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Determination of energy usage and potential environment impact (pei) of a vapor compression distillation system for production of water for injection (wfi) in pharmaceutical industries

机译:制药行业中用于生产注射用水(wfi)的蒸气压缩蒸馏系统的能耗和对环境的潜在影响(pei)的确定

摘要

This paper presents the potential environment impact (PET) and energy usage studies of Water For Injection (WFI) manufacturing using vapor compression distillation (VCD) system. The amount of PET were analysed in waste reduction (WAR) algorithm using the amount of energy usage adapted from simulation. The equations used wereuddeveloped in Excel spreadsheet. There are eight impact categories were calculated to determine the effect from chemical process to the environment. Result from Exceludcalculation shows that Human Toxicity Potential by inhalation/dermal exposure (HTPE) has the highest value among others impact. The energy usages of VCD system wereudcalculated by simulating the VCD process flow diagram using SuperPro Designer (SPD). The modelling result evaluate that the total energy consumption of WFI fromudVCD system is 53.07kWh. Since VCD system use electricity as their power supply, therefore some hazardous gases are emitted to atmosphere such as CO2, SO2 and NOx. CO2 has highest amount of emitted from the process with value 112.19. Result from this research may be useful to prevent the excess of CO 2 to our environment.
机译:本文介绍了使用蒸气压缩蒸馏(VCD)系统制造注射用水(WFI)的潜在环境影响(PET)和能耗研究。使用废物减少量(WAR)算法分析了PET的量,使用的是从模拟改编的能源使用量。在Excel电子表格中 ud开发了使用的方程式。计算了八种影响类别,以确定从化学过程到环境的影响。 Excel 计算得出的结果表明,吸入/皮肤接触(HTPE)产生的人的潜在毒性具有最大的价值。通过使用SuperPro Designer(SPD)模拟VCD的流程图来计算VCD系统的能耗。建模结果表明, udVCD系统的WFI总能耗为53.07kWh。由于VCD系统使用电力作为电源,因此一些有害气体会排放到大气中,例如CO2,SO2和NOx。 CO2排放量最高,值为112.19。这项研究的结果可能有助于防止过量的CO 2进入环境。

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  • 作者

    Siti Nabihah Abdul Latif;

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  • 年度 2014
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