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1)  deoiled asphalt (DOA)
脱油沥青(DOA)
2)  deoiled asphalt
脱油沥青
1.
Solvothermal synthesis of cabon-encapsulated metal nanoparticles from deoiled asphalt
脱油沥青溶剂热合成碳包覆纳米金属颗粒
2.
The visbreaking reaction for the feedstock of deoiled asphalt from butane deasphalting unit (BDOA) blended with full distillation range FCC slurry (FDRFS) or the light FCC decanted oil of IBP-460℃(LFS) distillation range were investigated in an autoclave.
在高压釜中对丁烷脱油沥青掺炼全馏分催化裂化油浆和馏程小于460℃的催化裂化轻质油浆的减粘裂化过程进行了研究。
3.
Deoiled asphalt was chosen as the carbon source and FeCl3 as the catalyst,to prepare vapor-grown carbon fibers(VGCFs)with different morphologies,by chemical vapor deposition,in an atmosphere of argon and hydrogen.
以脱油沥青(DOA)为碳源,氯化铁为催化剂,在氩气和氢气的混合气氛下利用化学气相沉积法(CVD)制备了不同形貌的气相生长炭纤维(VGCFs)。
3)  deasphalted oil
脱沥青油
1.
Evaluation and utilization optimization of a deasphalted oil hydroisomerization products based on carbon number distribution and hydrocarbon type analysis;
基于碳数分布和族组成分析的脱沥青油加氢异构反应产物分析及优化利用
2.
The experimental results show that the conversion of vacuum gas oil(VGO), deasphalted oil(DAO), atmospheric resid(AR), mixed oil and topped light slurry are 74.
结果表明:在完全相同的催化剂和操作条件下,减压蜡油、脱沥青油、常压重油、混合原料和拔头轻油浆的转化率分别为74。
3.
This paper introduced the problems after SPC transformed the diesel hydrogenation plant into deasphalted oil hydrogenation plant, analyzed the causes of them, and put forward the solution through process transformation and modification of processing parameters.
文章介绍了中国石化上海石油化工股份有限公司在对柴油加氢装置改造为脱沥青油加氢后产生的问题,分析了问题产生的原因,并通过流程改造和工艺参数修改使问题得到解决。
4)  de-oiled asphalt
脱油沥青
1.
Carbon-encapsulated nickel nano onions have been successfully prepared from de-oiled asphalt (DOA) by heat-treatment at 2000℃with nickel powder as catalyst.
以脱油沥青(Deoiled Asphalt)作原料,用热处理法制备了内包金属镍的纳米碳洋葱。
2.
The new visbreaking process with de-oiled asphalt feedstock is discussed.
论述了以脱油沥青为原料的减粘裂化新工艺。
5)  de-asphalt oil(DAO)
脱沥青油(DAO)
6)  deasphalted oil
脱沥青渣油
补充资料:DOA
   己二酸二辛酯又称己二酸二(2-乙基己)酯,简称DOA,分子量370.6, 无色透明油状液体。相对密度(20℃/20℃)0.927,凝固点-75℃,沸点2l 5℃(0.67kPa).闪点(开口)193℃,折射率1.4470,粘度(20 ℃)12~15mPa·s。溶于氯仿、汽油、醋酸乙酯、甲醉、甲苯、矿物油、植物油等。微溶于乙二醇类,不溶于水。增塑效率高。可赋予制品良好的低温柔软性和耐光性。但挥发性较大,耐水性、耐迁移性和电绝缘性较差。
可燃,无毒,LD508500mg/kg。
   为聚氯乙烯、聚苯乙烯、硝化纤维素、乙基纤维素的优良低温增塑剂。
   贮存于阴凉、通风的库房内,远离火源。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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