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水乳化法制备罗丹明B接枝琼脂糖荧光微球
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作者 李诚博 程笑晨 刘晨光 《中国海洋大学学报(自然科学版)》 CAS CSCD 北大核心 2019年第7期26-32,共7页
本文旨在制备一种新型的荧光琼脂糖微球。首先通过环氧氯丙烷活化琼脂糖,再与罗丹明B进行化学接枝,制备了一种具有荧光特性的新型琼脂糖化合物。通过荧光分光光度计及X衍射仪检测,发现新型琼脂糖化合物的荧光特性与罗丹明B没有差别,都... 本文旨在制备一种新型的荧光琼脂糖微球。首先通过环氧氯丙烷活化琼脂糖,再与罗丹明B进行化学接枝,制备了一种具有荧光特性的新型琼脂糖化合物。通过荧光分光光度计及X衍射仪检测,发现新型琼脂糖化合物的荧光特性与罗丹明B没有差别,都难以形成晶体。随后通过水水乳化技术进一步制备荧光琼脂糖微球,制备的微球同样具有罗丹明B的荧光性能。通过荧光显微镜和动态光散射检测,可以明显观察到微球,直径约为44μm。通过酶标仪分析其荧光接枝稳定性,验证了微球荧光特性可以长期存在,证明了接枝罗丹明B的必要性。这种琼脂糖荧光微球可能在各种荧光检测应用中具有潜在的用途。 展开更多
关键词 荧光 微球 罗丹明B 琼脂糖 水水乳化
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Clathrate Hydrate Capture of CO2 from Simulated Flue Gas with Cyclopentane/Water Emulsion 被引量:11
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作者 李士凤 樊栓狮 +2 位作者 王金渠 郎雪梅 王燕鸿 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2010年第2期202-206,共5页
Capture of CO2 by hydrate is one of the attractive technologies for reducing greenhouse effect.The primary challenges are the large energy consumption,low hydrate formation rate and separation efficiency.This work pre... Capture of CO2 by hydrate is one of the attractive technologies for reducing greenhouse effect.The primary challenges are the large energy consumption,low hydrate formation rate and separation efficiency.This work presents a new method for capture of CO2 from simulated flue gasCO2(16.60%,by mole) /N2 binary mixture by formation of cyclopentane(CP) hydrates at initial temperature of 8.1°C with the feed pressures from 2.49 to 3.95 MPa.The effect of cyclopentane and cyclopentane/water emulsion on the hydrate formation rate and CO2 separation efficiency was studied in a 1000 ml stirred reactor.The results showed the hydrate formation rate could be increased remarkably with cyclopentane/water emulsion.CO2 could be enriched to 43.97%(by mole) and 35.29%(by mole) from simulated flue gas with cyclopentane and cyclopentane/water(O/W) emulsion,respectively,by one stage hydrate separation under low feed pressure.CO2 separation factor with cyclopentane was 6.18,higher than that with cyclopentane/water emulsion(4.01) ,in the range of the feed pressure.The results demonstrated that cyclopentane/water emulsion is a good additive for efficient hydrate capture of CO2. 展开更多
关键词 CYCLOPENTANE HYDRATE CO2 capture EMULSION flue gas
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Kinetic and Phase Behaviors of Catalytic Cracking Dry Gas Hydrate in Water-in-Oil Emulsion 被引量:1
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作者 马庆兰 黄强 +3 位作者 陈光进 王秀林 孙长宇 杨兰英 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第3期295-300,共6页
The systematic experimental studies were performed on the hydrate formation kinetics and gas-hydrate equilibrium for a simulated catalytic cracking gas in the water-in-oil emulsion. The effect of temperature, pressure... The systematic experimental studies were performed on the hydrate formation kinetics and gas-hydrate equilibrium for a simulated catalytic cracking gas in the water-in-oil emulsion. The effect of temperature, pressure and initial gas-liquid ratio on the hydrate formation was studied, respectively. The data were obtained at pressures ranging from 3.5 to 5 MPa and temperatur.es from 274.15 to 277.15 K. The results showed that hydrogen and methane can be separated Irom the (~2+ ti'action by tOrming hydrate at around 273.15 K which is much higher temperature than that of the cryogenic separation method, and the hydrate formation rate can be enhanced in the wa- ter-in-oil emulsion compared to pure water. The experiments provided the basic data for designing the industrial process, and setting the suitable operational conditions. The measured data ot gas-hydrate equilibria were compared with the predictions by using the Chen-Guo hydrate thermodynamic model. 展开更多
关键词 HYDRATE catalytic cracking dry gas SEPARATION EMULSION
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