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Application of Comprehensive Harmless Waste Treatment Technology to Treat Drilling Cuttings in the Tian Mountain Front Block in Tarim Basin

机译:综合无害废物处理技术在塔里木盆地田山前块治疗钻孔切割

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Due to high temperature, high pressure, and gypsum-salt formation, the stability and rheology of conventional polymer drilling fluids are difficult to maintain, so sulfonated drilling fluids (SDF) or oil- based mud (OBM) are recommended to drill deep formations or ultra-deep formations. However, a large number of sulfonated drilling cuttings or oily cuttings are generated in the process of drilling operation. These drilling cuttings contain a large number of harmful substances, including petroleum hydrocarbon, sulfonated additives, heavy metals, and so on, which are toxic and difficult to be biodegradable, so the discharge of drilling cuttings into environment will lead to serious contamination of soil and groundwater. Therefore, the environmental impact of the use of SDF or OBM is one of the main challenges facing petroleum industry. One of the most difficult environmental problems to resolve at the well site is the disposal of drilling cuttings, which is often physically unstable and unsuitable for landfill. High temperature deep pyrolysis technology (HDPT) is developed to treat sulfonated drilling cuttings from deep formations. The field results indicate that the content of petroleum hydrocarbon of treated drilling cuttings is less than 16 ppm, and various indexes of treated cuttings could meet the requirement of environmental protection. HDPT technology is characterized by high treatment efficiency and no secondary pollution, and it is very suitable for harmless treatment of sulfonated drilling cuttings. Leaching and resource utilization technology (LRET) is currently applied to treat oily drilling cuttings from ultradeep complex formations. The results indicate that the oil content of treated drilling cuttings is less than 0.6%, and the recovery rate of OBM is over 20%. LRET technology can not only recycle and reuse OBM resources, but also guard against environmental pollution from drilling operation, and thus produce great economic and environmental benefits. Comprehensive harmless waste treatment station for drilling cuttings is built in this Block. HDPT and LRET technology can provide a powerful technical support for achieving safety drilling in this Block, and they have been successfully applied to treat drilling cuttings from dozens of wells in this Block. This paper presents field data to illustrate the application of this comprehensive harmless waste technology and evaluate the potential technical and economic benefits that it might provide to petroleum development and production in Tarim Basin.
机译:由于高温,高压,和石膏盐的形成,常规的聚合物钻井液的稳定性和流变性是难以保持,所以磺化钻井液(SDF)或油基泥浆(OBM)建议钻深地层或超深地层。然而,在钻探操作的过程中产生了大量的磺化钻屑或油性屑。这些钻屑中含有大量的有害物质,包括石油烃,磺化的添加剂,重金属,等等,它们是有毒的,不易被生物降解的,所以钻屑的排放到环境中会导致土壤的严重污染和地下水。因此,使用SDF或OBM的对环境的影响是面对石油工业的主要挑战之一。其中最困难的环境问题,在井场的决心是钻屑,这往往是物理不稳定,不适合用于垃圾填埋场处置。高温深井热解液化技术(HDPT)发展到深地层治疗磺化钻屑。域结果表明,处理过的钻屑的石油烃的含量低于16 ppm,且处理过的钻屑的各种指标能满足环保要求。 HDPT技术的特点是处理效率高,无二次污染,并且它是非常适合于磺化的钻屑的无害化处理。浸出与资源化技术(LRET)目前适用于治疗因超深复杂地层含油钻屑。结果表明,处理过的钻屑中的油含量小于0.6%,和OBM的回收率是20%以上。 LRET技术不仅可以回收利用OBM资源,同时也防止对环境的污染,从钻井作业,从而产生巨大的经济效益和环境效益。对于钻屑综合无害化处理站建在此块。 HDPT和LRET技术能提供该块实现安全钻进了强大的技术支持,他们已经成功地应用于治疗钻屑从几十个在此块井。本文呈现的现场数据来说明这个综合无害化技术的应用和评估潜在的技术和经济效益,它可能提供石油开发和生产塔里木盆地。

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