Search alternatives:
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
teer decrease » mean decrease (Expand Search)
significant decrease » significant increase (Expand Search), significantly increased (Expand Search)
greater decrease » greatest decrease (Expand Search), greater increase (Expand Search), greater disease (Expand Search)
teer decrease » mean decrease (Expand Search)
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4261
Dynamic Covalent Chemistry Enabled Closed-Loop Recycling of Thermally Modified Polymer Membrane
Published 2025“…Thermal and mechanical characterizations confirmed the great stability of the membranes, with the Diels–Alder reaction enabling depolymerization and reformation of the network without causing significant degradation. Additionally, the RFMs were recycled the third time, maintaining the fluxes (752 to 823 LMH) from the previous generation with a slight decrease in separation efficiency in dichloromethane-water emulsion separation (98.3 to 97%). …”
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4262
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4263
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4264
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4265
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4266
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4267
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4268
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4269
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4270
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4271
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4272
Mineral component content.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
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4273
Micro-parameters of the numerical model.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
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4274
Microcracks on the surface of the coal sample.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
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4275
Flowchart of the test.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
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4276
Distribution of thermal cracks.
Published 2024“…As the temperature increases, the proportion of tensile cracks decreases, while shear cracks become more prevalent. …”
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4277
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020).
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for DJF (December-February), MAM (March-May), JJA (June-August) and SON (September-November). …”
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4278
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020) for the two hemispheres.
Published 2025“…<p>Percentages (%) of increases or decreases (%) based on the Mann-Kendall test and statistically significance (<i>p</i> < 0.05) and non-significant (<i>p</i> > 0.05) values. …”
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4279
Seasonal spatial-temporal trend of NDVI in burned areas across Africa (2001–2020).
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for DJF (December-February), MAM (March-May), JJA (June-August), and SON (September-November). …”
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4280
Seasonal spatial-temporal trend of NDVI of burned forested areas in Africa (2001–2020) by countries and territories.
Published 2025“…<p>Areas with increasing (green) or decreasing (red) vegetation, based on the Mann-Kendall test and statistically significance values (<i>p</i> < 0.05) for December-February (DJF), March-May (MAM), June-August (JJA) and September-November (SON). …”