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    Optimization of energy consumption in the process of dehumidification of natural gas

    , Article Biointerface Research in Applied Chemistry ; Volume 11, Issue 6 , 2021 , Pages 14634-14639 ; 20695837 (ISSN) Norouzi, N ; Shiva, N ; Khajehpour, H ; Sharif University of Technology
    AMG Transcend Association  2021
    Abstract
    In recent years, there has been a great tendency to optimize energy consumption in the oil and gas industry’s upstream and downstream equipment. One of the most energy-intensive processes in natural gas refineries is the condensate stabilization unit (gas condensate). The main bottlenecks of energy consumption in the old units are condensated stabilization (dehumidification with ethylene glycol), heater reboiler, and air coolers (air coolers). Therefore, much attention should be paid to these applications and electricity and steam consumption in this unit. In this study, a simulated model based on the Gachsaran gas refinery’s new layout has been developed. Optimization of this part of the... 

    Innovation or acquisition? emissions mitigation strategies and the role of renewable technologies

    , Article PLoS ONE ; Volume 19, Issue 12 , 2024 ; 19326203 (ISSN) Moqadassi, Z ; Miremadi, I ; Khajehpour, H ; Sharif University of Technology
    2024
    Abstract
    One of the actions taken to mitigate the climate change is research, development and demonstration (RD&D) investments in renewable energy (RE) technology. In addition to domestic RD&D spending, the import of foreign technologies, as a main channel of technology transfer, is another option to obtain higher share of renewable energies in order to achieve climate objectives. In this study, a panel dataset of 28 OECD member countries from 2011 to 2020 is analyzed, using the OLS, fixed-effects, and two-step system GMM methods, to assess the impacts of public spending on renewable energy RD&D (RERD) and the import of renewable energy technologies on the energy-related CO2 emissions. To fully... 

    Multi-objective stochastic optimization of a greenhouse energy system using an integrated demand-supply model

    , Article 2024 9th International Conference on Technology and Energy Management, ICTEM 2024 ; 2024 ; 979-835032979-7 (ISBN) Ghadertootoonchi, A ; Solaimanian, A ; Khajehpour, H ; Sharif University of Technology
    2024
    Abstract
    With the growth in the population, the demand for food and agricultural products is increasing. Greenhouses are a promising option to meet such a growing demand as they can provide a controlled environment for the plant to grow. As a result, their performance highly depends on energy consumption. One of the main factors that affect the energy demand of a greenhouse is the weather. This study aims to investigate the effects of weather uncertainty on the planning and scheduling of a greenhouse energy system. To achieve this purpose, a two-objective (cost and temperature stability) stochastic linear model is developed and solved using historical data for the past 20 years of Tehran. The... 

    Heavy oil thermal conversion and refinement to the green petroleum: A petrochemical refinement plant using the sustainable formic acid for the process

    , Article Biointerface Research in Applied Chemistry ; Volume 10, Issue 5 , 2020 , Pages 6088-6100 Norouzi, N ; Talebi, S ; Fabi, M ; Khajehpour, H ; Sharif University of Technology
    AMG Transcend Association  2020
    Abstract
    In this study, heat oil conversion experiments using steam and formic acid as a hydrogen carrier be carried out in a batch reactor at T = 380 degrees of Celsius and P = 165 bar. Material balance and product distribution were calculated after the process. Properties of crude oil before and after thermal conversion, including viscosity, API gravity, SARA measurement, and elemental analysis, were analyzed. It has been presented that the use of formic acid as a hydrogen carrier solvent reduces the formation of coke and gaseous products and enhances the performance of liquid products. Also, the viscosity of the refined oil decreased by 23.2% due to the addition of formic acid compared to the... 

    Exergy and exergoeconomic analysis of hydrogen and power cogeneration using an HTR plant

    , Article Nuclear Engineering and Technology ; Volume 53, Issue 8 , 2021 , Pages 2753-2760 ; 17385733 (ISSN) Norouzi, N ; Talebi, S ; Fani, M ; Khajehpour, H ; Sharif University of Technology
    Korean Nuclear Society  2021
    Abstract
    This paper proposes using sodium-cooled fast reactor technologies for use in hydrogen vapor methane (SMR) modification. Using three independent energy rings in the Russian BN-600 fast reactor, steam is generated in one of the steam-generating cycles with a pressure of 13.1 MPa and a temperature of 505 °C. The reactor's second energy cycles can increase the gas-steam mixture's temperature to the required amount for efficient correction. The 620 ton/hr 540 °C steam generated in this cycle is sufficient to supply a high-temperature synthesis current source (700 °C), which raises the steam-gas mixture's temperature in the reactor. The proposed technology provides a high rate of hydrogen... 

    Exergoenvironmental and exergoeconomic modelling and assessment in the complex energy systems

    , Article Iranian Journal of Chemistry and Chemical Engineering ; Volume 41, Issue 3 , 2022 , Pages 989-1002 ; 10219986 (ISSN) Norouzi, N ; Choubanpisheh, S ; Talebi, S ; Khajehpour, H ; Sharif University of Technology
    Iranian Institute of Research and Development in Chemical Industries  2022
    Abstract
    Traditionally energy systems were analyzed technically, but current environmental issues and considerations have put new constraints on the planning and managing of energy systems. Such an exergoeconomic and exergoenvironmental analysis were born. This analysis is aimed to describe the necessity and application of a new concept in environmental liability accounting based on physical quantities to overcome the weaknesses of the developed allocation methods and the internalization of external environmental damages. The proposed method is modified in environmental analysis to consider the effect of non-energy flows on a macro-surface energy system. As a case study, this method is tuned for a... 

    Energy, Exergy, and exergoeconomic (3E) analysis of gas liquefaction and gas associated liquids recovery co-process based on the mixed fluid cascade refrigeration systems

    , Article Iranian Journal of Chemistry and Chemical Engineering ; Volume 41, Issue 4 , 2022 , Pages 1391-1410 ; 10219986 (ISSN) Norouzi, N ; Bashash Jafarabadi, Z ; Valizadeh, G ; Hemmati, M. H ; Khajehpour, H ; Sharif University of Technology
    Iranian Institute of Research and Development in Chemical Industries  2022
    Abstract
    In this study, energy, exergy, and exergoeconomic analysis is performed on the recent trend of joint production of liquefied natural gas and natural gas liquids based on mixed fluid cascade most important of refrigeration systems. The proposed process is first simulated and exergticly analyzed, and finally, an economic model is used to analyze the exergoeconomic performance. The results include the cost of exergy destruction, exergoeconomic factors, and exergy efficiency. The exergy analysis results show that the proposed process's exergy efficiency is about 53.84%, and the destruction rate is 42618 kW with LNG and NGL production rates of 69.00 kg/s and 27.42 kg/s, respectively. Also,... 

    Energy and exergy analysis of Wastewater Sludge Gasification: A Case Study in Kerman Province, Iran

    , Article 2024 9th International Conference on Technology and Energy Management, ICTEM 2024 ; 2024 ; 979-835032979-7 (ISBN) Bayat, D ; Sharifian, M ; Khajehpour, H ; Edalati, S ; Nasseriyan, P ; Sharif University of Technology
    2024
    Abstract
    In light of the escalating global energy consumption, it is imperative for humanity to seek alternative energy sources for the future. This is primarily motivated by the need to mitigate environmental consequences and counterbalance the depleting reserves of fossil fuels. This study investigates a proposed solution for reducing the industrial sector's energy requirements in Kerman province, Iran. It focuses on the waste-to-energy technique and examines the potential for producing synthesis gas through a simulation of the municipal wastewater sludge gasification process. The study evaluates the syngas composition, net energy efficiency, and net exergy efficiency. The gasification process of... 

    Sustainable Development Model of Energy Sector Based on Exergy Flow Concept

    , Ph.D. Dissertation Sharif University of Technology Khajehpour, Hossein (Author) ; Sabouhi, Yadollah (Supervisor)
    Abstract
    Sustainable development of the energy sector, as a resource-consuming sector with high environmental emissions, is essential. Especially in energy-intensive countries such as Iran with a sensitive environment, the sustainability considerations are more critical. The sustainability may be achieved when all pillars (economic, social, and environmental) are considered in a balanced manner. Previous economic experiences show the incapability of the market view in proper consideration of the ecosystem assets. Therefore, and in contrast to the economic view, in the physical approaches the limited capacity of the cosystem bounds the economic activities for meeting social welfare. In this view, the... 

    Advanced utilization of urban sewage sludge for low-carbon hydrogen and power production in steel manufacturing

    , Article Energy Conversion and Management ; Volume 315 , 2024 ; 01968904 (ISSN) Bararzadeh Ledari, M ; Akbarnavasi, H ; Khajehpour, H ; Bayat, D ; Edalati, S ; Nasseriyan, P ; Moghaddari, S ; Sharif University of Technology
    2024
    Abstract
    The study presents a comprehensive analysis of utilizing urban sewage sludge for low-carbon hydrogen and power production in steel manufacturing. Focusing on biomass gasification and anaerobic digestion, it evaluates the efficiency of various technologies. Key findings include the effectiveness of micro turbines with scrubbing and Stirling Motors with PSA for simultaneous heat and power generation, achieving output powers of 1081.44 kW and 1167.74 kW, and annual electricity generations of 9.45 GWh and 10.20 GWh, respectively. For hydrogen and synthesis gas production, the PSA (Pressure Swing Adsorption) technology showed a volumetric flow rate of 14315.23/day and a mass flow rate of 862.4... 

    “Environmental Modelling of Oil and Gas Upstream”

    , M.Sc. Thesis Sharif University of Technology Khajehpour, Hossein (Author) ; Sabouhi, Yadollah (Supervisor)
    Abstract
    Oil and gas upstream, is one of the major parts of the energy chain in the world. Processes of production, transportation, processing and conversion of energy carriers are the main parts of this sector. Process units of oil and gas upstream industry are some of most local and global pollution resources in the world. In this research, the consideration of the pollutions from the production, processing and conversion of fossil fuels sector and the optimization of the management choices of each pollutant is subjected. Consideration of the pollutants related to the upstream sector, pollution control and management choices, cost accounting of the environmental impacts, the methods of accounting... 

    Exploring Public Perception of Justice in Mobility Transitions: Evidence from a Bicycle Sharing System in Iran

    , M.Sc. Thesis Sharif University of Technology Khajehpour, Bahareh (Author) ; Miremadi, Iman (Supervisor)
    Abstract
    Globally, bicycle sharing is one of the fast-growing solutions to climate change in the transport sector. However, what inequities may be reflected, exacerbated, or arose from its adoption and use? Relying on a qualitative research design involving interviews with bicycle sharing users, non-adopters, and daily observers of the cycling infrastructure (N = 36), site visits, and a literature review, we examine distributive, procedural, and recognition injustices in association with Bdood, an operating BSS in Iran, a developing country that allows for less-documented types of injustice to arise. In doing so, we utilize a comprehensive transport/mobility justice framework, drawn from the fields... 

    Assessing the Environmental Impact of Electric Vehicles in Different Technology Development and Energy Supply Scenarios: A Case Study of Tehran

    , M.Sc. Thesis Sharif University of Technology Habibi, Ali (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    Air pollution has been one of the most important problems in Tehran in recent years. So that the number of deaths due to air pollution in Tehran reaches more than 7000 cases per year. More than 75% of air pollutant emissions in Tehran city (including 60% of PM2.5 emissions) originate from mobile sources. Considering the harmful effects and damages caused by air pollutants, it is important to examine and evaluate the effects of hybrid-electric vehicles on the emissions of the transportation sector and air quality, especially in areas with a large population and realized high traffic load. On the other hand, the continuous reduction of renewable electricity production costs makes electricity a... 

    Monitoring the Received Signal Level, the Rain Attenuation and Received Solar Noise During The Conjunction at Tehran Station for the Main TV Direct Broadcast Satellites during a Solar Year

    , M.Sc. Thesis Sharif University of Technology Khajehpour, Vahid (Author) ; Farzaneh, Forouhar (Supervisor)
    Abstract
    Due to the widespread use of satellite communications including live TV broadcast, DVB-S and satellite Internet, it is necessary to accurately assess the level of signal received and the EIRP of the satellite. Nilesat21(7°W), Eutelsat3B(3°E), Badr(26°E), Express AM6(53°E) and Intelsat20(68.5°E) have been chosen to be meticulously assessed and analyzed.The chosen satellites contain the westernmost for Tehran to the easternmost, which has been listed above from west to east, respectively.In addition, the signal attenuation is closely monitored in the city of Tehran during rainfall for the above-mentioned satellites. In the meantime, the rain rate is also recorded.Another major factor that... 

    Modeling and Optimization of the Penetration of Hydrogen in the Iranian Energy System Through Low-Carbon Strategies

    , M.Sc. Thesis Sharif University of Technology Sharifian, Mohammad (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    Today, the rapid and increasing growth of various human societies has led to an increased consumption of energy and the need for new resources. In fact, the excessive consumption of energy, especially fossil fuels, has caused adverse and sometimes irreversible effects on the human environment. Also, the consumption of different types of fossil fuels such as coal, oil, and natural gas, leads to a significant increase in greenhouse gases in the atmosphere. On the other hand, population growth and technological advancements in the last century have led to an increase in the demand for energy carriers. Therefore, the use of new energy sources instead of fossil fuels is an inevitable matter.... 

    Integrated Modeling of Water and Energy Nexus with Social and Environmental Factors: Case Study of Makran Region in Iran

    , M.Sc. Thesis Sharif University of Technology Ahmadi, Parniyan (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    Sustainable development of the energy sector, as a resource-consuming sector with high environmental emissions, is essential. Especially in energy-intensive countries such as Iran with a sensitive environment, the sustainability considerations are more critical. The sustainability may be achieved when all pillars (economic, social, and environmental) are considered in a balanced manner. Previous economic experiences show the incapability of the market view in proper consideration of the ecosystem assets. Therefore, and in contrast to the economic view, in the physical approaches the limited capacity of the cosystem bounds the economic activities for meeting social welfare. In this view, the... 

    The Advanced Exergy Analysis of Green Hydrogen Production System and its Application in Green Steel Production: A Case Study for Butia Iranian Steel Company

    , M.Sc. Thesis Sharif University of Technology Bayat, Delaram (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    In recent years, the significant growth of the population has led to an increase in energy demand and subsequent rise in waste production. A substantial share of the energy demand and consumption in the industrial sector, particularly in steel production, requires the utilization of renewable technologies for energy and clean fuel production, such as hydrogen, to address this growing demand and mitigate environmental impact. This study focuses on a waste-to-energy technique as a viable solution to facilitate the transition towards green steel production in the industrial sector of Kerman province, primarily targeting the decarbonization of utility generation in steel production process.... 

    Evaluation of the Optimal Transition Pathway for Achieving the Net-Zero Carbon Energy Supply System in Iran Considering Technology Development Forecasts

    , M.Sc. Thesis Sharif University of Technology Moradi, Fatemeh (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    The climate crisis and the role of the energy sector in greenhouse gas emissions highlight the urgent need for a transition to a low-carbon energy supply system. In this study, the OSeMOSYS model was used to optimize emission reduction pathways by implementing various scenarios, including BAU, NZC, SSP1, SSP2, and SSP5. First, the technical parameters of the model, such as investment costs and capacity factors, were estimated using econometric methods to account for technological development. Sensitivity analysis was then conducted on investment and import constraints. The results indicate that the BAU scenario, due to its high reliance on fossil fuels, leads to the highest CO₂ emissions,... 

    Environmental responsibility accounting in complex energy systems

    , Article Journal of Cleaner Production ; Volume 166 , 2017 , Pages 998-1009 ; 09596526 (ISSN) Khajehpour, H ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
    2017
    Abstract
    Environmental considerations have imposed new restrictions in the planning and management of energy systems. This research aims at describing the necessity and application of a new concept in environmental responsibility accounting. The method is based on physical quantities to overcome the weaknesses of already developed allocation approaches, and to internalize the external environmental damages using the exergy concept. The proposed method is a modification of the exergoenvironmental analysis in order to take into account the effect of non-energy streams in a macro-level energy system. In the proposed method, environmental responsibilities are to be calculated based on the exergy... 

    Exergy-based responsibility allocation of climate change

    , Article University Initiatives in Climate Change Mitigation and Adaptation ; 2018 , Pages 291-315 ; 9783319895901 (Online ISBN); 9783319895895 (Print ISBN) Khajehpour, H ; Saboohi, Y ; Tsatsaronis, G ; Sharif University of Technology
    Springer International Publishing  2018
    Abstract
    Climate change as a serious environmental issue has been subjected to many management studies. Yet the issue of allocating global responsibilities to emission reduction in a reasonable way is an unconcluded challenge. Two main groups of responsibility allocation systems are production-based responsibilities (PBR) and consumption-based responsibilities (CBR). PBR takes territorial emissions within borders into account that is applied to global policy makings by the Intergovernmental Panel on Climate Change (IPCC). In contrast, CBR considers the emission transfers through international trade and allocates the responsibilities based on the goods and services being consumed by each country. Both...