4.6 Article

Experimental Study on Water Recovery from Flue Gas Using Macroporous Ceramic Membrane

Journal

MATERIALS
Volume 13, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/ma13030804

Keywords

ceramic membrane; water recovery; flue gas; heat transfer coefficient

Funding

  1. National Key R&D Program of China [2018YFB0604302]
  2. Fundamental Research Funds for the Central Universities [JB2019097]

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In this work, a ceramic membrane tube with a pore size of 1 mu m was used to conduct experimental research on moisture and waste heat recovery from flue gas. The length, inner/outer diameter, and porosity were 800 mm, 8/12 mm, and 27.2%, respectively. In the experiments, the flue gas, which was artificially prepared, flowed on the shell side of membrane module. The water coolant passed through the membrane counter-currently with the gas. The effects of flue gas flow rate, flue gas temperature, water coolant flux, and water coolant temperature on the membrane recovery performance were analyzed. The results indicated that, upon increasing the flue gas flow rate and its temperature, both the amount of recycled water and the recovered heat increased. The amount of recycled water, recycled water rate, recovered heat, and heat recovery rate all decreased as the water coolant temperature increased. When the water coolant temperature exceeded 30 degrees C, the amount of recycled water dropped sharply. The maximum amounts of recycled water, recovered heat, and total heat transfer coefficient were 2.93 kg/(m(2)h), 3.63 kW/m(2), and 224.3 W/(m(2)K), respectively.

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