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Integral system for production of healthy food and electricity-SOLVAP

Limes Co. d.o.o . Dr. Ante Starčevića 13/II, 88000 Mostar, BiH Tel/Fax: ++387 36 347 883 Email : limesco.djemo@gmail.com. Integral system for production of healthy food and electricity-SOLVAP. Dr.SC.Ismet Hadžiosmanović dipl.el.ing. Dr.SC . Edin Rizvanović dipl.iur

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Integral system for production of healthy food and electricity-SOLVAP

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  1. Limes Co. d.o.o. Dr. Ante Starčevića 13/II, 88000 Mostar, BiH Tel/Fax: ++387 36 347 883 Email: limesco.djemo@gmail.com Integral system for production of healthy food and electricity-SOLVAP Dr.SC.Ismet Hadžiosmanović dipl.el.ing. Dr.SC. Edin Rizvanovićdipl.iur Mr.sc.Džemal Hadžiosmanović dipl.el.ing. Mr.SC.Jasmin Jaganjac KerimHadžiosmanović dipl.ing.maš.

  2. General links-context • Climate changes significantly affect agricultural production in general and the human environment. The last few years have been evident damage that farmers suffer both in BH and in the wider region. • Traditional agrucultural production will need to look for systemic protection against climate change, including all professional and scientific resources. One way of protection of the greenhouse production that is grounded in the law on agricultural land of Federation of Bosnia and Herzegovina. • Greenhouse production in addition to the production of bio-culture today offers the possibility of installing photovoltaic panel on the roof of the facility and production of electricity for personal needs and for placing on the market of electricity. • These projects contribute significantly to the implementation obaeza that BH signing of the Treaty Establishing the Energy Community (Official Gazette B&H- International contracts number 9/06) in terms of promoting the production of renewable sources of energy efficiency and environmental protection. • This approach in agricultural production in accordance with the Law on Agricultural Land (Official Gazette of the Federation of Bosnia and Herzegovina No. 52/09).

  3. Basic technical requirements • 2. Subsystem production of solar electricity • Subsystem production of solar electricity are: bearing steel structures, solar panels with its instalation, heating and cooling with regulatory regime food production and consumption of electricity in the system 'SOLVAP ", the assessment and collection of production and consumption, power transmission lines, substations and system maintenance. • 1. Subsystem vertical greenhouse growing healthy food • Subsystem vertical greenhouse cultivation of healthy foods include: modular greenhouses, installing power, heating and ventilation electricity, installation power principle "drop by drop „, IT planning system of control and certification of production, the organization of production, harvesting and distribution of food on the market.

  4. Basic technical requirements • 4. Subsystem of reverse electricity production • Subsystem of reverse electricity production are: mini hydro electric powerplants with their energy installations, water pipes with regulatory regime of works to turbine of powerplant, production regulation and electricity delivery in the system of SOLVAP to the local distributive net. Reverse system of electricity productionis based on an altitudewaterflow accumulating in the central reservoir in which there is rain water pumped out of pumps, which pump out water from the Neretva river flows into central reservoir. • Work regime of mini hydro electric powerplants is determined by planned excess water that remains from water supply SOLVAP, that were let through the pipes to turbine generator plants. 3. Water supply of greenhouses subsystem Water supply system for supplying water to the greenhouse production of organic food, it water supply installations for collecting rainwater from the roof of the greenhouse construction, assembly rezervorari greenhouse module with pump installations for irrigation on the principle of "drop by drop, " the central reservoir with connecting installations and water supply pumps with associated installations water supply from the river Neretva, extra consumption with installations for solar modules and systems for maintenance water supply system.

  5. Technicalcapabilitiesintheproductionofelectricity • 1. Greenhouseproduction, inaddition to theproductionofvarious bio-culturestodayoffersthepossibilityofinstallingphotovoltaicpanels on theroof to produceelectricityenergy (both for their own use and for placing on themarket) • 2. New Law on ElectricityinFederation B&H offersartisanstheability to produceelectricityinpowerplantsupto 150 KW andshortenedproceduresconnection. • 3. Technicalpossibilitiesinelectricitygenerationgreenhousethreedifferentmodules: G100, G250 and G1250. • 4. The G100 is a footprintareaof ​​100 m2, withthenecessarysurfaceareaoftherooffrom 65.2 m2 to accommodate 40 photovoltaicmodulespower 255 Wp, electricaloutputpower 9, 1kW-annualproductionof 13,333 kWh. • 5. G250 layoutareaof ​​250 m2, withthenecessarysurfaceareaoftheroofof 156,5 m2, to accommodateproductionof 96 photovoltaicmoduluspowerof 255 Wpandelectricaloutputpower 21,84 KW-annualproduction 30.666 kWh. • 6. G1250 layoutareaof ​​1250 m2, withthenecessaryroofareaof 1095.4 m2 to accommodateproductionof676 photovoltaicmoduluspowerof 255 Wp200 000 kWh.

  6. ANALYSIS OF JUSTIFICATION CONSTRUCTION • Whenanalyzingthejustificationofbuildingtakethefollowinginitialparameters: • Thecostofconstructionofconstructionofgreenhousefacilitywithoutphotovoltaicelectricity 250kM/m2 (292.5 KM / m2 VAT included) • Thecostofconstructionofphotovoltaicpowerplants on theroofofthegreenhousefacility 3000 KM / KW (3510 KM / m2 VAT). • ThepurchasepriceoftheFederationof BH (Regulation on the use ofrenewableenergysourcesandcogeneration (FBH OfficialGazette No. 36/10) of 16.06.2010. Regulation on amendments to Regulationusedfixedenergysourcesandcogeneration (FBH OfficialGazette No. 11/11of 16.03.2011). • Thepurchasepriceofthe RS (Decision on thepurchasepriceandpremium for electricityproducedfromrenewablesources, or inefficientcogenerationNumber: 01-278-13/13/R-65-110) • Provenelectricityproduction is carriedout on thebasisofavailabledatafrom PV GIS system (for analysisofdefenseadvantageousterritoryof BH, in Stolac municipality, NeumfromFederation, andthemunicipalitiesofTrebinjeandLjubinjein RS. • As sunshineinthisareaverylittlediffer, it is theoverallanalysiswasperformedwiththevalues ​​ofsunshine at thelocationHodovoin Stolac)

  7. Profitsfromelectricityand bio-cultures • Estimatesannualprofitsfromenergyand bio-culturesin RS with a rate ofreturn on investmentof 14.3% Estimatesannualprofitsfromenergyand bio-culturesin FBH with a rate ofreturnof bio-cultureof 14.3%

  8. Estimatesofthe total annual profit and rate ofreturnofthe total investmentinthe FBH andthe RS, with a rate ofreturn bio-cultureof 14.3% (7 years) • Estimatesofthe total annual profit and rate ofreturnofthe total investmentinthe RS withthe rate ofinvestmentreturnof bio-cultureof 14.3% Estimatesofthe total annual profit and rate ofreturnofthe total investmentintheFederationwiththe rate ofinvestmentreturnof bio-cultureof 14.3%

  9. MULTIPLICATION USES • Theseprojects, inaddition to contributingtotheimplementationofthepoliciesdefinedintheTreatyestablishingthe Energy Community, andoffertheability to: • implementationofthecommitmentsofthe EU BH journey (especiallyintheareaof ​​IPA projects) • employment • increasingrevenues for all levelsofgovernment • transformationoflocalpubliccompaniesfromlossofrespectableproductioncompaniesformnew profit centers • reductioninpublicspending • preconditions for broadeconomicdevelopment, etc.

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