加脂剂

  • 网络fatliquor;fatliquoring agents;fat-liquor
加脂剂加脂剂
  1. 本文简要介绍了加脂剂研制中几种常用的化学分析方法。

    Some methods on chemical analysis of fat-liquor are briefly introduced in this paper .

  2. 就塔拉栲胶、磺化加脂剂在无铬鞣中,特别是植铝鞣的鞣制及以后工序对其所鞣革的影响作了一些研究,主要针对在工业上的应用。

    In this paper , it has been studied that TARA extract and sulphonated fat-liquor are used in the chrome-free process , especially vegetable-aluminium tannage in order to apply it in the tannery .

  3. 亲油单体与丙烯酸在pH值8~9水溶液中聚合,得到复鞣加脂剂。

    The retanning fatliquor agent had been prepared by an aqueous solution copolymerization technique from the lipophilic monomer and acrylic at pH 8 ~ 9 .

  4. 菜籽油聚合物加脂剂PCF的合成及应用性能研究

    The Synthesis and Application of Polymer Fatliquoring Agent PCF

  5. SPS型复合加脂剂的研制

    Preparation of SPS type fat-liquoring agent

  6. 皮革丝光型加脂剂SFC的分析

    Analysis of the SFC silky type fatliquor

  7. HW-1型加脂剂的研制

    Study of HW - 1 Fatliquoring Agent

  8. PME系列磷酸化羊毛脂加脂剂的制备及其应用性能探讨

    The Preparation and Application Performance Exploration of PME series Phosphated Lanolin

  9. NAF耐酸、抗电解质加脂剂的研制及应用

    Preparation and Application of NAF Fatliquors

  10. 亚硫酸化填充加脂剂SAA的应用研究

    Application of Sulfited Filling Fatliquor SAA

  11. RCF型结合型皮革加脂剂的制备及应用

    The Preparation and Application of RCF Type Connective Leather Fatliquors

  12. SLF多功能亚硫酸化羊毛脂加脂剂应用及其特性研究

    Studies on Application and Properties of SLF Multiple-functional Sulfited Lanoline Fatliquoring Agent

  13. TCF改性羊毛脂加脂剂的研究

    Study on TCF Modified Lanoline Fatliquor

  14. 以酰胺化菜籽油马来酸单酯、丙烯酸和醋酸乙烯酯为原料,通过乳液共聚制得了菜籽油聚合物加脂剂PCF。

    A kind of polymeric fatliquor PCF was synthesized via free copolymerization from amided colza oil succinate , acrylic acid and vinyl acetate .

  15. FRT复鞣加脂剂的研究

    Study on FRT Fatliquor Retanning Agent

  16. 聚醚改性硅氧烷甜菜碱PBPS加脂剂的制备及性能

    Preparation of Polyether-modified Betaine Functional Siloxane Fatliquoring Agent and its Effect

  17. SE-40合成加脂剂是当前国内SE合成加脂剂系列产品的换代产品。

    SE-40 type fat liquor is first in SE type fat liquoring series products on fat liquoring propertys and effect .

  18. CWF型和CZF型高档服装革加脂剂的研制

    The Preparation of CWF , CZF Fatliquoring Agent for High Quality Garment Leather

  19. 本文主要介绍菜油脚制取RPS型软性白油(皮革加脂剂)的工艺路线及其应用。

    This paper mainly described the research result of the process in preparing softening white oil of RPS type ( leather fat-liquoring agent ) .

  20. 以石油酸为原料经络合脱脂肪酸、酯化,制取HW-1型皮革加脂剂。

    This paper discusses the process of the production of HW-1 fatliquoring agent for leather by complex degreasing and esterification with petroleum acid as the raw material .

  21. 在我们的实验中,我们合成了烷基聚乙二醇醚磺酸盐(APES),一种电解稳定加脂剂,并将其试用于浸酸浴和鞣浴中。

    In our experiment , we synthesised alkyl polyglycol ether sulfonates ( APES ), electrolytically stable fatliquor , and tried to apply it in the pickle and tanning bath .

  22. QWP防水加脂剂系列的研制及应用

    Preparation and Application of Waterproof-fatliquor Series QWP

  23. PVO系列磷酸化植物油加脂剂的研制

    The development of PVO series phosphated vegetable oil

  24. 酰胺化羊毛脂采用P2O5分散投料,缓释法合成磷酸化改性羊毛脂皮革加脂剂。

    Leather fatliquor made of phosphonation modified lanolin was prepared using amidated lanolin and dispersed P_2O_5 as starting material by controlled release method .

  25. PES-1磷酸酯加脂剂的性能及用途

    Properities and Application of Phosphated Fatliquor PES-1

  26. 两性加脂剂CL-819在绵羊服装革上的应用

    Application of amphoteric fat-liquoring agent CL-819 to manufacture of sheep skin leather clothing

  27. 耐水洗加脂剂WRF-1的合成和应用

    The Synthesis and Application of Washable Fatliquoring Agent WRF-1

  28. JRO-1合成防水复鞣加脂剂的应用

    Application of JRO-1 Water-proof and retanning Fatliquor Agent

  29. 探讨了PME系列磷酸化羊毛脂加脂剂在制备应用中的影响因素,主要有羊毛脂的选择、参与磷酸化的植物油及其改性产物、磷酸化的应用条件。

    In this paper , The factors such as the choice of lanolin , vegetable oil added into phosphate reaction and reaction conditions were discussed when manufacturing PME series phosphated lanolin fatliquor .

  30. 以蓖麻油和鱼油的混合油为原料,采用固体酸催化和P2O5溶剂分散法的新技术来合成一种新型磷酸酯皮革加脂剂。

    Based on castor oil and fish oil as mixed oil , a new phosphate fat-liquoring agent was synthesized by solid acid as catalyst and P_2O_5 with solvent dispersion .