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Utilization Of Solar Energy For Thermal Desalination Research Proposal

¶ … Solar Energy for Thermal Desalination Desalination of seawater is a process that is becoming increasingly important due to the falling water tables worldwide in addition to the projections of water shortage that is likely to occur in the near future. Various processes exist that can be utilized in desalination of seawater however; the Multi-Effect Desalination process is touted to be one that is more effective and economical than the others.

The question that the research proposed in this study addresses is why it is that multi-effect is becoming the most efficient and economic desalination process?

The study has as its purpose the examination of desalination processes and the determination of why the multi-effect is the desalination process that is most efficient and economic.

Methodology

The methodology chosen for the proposed research study is one of a qualitative nature and one that will involve an extensive review of literature in this area of study.

Literature Review

The work of Blanco, et al. (2008) states that seawater desalination "is one of the most promising fields for the application of solar thermal energy due to the coincidence, in many places of the world, or water scarcity, seawater availability and good levels of solar radiation." In fact, all international institutions that are relevant acknowledge the fact that over the next twenty years "power and water supply will be two major issues mankind will have to face and solve during the present 21st century." (Blanco, et al., 2008) Water scarcity is already a global problem of a serious nature and this problem will only become larger and more daunting in the future. Blanco et al. (2008) states "Problems associated...

(2008), is that water, which is critical to all life in a world with 6,600 million individuals, is a problem issue for approximately 600 million individuals who are presently "suffering chronic water scarcity" with approximately 1 billion individuals presently lacking in access to drinking water that is safe as well as unsafe water and poor sanitation characterizing the environment of 80% of individuals in the developing world. (Blanco, et al., paraphrased) Should the present trend continue, it is estimated "…two out of three people on Earth will live in water stressed areas by 2025 with the worst impact at arid developing countries where water availability per person will only be about 15% of the per capital availability in 1950." (Blanco, et al., 2008) Primary solar energy applications to water processes that are presently being developed include the following two approaches of solar water desalination: (1) combined solar power and desalination plants; and (2) medium to small solar thermal desalination systems (kW range); (2) Solar detoxification -- this uses the near-violent and visible aspect of the solar spectrum to promote a strong oxidation reaction by the generation of oxidizing species, either bound hydroxyl radical or free holes, which attack oxidizable contaminants, producing a progressive breaking of molecules yielding to CO2, H2O and dilute mineral acids; (3) Solar Disinfection -- use of previous detoxification techniques based on supported photocatalyst to generate powerful oxidant species to control and…

Sources used in this document:
References

Review of CSP and Desalination Technology (2007)

Blanco, J. et al. (2008) Solar Energy and Feasible Applications to Water Processes. 5th European Thermal-Sciences Conference, The Netherlands, 2008.

Blanco, J. And Alarcon, D. (2007) The PSA Experience on Solar Desalinati9on: Technology Development and Research Activities. Springer, 2007.

Sagie, D. Weinberg, J. And Mandelberg. E. Commercial scale Powered Desalination. Israeli Ministry of National Infrastructure.
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