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包水

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  1. 冷冻解冻是一种新型的破除油包水(W/O)型乳状液的物理方法。

    Freeze / thaw is a new physical method for demulsifying water-in-oil ( W / O ) emulsions .

  2. CSP中间包水模实验优化研究

    Experimental study on tundish optimization for CSP by hydraulic simulation

  3. 非离子乳化剂的HLB值和油包水乳化燃料油性质的关系

    Relationship between HLB of nonionic emulsifiers and properties of water-in-fuel oil emulsions

  4. 初次免疫把弗氏完全佐剂与等体积的L1融合蛋白溶液研磨成油包水乳剂皮下多点注射于家兔的背部。

    In the first immune experiment , L1 fusion protein was blended with a same volume of Freund 's complete adjuvant and injected into the back of the rabbit by subcutaneous injection .

  5. S0-1油包水乳化压井液室内实验研究

    Laboratory Experimental Study on S0-1 Water-in-oil Emulsion Killing Fluid

  6. 现场应用了4口井,固井质量优质,表明冲洗液YJC-1提高了油包水钻井液完钻井的固井质量。

    Applications of 4 wells showed excellent cementing quality .

  7. 制备TritonX&10/正辛醇/环己烷/水(或氨水)油包水(W/O)型微乳液,讨论了微乳液相关性质与含水量的关系;

    Triton X-10 / 1-octanol / cyclohexane / water ( or ammonia aqueous solution ) W / O microemulsion system was prepared , and the relationship between the property of microemulsions and the water content was studied .

  8. 水解速率在油包水(W/O)微乳液结构介质中较大,且随水含量增加而减小,双连续(B.C。)微乳液结构中随水含量增加而变大;

    The hydrolysis rates are higher in W / O microemulsion media and decrease with the addition of water , they increase with that in B.C.

  9. 油包水乳化修井液的试验研究油包水钻井液耐高温冲洗液YJC-1的研究与应用

    Experiment study on inverted emulsion workover fluid High temperature resisting flushing fluid YJC-1 tor oil based drilling fluid

  10. 通过对160mm×220mm矩形坯水平连铸中间包水模型试验,研究了中间包液面控制、长水口插入深度、铸坯拉速和中间包结构对钢水流场变化的影响。

    The effect of liquid level control in tundish , immersed depth of long nozzle , casting speed and structure of tundish on liquid steel flowing pattern has been investigated by water modelling test of tundish for 160 mm × 220 mm billet horizontal continuous casting .

  11. 预测油包水乳化泥浆表观粘度的数学模型

    A model for predicting the apparent viscosity of invert emulsion muds

  12. 高含水油包水乳化液稳定性机理及实验研究

    Stability mechanism and experimental study of high moisture water in-oil emulsion

  13. 亚甲蓝油包水微乳的制备及其淋巴示踪特性的考察

    Preparation and lymphatic tracing study of methylene blue water-in-oil microemulsion

  14. 油包水钻井液降滤失规律研究

    Study of filtrate reducer laws in water-in-oil emulsion drilling fluid

  15. 连铸中间包水仿真模型数据采集系统的研制

    The Design of the Data Collecting System for the Continuous Casting Water Model

  16. 谁包水在衣服里。

    Who hath bound the waters in a garment ?

  17. 包水电费吗?

    B : Does that include utilities ?

  18. 鞍钢中薄板坯连铸中间包水模型实验研究

    Experimental Study of Hydraulic Model Simulating Tundish Behavoir in Medium or Thin Slab CC in Angang

  19. 其次,利用体系的相转变制备高性能的油包水乳液。

    Secondly , we apply the phase inversion to prepare high performance W / O emulsion .

  20. 因此,研究油包水乳液的制备及稳定性具有重要的意义。

    Therefore , it is of great importance to study the preparation and stability of W / O emulsions .

  21. 本发明涉及一种用于制备油包水粗乳液的琥珀酸二酯聚合物。

    The present invention relates to a succinic diester polymer which is used in the preparation of water-in-oil macroemulsions .

  22. 采用油包水(W/O)的微乳液体系制备了粒度为20~100nm的α-Fe。

    Alpha iron nanoparticles with about 20 ~ 100 nm size were obtained in the W / O microemulsion system .

  23. 本文的研究对于油包水乳化液降低成本,提高性能的发展具有重要的理论意义。

    These results obtained in this paper are of importance for reducing production cost and improving property of W / O emulsion .

  24. 高效油包水配方及滋润效果,细腻肌肤,减少皱纹,不油不腻。

    With highly efficient oil-wrap-aqua formula and moisturizing effect , it can refine skin and reduce wrinkle without oily and sticky feeling .

  25. 为减少不锈钢连铸坯中夹杂物的数量,开展了不锈钢板坯连铸中包水模实验。

    In order to reduce the inclusion quantity in the stainless steel slab , water-modeling experiment of stainless steel slab continuous casting tundish is launched .

  26. 环糊精不管是对水包油或油包水体系,包合的挥发性物质的释放速度都比较稳定,且不破坏原膏体。

    Cyclodextrins whether to oil-in-water or water-in-oil system , inclusion volatile material release rate are more stable , and does not destroy the original paste .

  27. 本文在对油包水乳化液的微观机构进行分析的基础上,对高含水油包水乳化液的稳定性机理进行了实验研究,初步分析了它的流变性质。

    This paper carries out theoretical and experimental study of its stability mechanism , and gives emphasis to analyzing the rheological property of the emulsion .

  28. 首先对油包水(W/O)型微乳液进行了制备研究,探明了一定条件下W/O型微乳液中的最大增溶水量。

    The preparation method of W / O microemulsion was studied . The maximum water content in W / O microemulsion under given conditions was found out .

  29. 电导率测定表明所形成的微乳液区均为水包油结构,即使在富含甲苯区域,亦不会有油包水的反相胶束形成。

    The whole structure of microemulsion is oil core surrounded by water . The formation of reverse micelles is shown to be unlikely even in toluene-rich region .

  30. 通过绘制(伪)三元相图,考察多种乳化剂、助乳化剂和植物油对油包水微乳相行为的影响,并以载水量为指标进行优选。

    Based on the obtained pseudo-ternary phase diagrams , the effects of surfactants , cosurfactants and oils on the microemulsion were studied and the formulations were optimized .