particle size distribution (APSD) are very similar. However, the upper part of breakthrough profiles calculated for LPSD approaches inlet concentration much more slowly than those calculated for APSD. The retention times of the lower part of uptake curves calculated with average particle diameter are constantly shorter than those obtained from LPSD. For the calculation of the dynamic capacity (DC), the LPSD can be replaced by APSD for large expanded bed heights. Using breakthrough profiles calculated for average particle size, DC values are constantly underestimated. 相似文献
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Relative mass transport efficiencies of near infrared (λ = 795 nm) femtosecond laser generated brass aerosols in helium were measured by ICP-MS applying different ablation cells with short and long washout times. It was found that the transport efficiencies are independent of the cell used within the mutual experimental uncertainties. This finding was confirmed by additional measurements providing the absolute particle mass transport efficiencies of femtosecond laser ablation in He. Here, the transport efficiencies were determined by weighing the samples before and after ablation with a micro-balance, collecting the particles by low-pressure impaction, and evaluating the impacted masses quantitatively by total reflection X-ray fluorescence. Within the experimental uncertainties (± 9–19%) the same absolute transport efficiency (about 77%) was found for all cells applied. This efficiency value can be regarded as a lower limit of the absolute mass transport efficiency since mass losses in the impactor are difficult to quantify. 相似文献
16.
聚合物共混物脆韧转变性能研究 Ⅲ.分散相形态参数之间的关系 总被引:4,自引:2,他引:4
为了研究形态(特别是分散状态)对聚合物共混物韧性的影响,建立了准网络形态模型,定义了分散相分布系数(ξ,0<ξ1),并给出其物理意义,推导了基体层厚度的计算公式,研究了形态参数的变化对基体层厚度的影响.对于常见的无规形态,ξ≈1.对于准网络形态,ξ<1,并且不是常数.计算结果表明,减小ξ和分散相粒径及其分布、增大其体积分数有利于减小基体层厚度.从理论上证明了准网络形态比无规形态更有利于减小基体层厚度. 相似文献
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In the analysis of gene expression profiles, the number of tissue samples with genes expression levels available is usually small compared with the number of genes. This can lead either to possible overfitting or even to a complete failure in analysis of microarray data. The selection of genes that are really indicative of the tissue classification concerned is becoming one of the key steps in microarray studies. In the present paper, we have combined the modified discrete particle swarm optimization (PSO) and support vector machines (SVM) for tumor classification. The modified discrete PSO is applied to select genes, while SVM is used as the classifier or the evaluator. The proposed approach is used to the microarray data of 22 normal and 40 colon tumor tissues and showed good prediction performance. It has been demonstrated that the modified PSO is a useful tool for gene selection and mining high dimension data. 相似文献
19.
Oxide ceramic masses react to simple shearing with hardening (peptisation: increase in the shear stress with the shear deformation).
In the present study the correlation between the increase in the shear stress and the porosity, agglomeration processes and
the type of flow are analysed. For this purpose oxide ceramic masses are tested in a shear device especially developed for
pastes and analysed by rheometric experiments, NMR methods and particle size analysis. The results support the hypothesis
that structural changes (hardening, increase in the mean porosity) of the material during the peptisation mainly depend on
the magnitude and not on the kind of the energy input and thus of the type of flow. The fraction of bound (more generally,
the immobilised) water increases with the shear displacement. Also crushing of primary particles could be observed. Both the
crushing of solid particles causing an increased solid surface and the formation of a three-dimensional gel structure are
microscopic effects capable of resulting in the binding or retaining water. On a macroscopic scale these phenomena cause hardening.
Magnetic resonance imaging visualises flow-induced agglomerates, which form owing to the shear flow and increase the porosity
averaged over the whole sample. After the shear experiment rolls of paste can be seen which indicate that the general assumption
of a plane shear flow in the shear device is not warrantable.
Received: 19 July 2001 Accepted: 25 October 2001 相似文献
20.
KaiKANG ChengYouKAN YiDU YuZhongLI DeShanLIU 《中国化学快报》2005,16(6):831-834
Soap-flee P(MMA-EA-MAA) particles with narrow size distribution were synthesized by seeded emulsion polymerization of methyl methacrylate (MMA), ethyl acrylate (EA) and methacrylic acid (MAA), and large voids inside the particles were generated by alkali posttreatment in the presence of 2-butanone. Results indicated that the size of void and theparticle volume were related with the amount of 2-butanone. The generation mechanism of voids was proposed. 相似文献