天然气衍生品分离厂中硫化氢比例对工作环境影响的研究

Yasser Ghonaim, Eman Hashem, Amal Abdel Rahman Hasan
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引用次数: 0

摘要

该研究旨在确定硫化氢 (H 2 S) 含量对天然气衍生物分离厂工作环境的影响。石油、天然气和石化行业的工人暴露在硫化氢气体风险中的时间长短与其工作性质成正比,在某些地方达到危险水平,无论工人或雇主是否意识到这一点。与硫化氢接触相关的风险与个人和集体灾难性事故有关。这项研究旨在寻找解决方案,以减少采出气体中硫化氢气体(H 2 S)的影响。硫化氢的实际含量已超过允许限值,导致天然气加工厂的工人患上多种疾病,而且在排放或燃烧过程中,空气中的硫化氢浓度增加,对周围环境和农田中的植物造成危害。需要回答的主要研究问题是:硫化氢含量对气体衍生分离厂工人的健康有何影响?本研究采用了描述-分析研究方法,并在数据统计分析中使用了多种统计方法(平均值、百分比、频率和标准偏差)。根据研究结果,本研究提出了若干建议:确定并监控工厂中的硫化氢 (H 2 S) 源,减少其产生。这可以通过以下方式实现评估生产流程,检查潜在来源,如产生 H2S 的化学反应:安装监控系统,跟踪可能导致 H 2 S 释放的流程。流程改进:根据监控和评估结果,更新和改进导致 H2S 生产的流程。采用调整工艺温度和压力等技术。定期检查和清洁装置和设备,以确保顺利运行和设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Study of the Effect of Hydrogen Sulfide Percentage on the Work Environment in Natural Gas Derivatives Separation Plants
The research aims to determine the impact of hydrogen sulfide (H 2 S) levels on the working environment in natural gas derivatives separation plants. Workers in the oil, gas, and petrochemical industries are exposed to the risks of hydrogen sulfide gas for durations proportional to the nature of their work, reaching hazardous levels in some locations, whether the worker or the employer is aware or unaware of it. The risks associated with hydrogen sulfide exposure are linked to individual and collective catastrophic incidents. The research aims to find solutions to reduce the impact of hydrogen sulfide gas (H 2 S) in the extracted gas. Its actual levels have exceeded the permissible limit to a degree that has caused numerous diseases among workers at a gas processing plant, as well as an increase in its concentration in the air during its venting or combustion, which has harmed the surrounding environment and plants in agricultural lands. The main research question to be answered is: What is the impact of hydrogen sulfide levels on the health of workers in gas derivatives separation plants? This study adopted a descriptive-analytical research methodology, in addition to using several statistical methods in the statistical analysis of data (means, percentages, frequencies, and standard deviations). The study recommended several recommendations based on the results it has shown: Identifying and monitoring hydrogen sulfide (H 2 S) sources in the plant and reducing its production. This can be achieved by: Evaluating production processes, Potential sources should be examined, such as chemical reactions that produce H2S.Process monitoring: Install monitoring systems to track processes that may lead to H 2 S release. Process improvement: Based on monitoring and evaluation results, update and improve processes that contribute to H 2 S production. Techniques such as adjusting temperature and pressure of the processes. Regularly inspect and clean devices and equipment to ensure smooth operations and facilities.
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