13 شهریور 1405
محسن نوروزي

محسن نوروزی

مرتبه علمی: دانشیار
نشانی: دانشکده علوم و فناوری نانو و زیستی - گروه علوم زیستی
تحصیلات: دکترای تخصصی / محیط زیست -آلودگی محیط زیست
تلفن: 09177827960
دانشکده: دانشکده علوم و فناوری نانو و زیستی

مشخصات پژوهش

عنوان Sustainable desalination in the Persian Gulf: A comprehensive environmental and economic assessment of a high-efficiency reverse osmosis system
نوع پژوهش مقالات در نشریات
کلیدواژه‌ها
drinking water, reverse osmosis, life cycle assessment, life cycle cost, Persian Gulf
مجله Integrated Environmental Assessment and Management
شناسه DOI doi.org/10.1093/inteam/vjag025
پژوهشگران عبدالنصیر جهش (نفر اول) ، محسن نوروزی (نفر دوم) ، هاجر آبیار (نفر سوم)

چکیده

Water supply through economically and environmentally friendly approaches, especially in areas facing a water crisis, is one of the most pressing global challenges. The present study proposes a highly efficient reverse osmosis (RO) system for desalinating Persian Gulf water and explores its environmental impacts, energy efficiency, cost-effectiveness, and operational consistency. The designed RO system significantly decreased ionic concentration (90%), total dissolved solids (99.6%), electrical conductivity (99.4%), and NaCl (>95%). The life cycle assessment was conducted by using the production of 1 m3 of potable water via RO desalination of Persian Gulf seawater as the functional unit. The highest environmental burdens appeared to be human carcinogenic toxicity (48%) and freshwater ecotoxicity (19%), mainly from Mg2þ, NO3 , and Cl releases. The RO system adversely affected human health (96.33%) and ecosystems (2.35%) because of effluent and energy consumption, whereas fossil fuels dominated the resource category. Fossil fuels supplied 93.7% of the system’s energy requirements, leading to 99.8% of the overall greenhouse gas emissions, specifically CO2 (70.65%) and CH4 (10.8%). Sensitivity analysis revealed that a 20% reduction in Mg2þ and NO3 inputs alleviated impacts by 43.81% to 95.21% across all categories. Furthermore, the Monte Carlo simulation revealed a coefficient of variation <10% for all environmental categories, confirming the credibility and reliability of the results. The water production, capital, and operating expenses were calculated as $0.10/m3, $74,908.2/m3, and $409,687,014.2, respectively. Over a 20-year period, the net present value obtained was $1,984,510,642 with an 11-year payback period. Collectively, implementing an appropriate pretreatment and using renewable energy sources notably reduces the carbon footprint of an RO system (>60%). The current investigation highlights the role of management strategies in mitigating the environmental imp