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Identification, design and synthesis of oxygenated hydrocarbon-based carbon dioxide-soluble polymers for chemical and petroleum engineering applications.

机译:用于化学和石油工程应用的含氧烃基二氧化碳可溶性聚合物的鉴定,设计和合成。

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Over the past two decades the use of sub/supercritical CO2 has received much attention as a green alternative to organic solvents for chemical processes because of its pressure-tunable physicochemical properties and economic advantages. However the advantages are diminished because of a relative narrow range of CO2-soluble materials. The goal of this work is to identify, design and synthesize oxygenated hydrocarbon-based CO 2-soluble polymers that are able to serve as construction blocks for copolymers, dispersants, surfactants, and thickeners. Without concerning on the cost and the environmental persistence like fluorinated materials, the inexpensive and environmentally benign materials would significantly enhance the viability of sub/supercritical CO2-based technology. Based on both experimental heuristics and ab initio simulation of molecular modeling (performed by Dr. Johnson's group), we proposed specific new polymer structures: poly (3-acetoxy oxetane) (PAO), poly (vinyl methoxymethyl ether) (PVMME), poly (vinyl 1-methoxyethyl ether) (PVMEE), and cellulose triacetate (CTA) oligomers. Phase behavior studies were also performed with novel CO 2-philic compounds containing vinyl acetate, propylene glycol, or multiple tert-butyl groups.; PAO, PVMME and PVMME were soluble in CO2, but not as soluble as poly (vinyl acetate). Oligomers of cellulose triacetate with as many as four repeat units solubilized into dense CO2 less than 14 MPa in the concentration range of 1-5 wt%. Phase behaviors of more than twenty compounds in dense CO2 were studied in this project. A new type of phase behavior for solid CO2-philes that melt and dissolve in CO 2 was detailed using a model binary mixture of beta-D-maltose octaacetate and CO2. Copolymers of tetrafluoroethylene (TFE) and vinyl acetate (VAc) exhibited lower miscibility pressures than either of the homopolymers, probably due to quadradentate binding configurations with CO 2. Phase behavior investigation of poly (propylene glycol) (PPG) monobutyl ether in CO2 demonstrated ether-CO2 interactions should receive as much attention as carbonyl-CO2 interactions when designing CO2-philic functional groups. 1,3,5-tri-tert-butylbenzene and 2,4,6-tri-tert-butylphenol were both extraordinarily soluble in CO2, and are excellent candidates for CO2-soluble sand binders.; In summary, although a new CO2 thickener was not identified, new non-fluorous CO2-soluble materials were identified, which were, in general, acetate-rich with flexible chains, weak self-interactions, and multidentate interaction between CO2 and solute functional groups.
机译:在过去的二十年中,由于亚/超临界CO2的压力可调节的物理化学性质和经济优势,作为化学过程中有机溶剂的绿色替代品,其用途受到了广泛关注。但是,由于可溶于CO2的材料范围相对较窄,因此优势减弱了。这项工作的目标是确定,设计和合成能够用作共聚物,分散剂,表面活性剂和增稠剂的结构单元的含氧烃基CO 2-可溶聚合物。无需像氟化材料那样考虑成本和环境持久性,廉价且对环境无害的材料将显着提高亚/超临界CO2基技术的可行性。基于实验启发法和分子建模的从头算起(由Johnson小组执行),我们提出了特定的新聚合物结构:聚(3-乙酰氧基氧杂环丁烷)(PAO),聚(乙烯基甲氧基甲基醚)(PVMME),聚(乙烯基1-甲氧基乙基醚)(PVMEE)和纤维素三乙酸酯(CTA)低聚物。还使用含有乙酸乙烯酯,丙二醇或多个叔丁基的新型CO 2-亲和化合物进行了相行为研究。 PAO,PVMME和PVMME可溶于CO2,但不如聚乙酸乙烯酯可溶。在1-5重量%的浓度范围内,具有多达四个重复单元的三乙酸纤维素的低聚物溶解成小于14MPa的致密CO 2。本项目研究了二十多种化合物在浓二氧化碳中的相行为。使用β-D-麦芽糖八乙酸酯和CO2的模型二元混合物,详细描述了熔化并溶于CO 2的固态CO2-亲和剂的新型相行为。四氟乙烯(TFE)和醋酸乙烯酯(VAc)的共聚物比任何一种均聚物均显示出更低的混溶压力,这可能是由于四角铁酸盐与CO 2的结合构型所致。设计亲CO2官能团时,-CO2相互作用应像羰基-CO2相互作用一样受到关注。 1,3,5-三叔丁基苯酚和2,4,6-三叔丁基苯酚都极易溶于CO2,并且是可溶于CO2的砂粘合剂的极佳候选者。总之,尽管未发现新的CO2增稠剂,但仍鉴定出了新的非氟可溶于CO2的材料,这些材料通常富含乙酸盐,具有柔性链,较弱的自相互作用以及CO2与溶质官能团之间的多齿相互作用。 。

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