首页> 外文OA文献 >ADVANCES IN THE HYDROCARBON GAS-LIQUID EQUILIBRIUM UNDERSTANDING IN WATER AND OIL-BASED DRILLING FLUIDS
【2h】

ADVANCES IN THE HYDROCARBON GAS-LIQUID EQUILIBRIUM UNDERSTANDING IN WATER AND OIL-BASED DRILLING FLUIDS

机译:水和油基钻井液中烃气-液平衡的研究进展

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

DETERMINATION OF C1-C5 HYDROCARBONS IN DRILLING MUDSudDavide Doninelli, Jenny Rizzola, and Paolo GronchiudPolitecnico di Milano - Chemistry, Material and Chemical Engineering Dept. “G. Natta”; P.za Leonardo da Vinci, 32 20133 Milano, Italy. E-mail: paolo.gronchi@polimi.it.udThe aim of this work was to evaluate the amount of C1-C5 gases dissolved in the drilling muds through the definition of a analytical model of the partition coefficient between the hydrocarbon concentration in the gas phase and in the muddy.udThe conveniences of the work may be:ud• to verify the convenience of a possible gas recover;ud• to evaluate the environmental impact of the degassing treatment unit associated to the gas discharge in atmosphere;ud• to evaluate the desorption times in order to optimize the mud treatment process.udThe method is centered on the calculation of the partition coefficient starting from the analysis of gas phase at the equilibrium with a known amount of dissolved hydrocarbon. A laboratory apparatus was built, constituted by a heated jacketed reactor, with temperature control, to simulate the absorption of the hydrocarbon gas during the drilling and a second vessel for the gas desorption until equilibrium.udThe study is divided in two parts as the operations were performed at 303 K and at 323 K temperatures.udThe first part (at 303K) included the study of the absorption and desorption of C1-C4 gases in different muds: aqueous-based muds (PHPA and HPWBM) and oil-based (LTOBM). The choice of the sludge was made in reason to emulate in a laboratory, the properties of most drilling fluids.udIn the second part we examined pentane too. Pentane is a liquid hydrocarbon at ambient condition (boiling point 310 K) but could be used as gas at 323K . The right technology for the use pentane in gas phase must takes into account the vapor-liquid equilibrium when injected as liquid for the absorption into the muds.udWe observed that the partition coefficient decreases increasing molecular weight up to butane with all the mud, with pentane instead we have two different behaviors for water and the oil based muds: with the PHPA and HPWBM (water-based) the constant decreases instead in the LTOBM (oil-based) it remains constant. As regards the trend with the temperature we observed two different behaviors: with the aqueous mud the constant increases with temperature, and for the oil mud remains constant. Discussion about relation between mud composition and the gas concentrations are tentatively reported.udAcknowledgementsudThe authors would like to acknowledge financial support from GEOLOG S.p.A. (Italy
机译:钻井泥浆中C1-C5烃的测定 udDavide Doninelli,Jenny Rizzola和Paolo Gronchi udPolitecnico di Milano-化学,材料和化学工程系。纳塔”; P.za Leonardo da Vinci,32 20133米兰,意大利。电子邮件:paolo.gronchi@polimi.it。 ud这项工作的目的是通过定义分析模型中碳氢化合物浓度之间分配系数的分析模型来评估溶解在钻探泥浆中的C1-C5气体的量。作业的便利性可能是:检验可能的气体回收的便利性;评估脱气处理单元与大气中气体排放相关的环境影响; ud•评估脱附时间,以优化泥浆处理过程。 ud该方法的重点是分配系数的计算,该分配系数的分析是在已知量的溶解碳氢化合物处于平衡状态下,通过分析气相开始的。建立了一个实验室设备,该设备由带有加热控制的夹套反应器组成,并进行温度控制,以模拟钻井过程中碳氢化合物气体的吸收,并使用第二个容器进行气体脱附直至平衡。 ud这项研究分为两个部分作为操作在303 K和323 K的温度下进行了测试。 ud第一部分(在303K进行了研究)研究了C1-C4气体在不同泥浆中的吸收和解吸:水基泥浆(PHPA和HPWBM)和油基泥浆(PHPA和HPWBM)。 LTOBM)。选择污泥的原因是为了在实验室中模拟大多数钻井液的性质。 ud在第二部分中,我们也检查了戊烷。戊烷在环境条件下(沸点310 K)是液态烃,但在323 K时可用作气体。在气相中使用戊烷的正确技术必须考虑到以液体形式注入泥浆中以吸收其吸收时的气液平衡。 ud我们观察到分配系数随着所有泥浆的增加而降低分子量,直至达到丁烷。戊烷相反,对于水和油基泥浆,我们有两种不同的行为:对于PHPA和HPWBM(水基),常数减小,而在LTOBM(油基)中,常数保持恒定。关于温度的趋势,我们观察到两种不同的行为:对于含水泥浆,常数随温度而增加,而对于油泥浆,则保持不变。暂时报道了有关泥浆成分与瓦斯浓度之间关系的讨论。 ud致谢 ud作者要感谢GEOLOG S.p.A.(意大利

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号