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Sea Water Desulphation – Optimisation of Scale Treatment and Reduction of OPEX CAPEX

机译:海水脱硫 - 规模治疗优化和OPEX&CAPEX的减少

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One barrel of seawater has to be injected into the reservoir in order to be able to produce the same amount of oil.In order to avoid problems of souring and/or incompatibility with reservoir water,desulphated seawater is injected. In this paper,we have completely reconsidered the desulphation process with the objective of producing more water while optimising the quantity and type of scale inhibitors,with a priority given to green chemicals.The desulphation process established since 1992 has not been modified since.Our new philosophy adapts to the constraints of the field life.Theoretical and simulations studies have been carried out on risks of scale deposition on the membrane(polarisation layer)taking into account parameters and physical laws based on fluid mechanics,electroneutrality and material transfer.The behavior of membrane and risk of deposition depends on temperature,pressure,flux,tangential flow,potential accumulation of scale on the membrane and spacer; site and laboratory pilots have been used.Tube blocking tests have been carried out in order to select the scale inhibitors.Results showed that it is possible to operate beyond 80% of recovery with the help of a scale inhibitor.83% recovery appears to be a maximum limit.Without the use of a scale inhibitor it is possible to obtain 75% of recovery under certain circumstances. These results have enabled us to issue operational recommendations on TOTAL operating fields,on projects under development and on our future projects.The increase of the recovery and / or decrease in the concentration of scale inhibitor will conduct to less chemical discharged to the sea(via the concentrate). In addition,the selection of scale inhibitors has allowed selection of several biodegradable products,with better efficiency than currently used products.Of the 11 products tested,four have been selected.Reduction of OPEX: The consumption of scale inhibitor could be reduced by 2 or 3 and even suppressed for certain operating conditions.Selection tests have allowed us to choose most appropriate chemical from a technical, economic and environmental friendly point of view.Reduction of CAPEX: The increase of recovery has allowed us to reduce the dimensioning of the whole pretreatment of the nanofiltration as the flowrate is the parameter that influences the most the cost of a water treatment plant.
机译:一桶海水必须注射到水库中,以便能够产生相同数量的油。为了避免与水库水的侵蚀和/或不相容的问题,注射了脱硫海水。在本文中,我们已经完全重新考虑了脱硫过程,其目的是在优化水化学物质的优先考虑的同时产生更多水的目的,同时优化规模抑制剂的数量和类型。自1992年以来建立的脱硫过程尚未被修改。哲学适应田间寿命的限制。关于基于流体力学,电力和物质转移的参数和物理定律,已经对膜(偏振层)上的鳞片沉积风险进行了理论和模拟研究。膜和沉积的风险取决于温度,压力,助焊剂,切向流,膜和垫片上的尺度的潜在积累;已经使用了现场和实验室飞行员。已经进行了封堵测试,以便选择尺度抑制剂。结果表明,在规模抑制剂的帮助下,可以在80%的恢复之后运行.83%恢复似乎是最大限制。在某些情况下,使用比例抑制剂的使用可以获得75%的恢复。这些结果使我们能够在开发项目和未来项目下的项目上发布关于总经营领域的业务建议。规模抑制剂浓度的复苏和/或减少的增加将导致较少的化学物质(通过浓缩物)。此外,尺度抑制剂的选择已经允许选择几种可生物降解产品,比目前使用的产品更好的效率。根据测试的11种产品,选择了四种产品。欧克克斯的排雷:测量抑制剂的消耗可以减少2或3甚至抑制了某些操作条件。选择测试使我们能够从技术,经济和环境友好的角度选择最合适的化学品。资本支出的推出:恢复的增加使我们能够减少整个预处理的尺寸作为流量的纳米滤波是影响水处理厂的最多成本的参数。

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