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喷气燃料高热安定性添加剂定量检测研究
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作者 王玉梅 胡建强 +2 位作者 张健健 李争鸣 吴楠 《化工新型材料》 CAS CSCD 北大核心 2017年第4期156-158,共3页
高热安定性添加剂能有效提升喷气燃料的热氧化安定性,其用量大小会对喷气燃料的质量和使用性能产生影响。采用气相色谱/质谱联用技术研究了定量检测高热安定性添加剂含量的可行性,发现高热安定性添加剂中抗氧剂单峰峰高与喷气燃料烃组... 高热安定性添加剂能有效提升喷气燃料的热氧化安定性,其用量大小会对喷气燃料的质量和使用性能产生影响。采用气相色谱/质谱联用技术研究了定量检测高热安定性添加剂含量的可行性,发现高热安定性添加剂中抗氧剂单峰峰高与喷气燃料烃组分最高峰峰高的比值,与添加剂含量具有较好的线性相关性,当添加剂含量在0.125~1g/L时,两者的线性相关系数可以达到0.99927,通过建立不同含量添加剂的校准关系曲线,可实现喷气燃料中添加剂含量的精确测定。 展开更多
关键词 喷气燃料 高热安定性添加剂 定量 检测
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柴油安定性添加剂的试验研究
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作者 于增信 孙莉 《北京联合大学学报》 CAS 2004年第1期66-68,共3页
对经过感受性试验选定的几种添加剂进行不同含量的复合 ,筛选出一种新的复合添加剂的最佳配方 ,并对其进行了适用性验证。结果表明 ,新的复合添加剂能有效地改善柴油的储存安定性 ,提高发动机的性能 。
关键词 柴油 安定性添加剂 储存安定性 发动机 经济效益
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Lubricant Biodegradation Enhancers: Designed Chemistry and Engineered Technology 被引量:8
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作者 Chen Boshui Gao Lingyue +3 位作者 Fang Jianhua Zhang Nan Wu Jiang Wang Jiu 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2015年第3期102-110,共9页
In recent decades, a growing worldwide trend of developing the biodegradable lubricants has been prevailing to form a specific field of green chemistry and green engineering. Enhancement of biodegradability of unreadi... In recent decades, a growing worldwide trend of developing the biodegradable lubricants has been prevailing to form a specific field of green chemistry and green engineering. Enhancement of biodegradability of unreadily biodegradable petroleum-based lubricants has as such become an urgent must. For over a decade the authors have been focusing on the improvement of biodegradability of unreadily biodegradable lubricants such as petroleum-based lubricating oils and greases. A new idea of lubricant biodegradation enhancer was put forward by the authors with the aim to stimulate the biodegradation of unreadily biodegradable lubricants by incorporating the enhancer into the lubricants in order to turn the lubricants into greener biodegradable ones and to help in situ bioremediation of lubricant-contaminated environment. This manuscript summarizes our recent efforts relating to the chemistry and technology of biodegradation enhancers for lubricants. Firstly, the chemistry of lubricant biodegradation enhancers was designed based on the principles of bioremediation for the treatment of hydrocarbon contaminated environment. Secondly, the ability of the designed biodegradation enhancers for increasing the biodegradability of unreadily biodegradable industrial lubricants was investigated through biodegradability evaluation tests, microbial population analysis, and biodegradation kinetics modeling. Finally, the impact of biodegradation enhancers on some crucial performance characteristics of lubricants such as lubricity and oxidation stability was tested via tribological evaluation and oxidation determinations. Our results have shown that the designed chemistry of nitrogenous and/or phosphorous compounds such as lauroyl glutamine, oleoyl glycine, oleic diethanolamide phosphate and lauric diethanolamide borate was outstanding in boosting biodegradation of petroleum-based lubricants which was ascribed to increase the microbial population and decrease the oil-water interfacial tension during the biodegradation process. Lubricants doped with the biodegradation enhancers exhibited much better biodegradability and higher biodegradation rate in the surrounding soils which could be well modeled by the exponential biodegradation kinetics. Furthermore, as lubricant dopants, the biodegradation enhancers also provided excellent capability in reducing friction and wear and in retarding oxidation of lubricants. In the nature of things, lubricant biodegradation enhancers, which are multi-functional not only in the improvement of biodegradability, but also in the fortification of lubricity and in the inhibition of oxidation of lubricants, are expected to be promising as a new category of lubricant additives. 展开更多
关键词 LUBRICANT biodegradation enhancer BIODEGRADABILITY biodegradation kinetics lubricity.
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