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Scrutiny of a Bi-evaporator poly-generation system includes distilled water production unit: Comparative study and Bi-objective optimization

  • Tao Hai
  • , Jincheng Zhou
  • , Hasan Sh Majdi
  • , Pradeep Kumar Singh
  • , Hamad Almujibah
  • , Husam Rajab
  • , Abdulaziz Ibrahim Almohana
  • , Walid El-Shafai
  • , Sattam Fahad Almojil
  • Qiannan Normal College for Nationalities
  • INTI International University
  • Key Laboratory of Complex Systems and Intelligent Optimization of Guizhou Province
  • Al-Mustaqbal University College
  • GLA University
  • Taif University
  • Alasala Colleges
  • King Saud University
  • Menoufia University

Research output: Contribution to journalArticlepeer-review

Abstract

While geothermal energy is typically associated with beneficial environmental effects, it is crucial to acknowledge that it can lead to greenhouse gas emissions. Therefore, the implementation of geothermal systems should include an environmental assessment. This study presents and evaluates an innovative geothermal-powered bi-evaporator poly-generation system from seven perspectives: thermodynamic, extended-environmental, exergoenvironmental, exergoeconomic, net present value, and bi-objective optimization. The designed ploy-generation system comprises a desalination unit, a unit for extracting hydrogen, and a modified organic flash cycle, all integrated with a single geothermal flash cycle. These subsystems work in unison to create a comprehensive and integrated system for simultaneously generating purified water, green hydrogen, electricity, and meeting refrigeration load requirements. Regarding the findings at the base mode, the designed system is able to generate net power, refrigeration load, distilled water, and H2 production rates of 244.9 kW, 741.4 kW, 0.4443 kg/s, and 1.062 kg/h, respectively. By employing NSGA-II optimization, the values of commodities are substantially increased, which enhanced the poly-generation system product cost and energetic efficiency by 7.13 % and 30.48 %. Also, the net electricity selling price significantly affects NPV, so the payback period reduces to 8.56 years.

Original languageEnglish
Article number119993
JournalRenewable Energy
Volume223
DOIs
StatePublished - Mar 2024
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation
  2. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy
  3. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • Desalination
  • Environmental analysis
  • Exergoeconomic
  • H extraction
  • NSGA-II method
  • Net present value
  • Poly-generation system

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