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- W2935302653 abstract "Stabilized ZrO2 membranes (e.g. 8YSZ) have great potential due to their excellent thermal stability. In this paper, we present a new synthetic methodology to produce 8YSZ membranes on commercial macroporous α-Al2O3 supports. The resulting membranes have an average pore size of ∼5 nm and ∼3 nm, respectively, and a thickness approaching 2 μm. In various harsh stability tests, these membranes were tolerant to hydrothermal conditions (300 °C, 15 bar), high temperature (700 °C), and a high pH (NaOH, pH 14, 80 °C). They also demonstrated a suitable MWCO (15000 Da PEG; <3000 Da PEG) and permeance (145 kg h−1 m−2 bar−1; 40–50 kg h−1 m−2 bar−1) for commercial ultrafiltration processes. Importantly, they can also be considered for the production of novel graded macro-/meso-/microporous membrane systems, replacing the widely used but unstable mesoporous γ-Al2O3 membranes. At the end of this paper, we demonstrate that the synthetic methodology presented is also useful for producing membranes of other promising materials, including stabilized CeO2." @default.
- W2935302653 created "2019-04-11" @default.
- W2935302653 creator A5004261379 @default.
- W2935302653 creator A5058492413 @default.
- W2935302653 date "2019-08-01" @default.
- W2935302653 modified "2023-09-27" @default.
- W2935302653 title "Hydrothermally stable mesoporous ZrO2 membranes prepared by a facile nanoparticle deposition process" @default.
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- W2935302653 doi "https://doi.org/10.1016/j.seppur.2019.03.066" @default.
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