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Environmental Fate for Subsea Discharge of Hydrogen Sulphide Laden Seawater

机译:硫化氢载氢海水区的环境命运

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There are numerous undeveloped sour gas fields worldwide where the content of hydrogen sulphide is so high that it is not economically viable to dispose the gas using conventional techniques. A new technique capable of removing high concentrations of hydrogen sulphide is being proposed, which requires the discharge of hydrogen sulphide laden seawater through a subsea outlet. Hydrogen sulphide can be harmful to the environment and to assess the risk of impacts, the dispersion, advection and breakdown of hydrogen sulphide is described using high resolution hydrodynamic and water quality models. The description of the hydrodynamic processes is based on the CORMIX near-field flow model coupled with a MIKE 3 farfield flow model while the chemical breakdown of hydrogen sulphide is described using a customised ECO Lab water quality model with the half-life being a function of available dissolved oxygen. The coupled models are used to derive the temporal and spatial variation of hydrogen sulphide and dissolved oxygen concentration within the model domain. The application of the modelling approach is demonstrated for a sour gas field development offshore Sarawak, Malaysia where it is proposed to discharge seawater with a hydrogen sulphide concentration in the excess of 800 mg/l. Initial modelling shows a risk of environmental impacts over a sizeable area and that it is important to not only consider hydrogen sulphide, but also the possible oxygen depletion in that area. With the coupled models it was possible to define and document a practicable option that with increased seawater dilution and discharge through a multi-port outlet results in a noticeable reduction in the risk of environmental impacts.
机译:全世界有许多未开发的酸气田,其中硫化氢的含量如此之高,使其在经济上不可能使用常规技术处理气体。提出了一种能够去除高浓度硫化氢的新技术,这需要通过海底出口排出硫化氢载带海水。硫化氢可以对环境有害,并评估硫化氢的影响,分散,平坦和脱落的风险,使用高分辨率的流体动力学和水质模型描述。流体动力学过程的描述基于Cormix近场流量模型,其与MIKE 3 Farfield流程模型相结合,而使用定制的ECO实验室水质模型描述了硫化氢的化学分解,其中半衰期是一种功能可用溶解氧。耦合模型用于导出模型结构域内的硫化氢和溶解氧浓度的时间和空间变化。对模型方法的应用得到了马来西亚海滨沙捞越的酸天然气场开发,其中提出将海水排出过量硫化氢浓度超过800mg /升。初始建模显示了对相当大的区域产生环境影响的风险,并且不仅考虑硫化氢,而且重要的是该区域的可能氧气耗尽是重要的。通过耦合模型,可以定义和记录可行的选择,即通过多端口出口增加海水稀释和放电,导致环境影响的风险显着降低。

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