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1)  sub-microparticles
亚微米粒
1.
In this thesis, the Poly(2-dimethylamino ethyl methacylate-g-poly(ethylene glycol)) (P(DMAEMA-g-EG))cationic hydrogel sub-microparticles (PCHMP) were prepared by distillation-precipitation copolymerization of Poly(ethylene glycol)methyl ether methacrylate (PEG) macromonomer and DMAEMA.
本文以偶氮二异丁腈(AIBN)为引发剂,聚乙二醇-双丙烯酸酯(PEGDA)为交联剂,采用蒸馏沉淀聚合法制备了聚(甲基丙烯酸-N,N-二甲胺基乙酯-g-聚乙二醇)(P(DMAEMA-g-EG))阳离子水凝胶亚微米粒(PCHMP)。
2)  submicron particle
亚微米微粒;亚微米粒子
3)  submicron particles
亚微米颗粒
1.
The highest flame temperature,temperature field,constituents gradient and coexist of oxi- dation and reduce conditions,make an important effect on the formation of submicron particles(PM_1).
煤粉燃烧火焰区域是燃烧过程中温度最高的区域,同时也是温度梯度、组分浓度梯度最高的地方,以及还原和氧化气氛交错存在等复杂环境,这种环境对亚微米颗粒初始形成阶段有着重要的影响,对该区域形成的PM_1进行研究有助于深入理解PM_1的形成机理。
2.
Based on the electrostatic properties of submicron particles, it was pointed that the electrostatic forces between particles include the forces between induced dipoles a.
采用微观可视化的高速摄像技术直接观察了燃烧源亚微米颗粒物间的相互作用形态,发现了亚微米颗粒间存在“吸引-旋绕-排斥”形态的相互作用。
4)  submicron particles
亚微米粒子
1.
Gelatin submicron particles were prepared by emulsion chemical cross-linking method using gelatin (type A) as core material and paraffine as oil phase.
以A型明胶为原料,石蜡油为油相,采用乳化化学交联方法制备了明胶亚微米粒子。
5)  submicron grain
亚微米晶粒
6)  submicron dust
亚微米尘粒
1.
Based on the theoretical analysis of movement and agglomeration, a numerical model of agglomerating process of submicron dust in electrical field was given.
在对电场中亚微米尘粒运动及凝并规律进行理论分析的基础上,应用分形生长理论建立了亚微米粒子电凝并过程的分形生长数学模型,再现了凝并体的分形结构,确定了凝并体的分形维数及其对除尘效率的影响。
补充资料:2,2'-[亚甲基二(2,1-亚苯基氧亚甲基)]二环氧乙烷
CAS:54208-63-8
分子式:C19H20O4
中文名称:双酚二环甘油醚
2,2'-[亚甲基二(2,1-亚苯基氧亚甲基)]二环氧乙烷
英文名称:2,2'-[methylenebis(2,1-phenyleneoxymethylene)] bis-Oxirane
Methylenebis(o-phenol), 3-propylene oxide ether
2,2'-[methylenebis(2,1-phenyleneoxymethylene)]bis-oxiran
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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