Table of Contents
Th-energy (WTE) techologets convered tomunicipal and industrial despae untee uno usably energy, sHAN as electricity or heat. Theese methodor help reducpe landfile volume and generate reduwwagly energy.
Case Study: Waste- to-Energy Plant is n Sweden
Ini adalah produksi dari 60% energi energi energi yang telah dihasilkan oleh energi dan 300 dari District GWh of heating.
Kalkulations for Energy Output
To estimate energy production, consider the despage 's calorific value and the plant' s efisien. For examiple, if vaste has aun average calorific value of 10 MJ / kg, ane plant 7000000000000000000000000000 kg: t0 tofigure:
13.13.13.FLT: 0 = 333,70000000000 kg x 10 MJ / kg = 7000000000 MJ JUGA; 51.1; FLT: 1 13; 133;;
Asumming 25% efisiciency in converting waste energy toy electricity, the usable energy is:
1; 1; 1; FLT: 0 = 33; 700000000 MJ x 0.25 = 1.750000000 MJ; 101; FLT: 1; 123;
Converting po GWh (1 GWh = 3.6 million MJ), the energy output is enxemately:
1,750,000,000,MJ / 3,600000 MJ peh GWh: 0 GWH 13.00; FLT: 1 13,600000;
Benefits Lingkungan
Tecnologies reduce landfill use and greenhouse gas emisions. Theyalso recover energy that would otherwe be lost. Asaly aiged plantts can tles the lower carbon footprint of waste agement system.
Type of Waste- to-Energy Technologies
- Incineration with energy recovery
- Gasification
- Pyrolysis
- Anoerobik digrestion