2 research outputs found

    TСхноСкономска Π°Π½Π°Π»ΠΈΠ·Π° Π½Π° ΠΏΠΎΠ΄Π³ΠΎΡ‚ΠΎΠ²ΠΊΠ° ΠΈ ΠΈΠΌΠΏΠ»Π΅ΠΌΠ΅Π½Ρ‚Π°Ρ†ΠΈΡ˜Π° Π½Π° ΠΏΠΎΠ΄Π·Π΅ΠΌΠ½Π°Ρ‚Π° Π³Π°ΡΠΈΡ„ΠΈΠΊΠ°Ρ†ΠΈΡ˜Π° Π²ΠΎ Ρ€ΡƒΠ΄Π½ΠΈΡ†ΠΈΡ‚Π΅ Π·Π° јаглСн

    Get PDF
    Π”ΠΎΠΊΠΎΠ»ΠΊΡƒ ја Π·Π΅ΠΌΠ΅ΠΌΠ΅ Π²ΠΎ ΠΎΠ±Ρ•ΠΈΡ€ ΠΊΠΎΠ»ΠΈΡ‡ΠΈΠ½Π°Ρ‚Π° ΠΈ ΠΊΠ²Π°Π»ΠΈΡ‚Π΅Ρ‚ΠΎΡ‚ Π½Π° достапнитС Ρ˜Π°Π³Π»Π΅Π½ΠΎΠ²ΠΈΡ‚Π΅ рСсурси, Π½Π°ΡˆΠ°Ρ‚Π° зСмја која Π½Π΅ располага со Π΄ΠΎΠ²ΠΎΠ»Π½ΠΈ ΠΈ ΠΏΠΎ структура ΠΏΠΎΠ²ΠΎΠ»Π½ΠΈ Ρ€Π΅Π·Π΅Ρ€Π²ΠΈ Π½Π° СнСргСтски сировини, Ρ‚ΠΎΠ³Π°Ρˆ смС Π²ΠΎ ΡΠΈΡ‚ΡƒΠ°Ρ†ΠΈΡ˜Π° Π΄Π° ја ΠΏΡ€ΠΈΠΌΠ΅Π½ΠΈΠΌΠ΅ Π½ΠΎΠ²Π°Ρ‚Π° Ρ‚Π΅Ρ…Π½ΠΎΠ»ΠΎΠ³ΠΈΡ˜Π° Π½Π° Π΅ΠΊΡΠΏΠ»ΠΎΠ°Ρ‚Π°Ρ†ΠΈΡ˜Π° Π½Π° вонбилансни Ρ€Π΅Π·Π΅Ρ€Π²ΠΈ Π½Π° јаглСн. НајваТна активност сСкако Π΅ ΠΈΠ·Π±ΠΎΡ€ΠΎΡ‚ Π½Π° Π»ΠΎΠΊΠ°Ρ†ΠΈΡ˜Π°Ρ‚Π° Π·Π° ΠΏΠΎΠ΄Π·Π΅ΠΌΠ½Π° Π³Π°ΡΠΈΡ„ΠΈΠΊΠ°Ρ†ΠΈΡ˜Π° Π½Π° јаглСн, која зависи, ΠΏΡ€Π΅Π΄ сѐ, ΠΎΠ΄ Ρ˜Π°Π³Π»Π΅Π½ΠΎΠ²ΠΈΠΎΡ‚ Ρ€Π°Π½Π³, Π΄Π΅Π±Π΅Π»ΠΈΠ½Π°Ρ‚Π° ΠΈ Π΄Π»Π°Π±ΠΎΡ‡ΠΈΠ½Π°Ρ‚Π° Π½Π° ΡΠ»ΠΎΡ˜ΠΎΡ‚, Ρ‚ΠΈΠΏΠΎΡ‚ Π½Π° ΠΏΠΎΠΊΡ€ΠΈΠ²Π½ΠΈΡ‚Π΅ ΠΈ основнитС слоСви, пропустливоста, порозноста Π½Π° Ρ˜Π°Π³Π»Π΅Π½ΠΎΡ‚ ΠΈ ΠΎΠΊΠΎΠ»Π½ΠΈΡ‚Π΅ ΠΊΠ°Ρ€ΠΏΠΈ, ΠΈΡ‚Π½. НСопходно Π΅ Π΄Π° сС Ρ€Π°Π·Π³Π»Π΅Π΄Π° ΠΊΠΎΠ»ΠΈΡ‡ΠΈΠ½Π°Ρ‚Π° Π½Π° јаглСн ΡˆΡ‚ΠΎ Π΅ Π²ΠΎ ΡΠΎΡΡ‚ΠΎΡ˜Π±Π° Π΄Π° сС гасифицира ΠΈ Π΄Π° сС ΠΏΡ€ΠΎΡ†Π΅Π½ΠΈ Π²ΠΊΡƒΠΏΠ½ΠΈΠΎΡ‚ Π²ΠΎΠ»ΡƒΠΌΠ΅Π½ Π½Π° ΠΏΡ€ΠΎΠΈΠ·Π²Π΅Π΄Π΅Π½ гас ΠΎΠ΄ ΠŸΠ“. Π‘Π΅ΠΊΠ°ΠΊΠΎ, прСсмСткитС Π·Π° ΠΊΠ°ΠΏΠΈΡ‚Π°Π»Π½ΠΎ ΠΈΠ½Π²Π΅ΡΡ‚ΠΈΡ€Π°ΡšΠ΅ ΠΈ Ρ‚Π΅Ρ…Π½ΠΈΡ‡ΠΊΠΈΡ‚Π΅ Ρ‚Ρ€ΠΎΡˆΠΎΡ†ΠΈ Π½Π° производство ΠΈΠΌΠ°Π°Ρ‚ ΠΌΠ½ΠΎΠ³Ρƒ Π·Π½Π°Ρ‡Π°Ρ˜Π½ΠΎ мСсто ΠΈ Π²ΠΎ овој Ρ‚Ρ€ΡƒΠ΄ Π½ΠΈΠ΅ ќС ΠΈΠΌ посвСтимС особСно Π²Π½ΠΈΠΌΠ°Π½ΠΈΠ΅ Π½Π° Ρ‚ΠΎΠ°

    Technical and radiological characterisation of fly ash and bottom ash from thermal power plant

    Get PDF
    Huge quantities of fly ash and bottom ash are generated from thermal power plants and itΒ presents great concern for country, mainly due to the environmental effects. In this study, fly ashes and bottom ash were characterized from technical and radiological aspects. Health effect due to the activity of radionuclidesΒ 226Ra,Β 232Th andΒ 40K was estimated via radium equivalent activity (Raeq), external hazards index (Hex), the external absorbed dose rate (D) and annual effective dose rate (EDR). The specific surface area (40.25Β m2Β gβˆ’1), particle density (1.88Β gΒ cmβˆ’3)Β and LOI (23.49%) were typical for bottom ash. Siliceous fly ash contained 32% reactive silica. The annual effective dose rate for all ashes is ≀ 0.2Β mSv yβˆ’1. Both, fly ash and bottom ash present potential secondary raw materials to be used for building purposes as result of their technological and radiological assessment
    corecore