Published January 2006 | Version v1
Book

Solar fired combined RO/MED desalination plant integrated with electrical power grid

Creators

  • 1. Higher Institute of Mechanical and Electrical Engineering, PO Box 61297. Hoon (Libya)

Description

Currently, there is a strong demand for efficient seawater desalination plants, which can meet the tougher environment regulation and energy saving requirements. From this standpoint the present work was undertaken to include proposed scheme (solar Fired Combined Reverse Osmosis (ROY Multi-Effect Distillation (MED) Seawater desalination Plant (SCDP) integrated with electrical power grid (EPG)) for repowering and modification of the conventional grid connected RO desalination plants. The model of SCDP during sunny periods may be applied to the following modes operation: *Full solar desalination (i.e. solar thermal and electrical power generation in solar plant is elivered to the desalination process and the surplus electricity is fed into EPG). *Hybrid solar desalination (I.e. a small share of the electrical power consumption for desalination process compensated by EPG). During cloudly periods and at night the SCDP operates as a conventional RO desalination plant. To establish the range, in which solar energy for seawater desalination would be competitive to fossil energy and investigates the potential effect of the proposed scheme on the repowering effectiveness, mathematical model has been developed. The repowered effectiveness, mathematical model has been developed.The repowered effectiveness in optaimizing model was characterized by the condition of attaining maximum fuel saving in the EPG. The study result shows the effectiveness of proposed scheme for modification and repowering the RO plant. For the case study. (SCDP with maual share of solar electrical power generation 67.4%) the economical effect amount 138.9 ton fuel/year for each MW design thermal energy of parabolic solar collectors array and the corresponding decrease in exhaust gases emission (Nitrogen oxides (NOx) 0.55 ton/year.MW, carbon dioxides (CO2) 434.9 ton/year.MW). Moreover, implementation of combined RO/MED design for repowering and modification of conventional grid connected RO plant will increase the distilled water production in about 22932.9 ton/MW.year.(Author)

Part of:
World renewable energy and environmental conference: abstract book

Additional details

Publishing Information

Publisher
Sebha University
Imprint Place
Tripoli (Libya)
Imprint Title
World renewable energy and environmental conference: abstract book
Imprint Pagination
118 p.
Journal Page Range
p. 4

Conference

Title
world renewable energy and environmental conference
Acronym
WREEC-2006
Dates
22-24 Jan 2006
Place
Tripoli (Libya)

Optional Information