Fly Ash

S-P-10674

Eren Enerji Elektrik Üretim A. Ş

Fly Ash

Fly ash produced by Eren Energy is a by-product of electricity generation at the coal-fired power plant. In the ZETES II and ZETES III power plants on the same campus, fly ash is formed due to the combustion of coal during electricity generation, and this ash is captured by electrostatic dust filters. This captured fly ash has financial value and is sold to cement companies. Fly ash used as an additive in cement increases the strength of concrete.

The fly ash generated from Eren Enerji’s thermal power plants adheres to Class F specifications, meeting the rigorous standards outlined by TS EN 450-1 and ASTM C618. Furthermore, it exhibits superior quality characteristics, categorized as both Category A and Category N concerning ignition loss and fineness properties.

CPC: 3744

ISO 14025 and EN 15804:2012+A2:2019

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Eren Enerji Elektrik Üretim A. Ş
Fly Ash
Fly Ash

Registration & Validity

#SP
REGISTRATION NUMBERS-P-10674
VALIDITY2029-05-27
CLIMATE DECLARATIONSNo
COMPANY INFORMATION

Eren Enerji Elektrik Üretim A. Ş

Eren Enerji, a subsidiary of Eren Holding, has a total installed capacity of 2,790 MW at ZETES (Zonguldak Eren Thermal Power Plant), located within the borders of Çatalağzı Town and Muslu Town in Zonguldak province. With an investment value of 200 million dollars and an annual discharge capacity of 15 million tons, Eren Port provides loading and unloading services with four berths. ZETES 1 It is the name given to the 160 MWe unit located in the southern part of the Zonguldak Eren Thermal Power Plant site. The thermal power plant utilizes circulating fluidized bed technology to generate steam.

The superheated steam that will form after combustion in the circulating fluidized bed boiler enters the high-pressure stage of the turbine, expands, hits the turbine blades, and releases its energy to the rotors. The heat of the steam leaving the high-pressure turbine is raised again in the superheater section of the boiler and enters the medium-pressure turbine integrated with the low-pressure stage. In the generator, which is connected to the same mechanical assembly (shaft) as the turbine, the mechanical energy generated by hitting the turbine blades is converted into electrical energy. ZETES 2 It is the name given to the 2×615 MWe units located in the southern part of the Zonguldak Eren Thermal Power Plant site. The steam obtained in the supercritical Pi(n) type boiler is sent to the turbine in two stages.

Eren Enerji Elektrik Üretim A. Ş
Contact

Kuzyaka Mahallesi, Aras Sokak, No: 6 Çatalağzı, Kilimli, Zonguldak

0 (372) 264 31 9
https://www.erenenerji.com.tr/
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The steam, which releases its thermal energy to the turbine blades, is converted back into water by passing through a water-cooled condenser. The mechanical energy generated in the HP, IP, and LP stages of the turbine is converted into electrical energy by means of the generator connected to the same shaft. ZETES 3 It is the name given to the 2×700 MWe units located in the northern part of the Zonguldak Eren Thermal Power Plant site. In this power plant, the steam obtained in the supercritical, Pi(n) type boiler is sent to the turbine in two stages. The steam, which releases its thermal energy to the turbine blades, is converted back into water by passing through the water-cooled condenser. The mechanical energy generated in the HP, IP, and LP stages of the turbine is converted into electrical energy by means of the generator connected to the same shaft.

Eren Enerji, a subsidiary of Eren Holding, has a total installed capacity of 2,790 MW at ZETES (Zonguldak Eren Thermal Power Plant), located within the borders of Çatalağzı Town and Muslu Town in Zonguldak province. With an investment value of 200 million dollars and an annual discharge capacity of 15 million tons, Eren Port provides loading and unloading services with four berths.

ZETES 1

It is the name given to the 160 MWe unit located in the southern part of the Zonguldak Eren Thermal Power Plant site. The thermal power plant utilizes circulating fluidized bed technology to generate steam. The superheated steam that will form after combustion in the circulating fluidized bed boiler enters the high-pressure stage of the turbine, expands, hits the turbine blades, and releases its energy to the rotors. The heat of the steam leaving the high-pressure turbine is raised again in the superheater section of the boiler and enters the medium-pressure turbine integrated with the low-pressure stage. In the generator, which is connected to the same mechanical assembly (shaft) as the turbine, the mechanical energy generated by hitting the turbine blades is converted into electrical energy.

ZETES 2

It is the name given to the 2×615 MWe units located in the southern part of the Zonguldak Eren Thermal Power Plant site. The steam obtained in the supercritical Pi(n) type boiler is sent to the turbine in two stages. The steam, which releases its thermal energy to the turbine blades, is converted back into water by passing through a water-cooled condenser. The mechanical energy generated in the HP, IP, and LP stages of the turbine is converted into electrical energy by means of the generator connected to the same shaft.

ZETES 3

It is the name given to the 2×700 MWe units located in the northern part of the Zonguldak Eren Thermal Power Plant site. In this power plant, the steam obtained in the supercritical, Pi(n) type boiler is sent to the turbine in two stages. The steam, which releases its thermal energy to the turbine blades, is converted back into water by passing through the water-cooled condenser. The mechanical energy generated in the HP, IP, and LP stages of the turbine is converted into electrical energy by means of the generator connected to the same shaft.

 

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