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Iron Sulphide Inhibition and Interaction with Zinc and Lead Sulphide

机译:硫化铁抑制和与锌和硫化铅的相互作用

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Iron sulphide(FeS),zinc sulphide(ZnS)and lead sulphide(PbS)are considered to be among the most challenging scales in terms of inhibition and removal.They can form by direct reaction of aqueous sulphide species with dissolved Fe,Zn and/or Pb and by the exchange between aqueous sulphide species with preformed iron compounds,such as iron oxide hydroxide.These existing iron compounds may have formed during production and/or intervention,such as an acid treatment.Similarly,PbS and ZnS can form by extracting sulphide from a more soluble sulphide scale i.e.Zn exchanging with Fe in FeS.The objective of this work was to investigate FeS formation and inhibition under a range of conditions including pH, temperature,salinity and proposed mode of formation.In addition,the interaction between iron,zinc and lead within solutions containing sulphide species was investigated The majority of this study was conducted under anaerobic conditions,with the scale formation and/ or inhibition experiments being monitored by inductively coupled plasma(ICP)analysis,pH and particle size measurements.Among the tested scale inhibitors,two showed high efficiency against iron sulphide, however high pH and salinity had a detrimental impact on the performance of one of these products. Interestingly,these scale inhibitors prevented iron sulphide deposition even under aerobic conditions i.e. iron hydroxide partially preformed.Moreover,at sufficiently high concentrations of scale inhibitor,the deposition of zinc sulphide and lead sulphide was prevented even when these scales were formed via cation displacement i.e.zinc and lead displaced sulphide ions from pre-formed iron sulphide.The route of formation for FeS,ZnS and PbS was seen to have a significant impact on the inhibition process. The particle sizes of inhibited(suspended)FeS were significantly lower than the blank FeS samples,with this effect increasing with increased scale inhibitor concentration.This difference in particle size may have an important influence on in-line filter blocking tests and produced water quality issues.
机译:硫化铁(FES),硫化锌(硫化锌)和硫化铅(PBS)被认为是在抑制和removal.They方面最有挑战性刻度中可通过用溶解的铁,锌和含水硫化物物种的直接反应形成/或Pb,并通过与预先形成的铁化合物,如氧化铁hydroxide.These现有的铁化合物的含水硫化物物种之间的交换可以产生和/或干预过程中形成,如酸treatment.Similarly,硫化铅和ZnS可以通过提取形成从更可溶的硫化物规模ieZn在FeS.The客观这项工作的为Fe交换硫化物是调查下一个范围的条件下形成的FeS和抑制包括pH,温度,盐度和formation.In另外的建议模式之间的相互作用含硫化物物种溶液内铁,锌和铅进行了研究的大多数本研究的在厌氧条件下进行,随着规模的形成和/或抑制实验是监测通过电感耦合等离子体(ICP)分析,pH和粒径measurements.Among测试的阻垢剂中,两个显示对硫化铁高效率,高然而pH和盐度对这些产品中的一个的性能产生不利影响。有趣的是,甚至在有氧条件下防止硫化铁沉积这些水垢抑制剂,即氢氧化铁部分preformed.Moreover,在足够高的浓度阻垢剂,防止了硫化锌和硫化铅的沉积甚至当形成这些尺度经由阳离子位移iezinc和从地层中的FeS,ZnS和PBS中预形成的铁sulphide.The路线导致位移硫化物离子被视为具有对抑制处理的显著影响。抑制(悬浮)的FeS的粒径比空白的FeS样品显著降低,与此效应随着颗粒尺寸增大水垢抑制剂concentration.This差增加可能对在线过滤器阻塞测试的一个重要的影响和所产生的水的质量问题。

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