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可蒸馏的液体

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The ionic liquid used can be recovered by distill or other ways. This method is easy to operate.

材料制备过程中使用的离子液体可通过蒸馏等方法回收。

The experimental results showed that using ionic liquid Et3NHCl-2AlCl3 under the conditions of an extraction temperature of 40℃, an extraction time of 40 min and an agent/oil ratio of 0.02, the sulfur removal rate was more than 90%. The ionic liquids could be used repeatedly for 4 times and the used ionic liquids could be regenerated by vacuum distillation, about 52.34% of the thiophen was recovered during regeneration.

实验结果表明,选用无水AlCl3与Et3NHCl的摩尔比为2.0的离子液体进行萃取脱硫实验,当萃取时间为40 min、温度为40 ℃、剂油体积比为0.02时,脱硫率可达到90%以上;离子液体不仅可以重复使用4次,而且还可以通过减压蒸馏的方法进行再生,在再生过程中可回收约52.34%的噻吩。

Noncondensible gas(7%~33%,consisting of CO,CO2,H2 and C1-C2 hydrocarbons),liquid(water and oil phases,26%~45%)and solid residues(31%~51%)were collected after microwave heating of waste PCB.

结果显示:微波热解得到的气体、液体、固体的产率分别为7%~33%、26%~45%、31%~51%,其中气体主要由CO、CO2、H2及有机烃类组成,可燃性气体占70%左右,可作为燃料气加以利用;液体分为水相及油相,经常压蒸馏后得到的120~250℃馏分主要为单酚化合物,苯酚高达50%左右,甲基苯酚和邻甲基苯酚为25%以上,是良好的化工原料;固体中除炭外,还含有许多金属如铅、锡和铜等,可以回收利用。

During extracting vacuum still bottom and hydrocyclone underflow of H-coal process,coal liquid could be clearly divided into deashed liquidproducts of ash yield less than 0.05% and ash-rich residue with ash yield greater than 60%.

在萃取氢-煤法减压蒸馏釜液或水力旋风分离器底流物时,这些重质物料可分离成灰分在0.05%以下的低灰液体产品和灰分达60%以上的富灰残渣。

Macintosh found that naphtha — a volatile, oily liquid created in the distillation the aforementioned coal tar, as well as petroleum — could be used to waterproof fabrics. In 1823, he patented what was the first truly waterproof fabric, supple enough to be used in clothing.

麦金托什发现,石脑油——在蒸馏前面提到的煤焦油以及石油的过程中所产生的一种易挥发的油状液体——可用于防水织物。1823年,他获得了第一个真正的防水织物专利,这种布料相当柔软,可用来做服装。

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Objective: To study the effect of polycythemia on blood oxygen saturation.

裴蕾目的:观察RBC剧增而引起的高粘血症对血氧饱和度的影响。

Based on SIMPLER algorithm in the curvilinear body-fitted coordinates, the calculations were performed for Pr=0.7, Re=10~1000 on non-orthogonal non-staggered grids which are generated by elliptic equation systems.

采用曲线坐标系下压力与速度耦合的SIMPLER算法,数值研究了周期性渐扩渐缩波纹通道内脉动流动与换热情况,流动Re数的范围为10~1000,Pr数为0.7。

Such a traditional division of the zone of aeration is useful for illustrative purposes.

为了说明的目的,包气带的传统划分是有用的。