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Study On The Application Of Photovoltaic Power Generation In Chlor Alkali Industry

Posted on:2018-08-04Degree:MasterType:Thesis
Country:ChinaCandidate:J KangFull Text:PDF
GTID:2321330536466279Subject:Electrical engineering
Abstract/Summary:PDF Full Text Request
Electrolysis industry,hydrogen production by electrolysis of chlorine sodium hydroxide,hydrogen energy,is a kind of clean energy,because the heat produced from the combustion of hydrogen is relatively high,and the combustion of water pollution,is the most ideal material for energy,the rocket is now in liquid hydrogen as fuel,chlorine gas is a kind of chemical industry the use of very frequent and very necessary for chemical products,tap water disinfection is the chlorine and sodium hydroxide is a chemical on the necessary products,but need electrolytic chlor alkali industry can consume a large amount of.Through the research on the preparation of the chlor alkali chlor alkali electrolysis,found is in need of DC power supply,and if the solar energy into chemical energy,by direct electrolysis of sodium chloride aqueous solution will change the solar panels to absorb solar energy to power the situation into chemical energy,hydrogen generation product is a kind of clean energy,and chlorine sodium hydroxide is industrial and production needs of chemical products.As of this century the development of solar energy and the potential energy has been more and more accepted by the people,the light emitted by the sun as a new energy,already came to our eyes,but how can the main research at home and abroad,many scholars have become better utilization of solar energy.The sun can be seen everywhere in life,photons are panels after absorption can also be used as a power supply to the grid,but through the solar photovoltaic panels electricity into the grid due to its instability,easy to produce harmonicsand will cause the deterioration of power quality,so in other ways it is we need to consider the use of solar energy.Through the study,issued by the photovoltaic power is mainly the photoelectric effect by photon irradiation in the battery plate formed from current,this current will take care of with the strength and the outside temperature changes,so that a photovoltaic panel is not very stable power,and the change of power to the grid connected power grid increases the difficulty of filtering,in view of photovoltaic power generation is not stable,so want to be able to store this energy into other forms of energy,for energy supply.The main contents of this paper are as follows:1.Through the analysis of chlor alkali industry,the electrode and separator are selected,and the suitable electrode is selected by simulating the performance of electrode electrolysis of different materials.Finally,the suitable voltage of electrolytic sodium chloride is calculated by experiment.2.Through the analysis of solar energy resources,analysis of light resources in Taiyuan City,the design of photovoltaic panels installed,installed between different solar panel,and then to annual maximum generating capacity will be the best angle on the photovoltaic panels for the calculation and design,simulation analysis of the best angle by PVsystem software.3.For a photovoltaic cell model by using MATLAB simulation,analysis of photovoltaic cells in different temperature and light intensity of the power curve,it is found that the power curve had a maximum value,in order to make the maximum power output,the introduction of MPPT to the maximum power generated for panels,through the comparison of different methods for the final fixed voltage with the perturbation method combined with the application and then selected,by using C# programming method of maximum power was improved and simulation.4.Through the analysis of photovoltaic power generation and chlor alkali industry,according to the electrolytic voltage on the power generation,theannual energy consumption and the value of pollution emission are calculated.
Keywords/Search Tags:solar energy, chlor alkali industry, matlab, Maximum power tracking
PDF Full Text Request
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