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首页> 外文期刊>RSC Advances >Raising the efficiency of petrolatum deoiling process by using non-polar modifier concentrates separated from paraffin wastes to produce different petroleum products
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Raising the efficiency of petrolatum deoiling process by using non-polar modifier concentrates separated from paraffin wastes to produce different petroleum products

机译:通过使用与石蜡废弃物分离的非极性改性剂浓缩物来提高凡士林脱胶工艺的效率,以产生不同的石油产品

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摘要

Deoiling of crude petrolatum was enhanced by the addition of 1 wt% of non-polar modifier concentrates separated from slack wax waste and compared with pure n-alkane mixtures of (C-20 + C-22) and (C-24 + C-26). The data revealed that 1 wt% of the separated (C-20 + C-22) n-alkane mixture is the preferable modifier to improve the deoiling process of crude petrolatum. X-ray diffraction patterns and SEM photographs showed that the addition of 1 wt% of non-polar modifier concentrates gave hard waxes having some crystal growth and larger crystal sizes and possessing more holes than the hard waxes separated without using a modifier. Different petroleum products were produced using both of the products of the petrolatum deoiling process: the microcrystalline wax and the slop wax. Various grades of hardened ceresin were formulated by the addition of low density polyethylene to the separated microcrystalline wax. Fourteen formulated blends of petrolatum were prepared based on the microcrystalline wax and slop wax saturate with heavy and light paraffin oils, respectively. According to the standard specifications of the US Pharmacopoeia and National Formulary of petrolatum and Ultra Chemical Inc. of liquid petrolatum, the blend formulations (3-8) were classified as technical petrolatums. Two of these blends (7 & 8) were also classified as liquid petrolatums. The blend formulations (9-14) were classified as white pharmaceutical petrolatums. Meanwhile, three of these blends (12-14) were also within the limits of the standard specifications of ultrapure liquid petrolatums.
机译:通过加入从松弛蜡废物中分离的1wt%的非极性改性剂浓缩物,增强了粗凡士林的废弃物,并与(C-20 + C-22)和(C-24 + C-的纯N-烷烃混合物相比26)。数据显示,1wt%的分离的(C-20 + C-22)N-烷烃混合物是改善粗凡士林的碎冰石的碎片过程的优选改性剂。 X射线衍射图案和SEM照片显示,加入1wt%的非极性改性剂浓缩物,使得具有一些晶体生长和较大晶体尺寸的硬蜡,并且具有比在不使用改进剂的情况下分离的硬蜡的更多孔。使用凡士林碎型工艺的两种产品生产不同的石油产品:微晶蜡和斜面蜡。通过向分离的微晶蜡加入低密度聚乙烯来配制各种级硬化的CEREN素。基于微晶蜡和斜蜡,分别用重和轻的石蜡油饱和,制备十四制备凡士林。根据美国药典的标准规范和凡士兰凡士林和Ultra Chemical Inc.的全国凡士林凡士林,混合制剂(3-8)被归类为技术凡士林。这些混合物中的两种(7和8)也被归类为液体凡士林。将混合物配方(9-14)归类为白色药物凡士林。同时,其中三种共混物(12-14)也在超纯液凡士林标准规格的范围内。

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  • 来源
    《RSC Advances》 |2015年第88期|共10页
  • 作者单位

    Egyptian Petr Res Inst EPRI Petr Refining Div Cairo Egypt;

    Egyptian Petr Res Inst EPRI Petr Refining Div Cairo Egypt;

    Egyptian Petr Res Inst EPRI Petr Refining Div Cairo Egypt;

    Egyptian Petr Res Inst EPRI Petr Refining Div Cairo Egypt;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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