شماره ركورد كنفرانس :
3788
عنوان مقاله :
Implementation, operation and economical assessment of the first 3MW biomass distributed energy resource: A case study of Iran
عنوان به زبان ديگر :
Implementation, operation and economical assessment of the first 3MW biomass distributed energy resource: A case study of Iran
پديدآورندگان :
Ataei Mostafa Mostafa.ataei@ihemardabili.ac.ir Department of Electrical Engineering, Moghadas Ardabili Institute of Higher Education, Ardabil, Iran , Malekshah Soheil Soheil.malekshah@gmail.com Department of Power Engineering, Faculty of Electrical Engineering, South Tehran Branch, Islamic Azad University, Tehran, Iran , Ghanbarnejad Mohsen gh.mohsen@email.kntu.ac.ir Department of Electrical Engineering, K.N.Toosi University of Technology, Tehran, Iran , Jalili Irani Aref Arefjalili@gmail.com Department of Electrical Engineering Islamic Azad University, Ardabil Branch, Ardabil, Iran
كليدواژه :
Biomass Distributed Energy Resources , Greenhouse Gas Emission , Economical Assessment , Pyrolysis Incinerator , Rotary Furnace , Waste Incineration Plant
عنوان كنفرانس :
هفتمين كنفرانس ملي شبكه هاي هوشمند انرژي 96
چكيده فارسي :
Biomass distributed energy resources are also
known as waste-to-energy plants. The heat from the
combustion process is used to generate superheated steam
in boilers. Municipal solid waste incineration is a
greenhouse gas emitter; however, if greenhouse gas
emitter reductions, achieved by accounting for waste-toenergy,
exceed greenhouse gas emitter emissions,
incineration can be considered as a net greenhouse gas
emitter reducer. A metropolitan city like Tehran of Iran
has the sufficient potential to construct biomass
distributed energy resources. In this paper, the technical
report of implementation, operation and economical
assessment of waste incineration plant of Tehran as a
practical case study is presented. The plant nominal
capacity is 3MW that is located in the suburb of Tehran in
Kahrizak region. The paper approaches are divided into
three parts of economic, environmental and technical
studies that the main factors of each section are studied. In
this paper, the furnace technology of the plant is based on
Pyrolysis incinerator that has the optimum combustion
rather than other technologies. In addition, the installed
filter is poly tetra flour ethylene that could observe 99.8%
remaining dusts in the output gas that effect directly to
improve the environmental standards.
چكيده لاتين :
Biomass distributed energy resources are also
known as waste-to-energy plants. The heat from the
combustion process is used to generate superheated steam
in boilers. Municipal solid waste incineration is a
greenhouse gas emitter; however, if greenhouse gas
emitter reductions, achieved by accounting for waste-toenergy,
exceed greenhouse gas emitter emissions,
incineration can be considered as a net greenhouse gas
emitter reducer. A metropolitan city like Tehran of Iran
has the sufficient potential to construct biomass
distributed energy resources. In this paper, the technical
report of implementation, operation and economical
assessment of waste incineration plant of Tehran as a
practical case study is presented. The plant nominal
capacity is 3MW that is located in the suburb of Tehran in
Kahrizak region. The paper approaches are divided into
three parts of economic, environmental and technical
studies that the main factors of each section are studied. In
this paper, the furnace technology of the plant is based on
Pyrolysis incinerator that has the optimum combustion
rather than other technologies. In addition, the installed
filter is poly tetra flour ethylene that could observe 99.8%
remaining dusts in the output gas that effect directly to
improve the environmental standards.