![Table 1 from Electron beam flue gas treatment (EBFGT) technology for simultaneous removal of SO2 and NOx from combustion of liquid fuels | Semantic Scholar Table 1 from Electron beam flue gas treatment (EBFGT) technology for simultaneous removal of SO2 and NOx from combustion of liquid fuels | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/b4f3e06b80b00c83ed5ef9004bf12cc02f36394a/4-Table1-1.png)
Table 1 from Electron beam flue gas treatment (EBFGT) technology for simultaneous removal of SO2 and NOx from combustion of liquid fuels | Semantic Scholar
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Applied Sciences | Free Full-Text | Flue Gas Composition and Treatment Potential of a Waste Incineration Plant
![SOLVED: Flue gases leaving the boiler stack at 6S0K as the following composition on mole basis COz-12%, HzO-[3%, Oz-2%,and Nz-73%.Calculate heat lost in IOKg mole of gas mixture above 300K using heat SOLVED: Flue gases leaving the boiler stack at 6S0K as the following composition on mole basis COz-12%, HzO-[3%, Oz-2%,and Nz-73%.Calculate heat lost in IOKg mole of gas mixture above 300K using heat](https://cdn.numerade.com/ask_images/3b8fe4f133e444f18d361e4d1ea3d84c.jpg)
SOLVED: Flue gases leaving the boiler stack at 6S0K as the following composition on mole basis COz-12%, HzO-[3%, Oz-2%,and Nz-73%.Calculate heat lost in IOKg mole of gas mixture above 300K using heat
![Cyclic performance evaluation of a polyethylenimine/silica adsorbent with steam regeneration using simulated NGCC flue gas and actual flue gas of a gas-fired boiler in a bubbling fluidized bed reactor | Semantic Scholar Cyclic performance evaluation of a polyethylenimine/silica adsorbent with steam regeneration using simulated NGCC flue gas and actual flue gas of a gas-fired boiler in a bubbling fluidized bed reactor | Semantic Scholar](https://d3i71xaburhd42.cloudfront.net/7d603aba02b31daa240b44fb327261c4add09ab8/2-Table1-1.png)