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An assessment of the effectiveness of drilling waste treatment process in X-gas field, Niger Delta, Nigeria

机译:尼日利亚尼日尔三角洲X气田钻井废物处理过程有效性评估

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摘要

ABSTRACT These processes often attenuate the hazardous effects of these wastes, which may otherwise obviously manifest on the vegetation, soil, and water resources of an area. This research aims to determine the degree of environmental friendliness of drilling wastes generated from X-Gas Field, using results of physiochemical analysis in comparison with regulatory limits set by the Department of Petroleum Resources (DPR)/Federal Ministry of Environment (FMEnv). A total of 38 water samples were collected from the drilling, cuttings, mud, and waste pit. The results reveal the concentrations of total dissolved solids (TDS), salinity, total suspended solids (TSS), Biochemical Oxygen Demand (BOD), Chemical Oxygen Demand (COD), Pb, and Fe~(3+) above standard desirable limits stipulated by DPR and/or FMEnv. The high values of TDS, salinity, TSS, BOD, COD, Fe~(3+), and Pb indicate pollution from drilling wastes such as waste lubricant, spent bulk chemicals, contaminated water, and oil-based mud. Results of physicochemical analysis carried out on samples from drilling point, waste pit, and ash after thermal desorption process show that these elements are made less harmful and hence fit for disposal, reuse, or recycle. The statistical correlation and distribution of the ions show that EC, TSS and Cr~(3+), turbidity, total hydrocarbon content, BOD, COD, Zn~(2+), Cu~(2+), and Hg~(2+) have positive correlation indicating that the ions are derived from the same source.
机译:摘要这些过程通常会减轻这些废物的危害性,否则这些危害可能会明显地表现在该地区的植被,土壤和水资源上。这项研究旨在通过使用理化分析结果与石油资源部(DPR)/联邦环境部(FMEnv)设定的法规限值进行比较,确定X气田产生的钻井废料对环境的友好程度。从钻孔,岩屑,泥浆和废料坑中总共收集了38个水样。结果显示总溶解固体(TDS),盐度,总悬浮固体(TSS),生化需氧量(BOD),化学需氧量(COD),Pb和Fe〜(3+)的浓度均超过规定的标准期望限值由DPR和/或FMEnv。 TDS,盐度,TSS,BOD,COD,Fe〜(3+)和Pb的值较高,表明钻井废料产生了污染,例如废润滑油,废大宗化学药品,污染的水和油基泥浆。对热解吸过程后的钻探点,废料坑和灰分进行的样品的理化分析结果表明,这些元素的危害性较小,因此适合处理,再利用或回收。离子的统计相关性和分布显示EC,TSS和Cr〜(3+),浊度,总烃含量,BOD,COD,Zn〜(2 +),Cu〜(2+)和Hg〜(2 +)具有正相关,表明这些离子源自同一来源。

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