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Determination of elemental sulfur deposition rates for different natural gas compositions

机译:确定不同天然气成分的元素硫沉积速率

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摘要

Natural gas is increasing its share in the worldwide energy market. However, it poses several problems during transportation. The formation and deposition of elemental sulfur (S-8) in pipelines is the issue that has the greatest impact on both operational safety and maintenance costs. The formation of S8 as a yellow powder may be influenced by changes in operational conditions, such as pressure and temperature drops, and by the composition of the natural gas stream. This study aims to examine the contribution of the nucleation phenomenon to the process of S-8 formation and deposition. Simulations were performed using the HYSYS (R) V7 process simulator, with the Peng-Robinson equation of state, and a MATLAB routine was devised to calculate the variables affecting the nucleation rate. The influence of natural gas composition on the nucleation rate was evaluated using thermophysical data of average gas streams from fields of the Brazilian states of Ceara/Rio Grande do Norte (CE/RN), Espirito Santo (ES), Rio de Janeiro (RJ) and Bahia (Fazenda Mamoeiro Field, FSP). The results show that gas composition and operational conditions may influence the amount of sulfur deposited in the pipelines, and the nucleation rate increases by reducing the temperature. (C) 2015 Elsevier B.V. All rights reserved.
机译:天然气在全球能源市场中的份额正在增加。但是,在运输过程中会带来一些问题。管道中元素硫(S-8)的形成和沉积是对操作安全和维护成本影响最大的问题。 S8为黄色粉末的形成可能会受到操作条件(例如压力和温度下降)的变化以及天然气流组成的影响。这项研究旨在检查成核现象对S-8形成和沉积过程的贡献。使用HYSYS(R)V7过程模拟器进行仿真,并带有Peng-Robinson状态方程,并设计了一个MATLAB例程来计算影响成核速率的变量。使用巴西塞阿拉州/北里奥格兰德州(CE / RN),圣埃斯皮里图州(ES),里约热内卢(RJ)州平均气体流的热物理数据,评估了天然气成分对成核速率的影响。和巴伊亚(Fazenda Mamoeiro Field,FSP)。结果表明,气体成分和操作条件可能会影响管道中沉积的硫量,并且通过降低温度可以提高成核速率。 (C)2015 Elsevier B.V.保留所有权利。

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