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Utilization of hydrogen as clean energy resource in chlor-alkali process

机译:在氯碱法中利用氢作为清洁能源

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Hydrogen produced from chlor-alkali plants in Jordan is typically wasted and vented to the atmosphere. If it is recovered and utilized then it can viably play a significant role for process heat on site. This study demonstrates how cleaner production can be applied to the chlor-alkali industry, with focus on utilization of hydrogen as energy resource. A chlor-alkali based on membrane cell process, in northern part of Jordan, was examined as a case of reusing excess hydrogen produced. In the baseline scenario, 47% of produced hydrogen was used in HCl production, 10% in controlling pressure difference, and the remainder was not used (i.e. 43% of hydrogen was vented into the atmosphere). The proposed cleaner production option was to install a hydrogen boiler next to the existing fuel boiler and utilize the hydrogen to generate steam for on-site process heating purposes. The effectiveness of this cleaner production option was discussed in relation to its technical and environmental feasibility. On-site utilization of hydrogen was found to provide 34% of the total steam needed at the full capacity. This in return yields a saving percentage of around 33.37% and a payback period of 0.947 year. From environmental perspective, theoretically, carbon dioxide emission reductions can be up to 1810 tons based on the chlor-alkali productions pattern for 24 consecutive months.
机译:从约旦氯碱工厂生产的氢气通常被浪费掉并排入大气。如果将其回收利用,那么它将对现场过程热起到重要作用。这项研究证明了清洁生产如何应用于氯碱工业,重点是利用氢作为能源。作为再利用产生的过量氢气的案例,对约旦北部的一种基于膜细胞法的氯碱进行了研究。在基准情景中,产生的氢气中有47%用于生产HCl,10%的氢气用于控制压差,其余的则没有使用(即43%的氢气排入大气)。提议的清洁生产方案是在现有的燃油锅炉旁边安装一个氢气锅炉,并利用氢气产生蒸汽以进行现场过程加热。讨论了该清洁生产方案的有效性及其技术和环境可行性。发现在最大容量下,现场利用氢气可提供所需蒸汽总量的34%。作为回报,这将节省约33.37%的资金,投资回收期为0.947年。从环境角度来看,根据氯碱生产模式,连续24个月从理论上讲,二氧化碳排放量最多可减少1810吨。

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