| 1. | The physical and chemical interactions among the particles, gases and vapors are incredibly complex . 颗粒物、气体和蒸汽之间的物理反应和化学反应是极为复杂的。 |
| 2. | photoexcited may be quenched readily by hydrocarbons, but no report of chemical interaction has appeared. 光激发的可能易被烃熄灭,但未见它们相互进行化学反应报导。 |
| 3. | Blended for just the exact chemical interaction . . 是化学作用巧妙的融和. . |
| 4. | Blended for just the exact chemical interaction . . 是化学作用巧妙的融和. . |
| 5. | Blended for just the exact chemical interaction 是化学作用巧妙的融和 |
| 6. | < uk > photoexcited may be quenched readily by hydrocarbons , but no report of chemical interaction has appeared . < / uk > < uk >光激发的可能易被烃熄灭,但未见它们相互进行化学反应报导。 < / uk > |
| 7. | Heat and mass transportation and chemical interaction in a hydrothermal system play a pivot role in dynamical processes of ore formation and pollutant migration 摘要介质中热质输运反应体系对于热质成矿、污物迁移等十分重要。 |
| 8. | If we known radius distribution of media grains and add the thermal perturbation on the normal thermal gradient , thus it lead to unremitting the dynamics process of heat and mass transportation and chemical interaction in the area 并使用此模型研究了局部的温度变化和颗粒半径不均一分布对研究区域内温度场和浓度场的变化情况,其结论是它们之间的耦合可能打破系统的平衡,驱使系统长时间持续进行流体输运反应动力学过程。 |
| 9. | In this paper , we have a dynamic model of coupled heat and mass transportation and chemical interaction , by using the dynamic model of heat and mass transportation , chemical interaction in porous media , and the porosity and permeability models on a spherical close pack arrangement of grains 这里利用热质流体输运动力学模型与石英溶解与沉淀的化学动力学模型,以及多孔介质的本构关系,建立了一个热质输运、反应动力学藕合模型。 |
| 10. | Treated with prudent chosen intercalation regent , hydrophilic montmorillonite becomes hydrophobic ; the interlayer distance of montmorillonite is expanded and the compatibility of montmorillonite with polymer matrix is improved . montmorillonite disperses in the polymer matrix promoted by mechanical force and chemical interaction , which make it possible to prepare polymer / clay nanocomposite by melt intercalation process 通过对蒙脱土进行有机化处理,使蒙脱土由亲水性变为亲油性,蒙脱土层间距增大并改善蒙脱土与聚合物基体的相容性;利用受限空间内力化学作用促进蒙脱土在聚合物中的分散,使熔融插层法制备聚合物粘土纳米复合材料成为可能。 |