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The high phonon energy oxide of B2O3 is introduced into the Er3+/Ce3+co-doped tellurite-niobium glasses with composition of TeO2-Nb2O5-ZnO-Na2O.The absorption spectra,1.53 μm band fluorescence spectra,fluorescence lifetime and Raman spectra of Er3+in glass samples are measured together with the calculations of Judd-Ofelt spectroscopic parameter,stimulated emission and absorption cross-sections,which evaluate the effect of B2O3 on the 1.53 μm band spectroscopic properties of Er3+.It is shown that the introduction of an appropriate amount of B2O3 can further improve the 1.53 μm band fluorescence intensity through an enhanced phonon-assisted energy transfer(ET) between Er3+/Ce3+ions.The results indicate that the prepared Er3+/Ce3+co-doped tellurite-niobium glass with an appropriate amount of B2O3 is a potential gain medium for the 1.53 μm bandbroad erbium-doped fiber amplifier(EDFA). 相似文献
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针对低渗透稠油油藏渗流阻力大、注入能力差等问题,提出以化学生热剂和裂解催化剂组成复合降黏体系实现井下双效降黏的开发技术。室内通过高压反应釜实验优选了化学生热剂的反应条件和裂解催化剂的种类,并通过岩心驱替实验评价了化学剂不同注入方式下的驱油效果和注入能力。研究结果表明:以p H=2、200 m L等体积摩尔浓度均为4 mol/L的Na NO2溶液和NH4Cl溶液组成的化学生热体系具有最佳的反应条件,对于500毫升的高温高压反应釜在反应6 min后可达到温度峰值204℃和压力峰值13.4 MPa,相对于初始条件升温149℃;以油酸镍(主催化剂)、7%甲酸(供氢体)、7%尿素(助剂)及0.13%十二烷基苯磺酸钠(乳化剂)组成的催化体系具有最高的降黏率,对牛圈湖油田地面脱气原油的降黏率可达65.3%;五种不同的注入方式中,水驱、化学生热交替驱(先注Na NO2)、化学生热交替驱(先注酸性NH4Cl)、化学生热焖井间歇驱、化学生热催化裂解焖井间歇驱采收率分别为30.6%,38.8%,40.8%,43.7%,49.0%,化学生热催化热裂解焖井间歇驱采收率最高,注入能力最佳,驱油能量最足,比水驱提高采收率18.4%。 相似文献
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N2是驱油用CO2中常见的杂质气体,N2的存在会影响最小混相压力(MMP)和CO2驱的效果.采用延长油田原油和岩心进行了细管实验和岩心驱替实验,注入4种摩尔分数分别为0,5%,10%,15%的N2与CO2混合气体,根据细管实验确定MMP;采用高于纯CO2的MMP 20%的压力和等于MMP 50%的压力进行岩心驱替实验.细管实验结果表明,N2的存在会显著增大MMP,CO2中含摩尔分数5%的N2会使MMP增大29.34%,10%会使MMP增大64.07%;岩心驱替实验表明,N2的混入对CO2驱产生了不利影响.对于CO2混相驱,N2的摩尔分数越高,采收率的提高值越低,N2的摩尔分数对非混相CO2驱的影响较小. 相似文献
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The Er^3+/Ce^3+ co-doped tellurite-based glasses (TeO2-Bi2O3-TiO2) modified with various WO3 contents are prepared using conventional melt-quenching technique. The X-ray diffraction (XRD) patterns and Raman spectra of glass sam- ples are measured to investigate the structures. The absorption spectra, the up-conversion emission spectra, the 1.53 /am band fluorescence spectra and the lifetime of Er3+:4113/2 level are measured, and the amplification quality factors of Er3+ are calculated to evaluate the effect of WO3 contents on the 1.53 μm band spectroscopic properties. With the in- troduction of WO3, it is found that the prepared tellurite-based glasses maintain the amorphous structure, while the 1.53 μm band fluorescence intensity of Er3+ is improved evidently, and the fluorescence full width at half maximum (FWHM) is broadened accordingly. In addition, the prepared tellurite-based glass samples have larger bandwidth qual- ity factor than silicate and germanate glasses. The results indicate that the prepared Er3+/Ce3+ co-doped tellurite-based glass with a certain amount of WO3 is an excellent gain medium applied for the 1.53 μm band Er3+-doped fiber ampli- fier (EDFA). 相似文献
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在高温高压反应釜中,以甲酸为供氢体、以金属镍盐催化剂组成催化体系,研究了牛圈湖原油水热裂解反应的影响因素,考察了不同催化剂体系、原油性质及反应温度对水热裂解反应后原油降黏率和原油SARA组成的影响。结果表明,油酸镍、环烷酸镍、硫酸镍催化体系对地面脱气原油的降黏率分别为65.3%、52.6%和55.7%,优选油酸镍催化体系为水热裂解反应的催化剂。水热裂解催化反应后,胶质和沥青质减少,饱和烃和芳香烃增加。原油中的重质组分越多,水热裂解反应越剧烈,原油的降黏效果越明显。水热裂解催化反应后,渣油、地面脱气原油、模拟地层油在45℃下的降黏率分别为90.41%、64.78%和55.78%。原油中胶质和沥青质含量是影响水热裂解反应的主要因素,渣油、地面脱气原油、模拟地层油中胶质、沥青质转化为饱和烃和芳香烃的转化率分别为36.50%、26.51%和16.73%。280℃、220℃、180℃、100℃反应温度下模拟地层油的降黏率分别为56.43%、55.78%、48.23%和14.14%,最佳反应温度为220℃。水热裂解反应后原油中胶质、沥青质断裂成小分子的饱和烃是原油永久性降黏的主要原因。 相似文献
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为了进一步提高低渗透油藏采收率,进行了二氧化碳混相驱超前注气可行性实验研究。以吉林油田黑79区块为例,利用细管实验确定二氧化碳驱的最小混相压力,通过长岩心物理模拟实验研究低渗透油藏超前注气室内驱油效果,并与相同地层条件下水驱和同步注气的驱油效果进行了对比分析。结果表明,二氧化碳混相驱超前注气、同步注气和水驱的最终采收率分别为77.03%,73.09%和56.47%。二氧化碳混相驱超前注气最终采收率最高,原因是超前注气能够在开采前就使地层压力升高、地层能量增加,并且提前注入的气体与原油接触混相,可降低原油粘度、增加原油流度。 相似文献
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