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The diameter of nano-particle is small and its surface energy is high. Atomic valence bond of particle surface is not saturation and surface atoms have extremely physical and chemical activity. So, nano-particle is apt to agglomerate to make difficult to bring its excellent properties to completely play and to modify polymer.

纳米粒子粒径小,表面能大,且粒子表面的原子价健处于不饱和状态,表面原子有极大的物理与化学活性,因此纳米粒子非常易于团聚和吸附,而使得其拥有的性能难以充分发挥,从而失去应有的对高分子材料的改性作用。

Result: Coefficient of Unguent of water-extraction and alcohol-precipitation method was 17. 2%, Coefficient of Unguent of chitosans clarification method was 12.8%, and macro-reticular absorbing resin method was 3.1%. They could clarify liquor of water-extraction.

结果:乙醇沉淀法所得的浸膏得率为17.2%,壳聚糖澄清法所得的浸膏得率为12.8%,大孔吸附树脂法所得的浸膏得率为3.1%,3种方法均能够较好地使水提液澄明,且后两者还能够在降低浸膏得率、保留有效成分、保证制剂稳定性方面优于前者,并能缩短生产周期,降低成本。

Therefore, butoxy in n_butanol can be adsorbed chemically on the surfaces of the tourmaline particles in the process of azeotropic distillation, which can effectively prevent the formation of liquid_bridge between the particles of tourmaline and avoid the hard aggregation in the drying process.

正丁醇中的丁氧基在共沸蒸馏过程中在电气石颗粒表面可取代羟基,产生化学吸附,能有效防止液桥的产生,阻止干燥过程中超细粉末的硬团聚。

In recent years, Yihua greatly enhanced its self-determined scientific and technological ability for innovation. It implemented over 200 items of new techniques, developed over 20 items of state-level or province-level new products, declared over 100 patents of invention and achieved over 50 items of state-level, province-level or city-level important scientific and technical achievements, among which, the YH Non-break Molding Powder Coal Gasification Technique was for the first in the world applied in mass production device of urea. Yihua%26rsquo;s Technique of Pressure-swing Decarbonization Absorber won a national gold prize for patent of invention. Its Technique of Heavy-medium Ore Beneficiation and Twice Versa Floatation successfully solved the global problem that collophanite could%26rsquo;t be used to produce DAP.

近两年,宜化开发并实施了300多项新技术新工艺,开发了20多项国家级、省级新产品,申报了200多项发明专利,取得了50多项国家、省、市级重大科技成果,具有极强的自主创新能力,其中YH粉煤连续成型气化技术成为世界第一家大规模用于尿素生产的装置;变压吸附脱碳获得了国家发明专利金奖;重介质选矿和双反浮选技术成功地解决了胶磷矿不能生产磷酸二铵的世界难题。

This hollow ball not only has the function of adsorption filtration depuration of water but also reduce the acidity of water to activation decomposition lessening of hydrone through piezoelectricity and activation of releasing negative ion and sending far infrared. These processes can balance people's PH and make water tasted well and became alkalescence.

该空心球不仅对水质起到吸附、过滤、净化作用,而且通过释放负离子、发射远红外的压电作用和活化作用,降低水的酸性,将水分子活化分解变小,呈为能平衡人体酸碱度,口感好的弱碱性水。

This hollow ball not only has the function of adsorption filtration depuration of water but also reduce the acidity of water to activation decomposition lessening of hydrone through piezoelectricity and activation of releasing negative ion and sending far infrared.

该空心球不仅对水质起到吸附、过滤、净化作用,而且通过释放负离子、发射远红外的压电作用和活化作用,降低水的酸性,将水分子活化分解变小,成为能平衡人体酸碱度,口感好的弱碱性水。

This hollow ball not only has the function of adsorption filtration depuration of water but also reduce the acidity of water to activation decomposition lessening of hydrone through piezoelectricity and activation of releasing negative ion and sending far infrared. These processes can balance people's PH and make water tasted well and became alkalescence.

该空心球不仅对水质起到吸附、过滤、净化作用,而且通过释放负离子、发射远红外的压电作用和活化作用,降低水的酸性,将水分子活化分解变小,成为能平衡人体酸碱度,口感好的弱碱性水。

The present work specialized in the purification and open ing of the Multi-walled carbon nanotubes refluxed in concentrated nitric acid or air oxidation method respectively.

碳纳米管具有接近理想的一维纳米空间,而开口的碳纳米管中空管腔可做成纳米试管、虹吸管、超级吸附剂、催化剂载体和储能材料以及在中空的碳纳米管内填充外来物质等。

The adsorption principles of two resins are both physical adsorption. At the same time, the MN as eluant instead of acid is selected and elution ratio can reach above 96%. 10 circles of the stable experiments show that the resins are stable, and their adsorption ratio could be maintained around 93%.

选择了一种代替酸洗脱的解吸剂MN,简化了解吸过程,无二次污染且解吸率可达96%以上。10次的稳定性实验树脂的吸附率均能保持93%左右。

Meanwhile, the strength of L acid absorption sites on the surface of...

同时 ,在 Al2 O3载体中引入 Ti O2 后,能明显减弱 Al2 O3上 L酸的强吸附部位,从而减弱了 Al2 O3载体水合反应的能力,提高了催化剂的抗水合性能

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