The Experts below are selected from a list of 39825 Experts worldwide ranked by ideXlab platform
Suchart Siengchin - One of the best experts on this subject based on the ideXlab platform.
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accelerated weathering and soil burial effect on Biodegradability colour and textureof coir pineapple leaf fibres pla biocomposites
Polymers, 2020Co-Authors: Ramengmawii Siakeng, Mohammad Jawaid, Mohammad Asim, Suchart SiengchinAbstract:Accelerated weathering and soil burial tests on biocomposites of various ratios of coir (CF)/pineapple leaf fibres (PALF) with polylactic acid (PLA) were conducted to study the Biodegradability, colour, and texture properties as compared with PLA.The Biodegradability of a lignocellulosic composite largely depends on its polymer matrix, and the rate of biodegradation depends on many environmental factors such as moisture, light(radiation), temperature and microbes. Biodegradation was evaluated by soil burial and accelerated weathering tests. Changes in physical and morphological properties were observed in the biocomposites after weathering. These results allowed us to conclude that untreated CF/PALF/PLA biocomposites would be a more favourable choice owing to their better Biodegradability and are suitable for the suggested biodegradable food packaging applications.
Ramengmawii Siakeng - One of the best experts on this subject based on the ideXlab platform.
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accelerated weathering and soil burial effect on Biodegradability colour and textureof coir pineapple leaf fibres pla biocomposites
Polymers, 2020Co-Authors: Ramengmawii Siakeng, Mohammad Jawaid, Mohammad Asim, Suchart SiengchinAbstract:Accelerated weathering and soil burial tests on biocomposites of various ratios of coir (CF)/pineapple leaf fibres (PALF) with polylactic acid (PLA) were conducted to study the Biodegradability, colour, and texture properties as compared with PLA.The Biodegradability of a lignocellulosic composite largely depends on its polymer matrix, and the rate of biodegradation depends on many environmental factors such as moisture, light(radiation), temperature and microbes. Biodegradation was evaluated by soil burial and accelerated weathering tests. Changes in physical and morphological properties were observed in the biocomposites after weathering. These results allowed us to conclude that untreated CF/PALF/PLA biocomposites would be a more favourable choice owing to their better Biodegradability and are suitable for the suggested biodegradable food packaging applications.
Mohammad Asim - One of the best experts on this subject based on the ideXlab platform.
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accelerated weathering and soil burial effect on Biodegradability colour and textureof coir pineapple leaf fibres pla biocomposites
Polymers, 2020Co-Authors: Ramengmawii Siakeng, Mohammad Jawaid, Mohammad Asim, Suchart SiengchinAbstract:Accelerated weathering and soil burial tests on biocomposites of various ratios of coir (CF)/pineapple leaf fibres (PALF) with polylactic acid (PLA) were conducted to study the Biodegradability, colour, and texture properties as compared with PLA.The Biodegradability of a lignocellulosic composite largely depends on its polymer matrix, and the rate of biodegradation depends on many environmental factors such as moisture, light(radiation), temperature and microbes. Biodegradation was evaluated by soil burial and accelerated weathering tests. Changes in physical and morphological properties were observed in the biocomposites after weathering. These results allowed us to conclude that untreated CF/PALF/PLA biocomposites would be a more favourable choice owing to their better Biodegradability and are suitable for the suggested biodegradable food packaging applications.
Mohammad Jawaid - One of the best experts on this subject based on the ideXlab platform.
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accelerated weathering and soil burial effect on Biodegradability colour and textureof coir pineapple leaf fibres pla biocomposites
Polymers, 2020Co-Authors: Ramengmawii Siakeng, Mohammad Jawaid, Mohammad Asim, Suchart SiengchinAbstract:Accelerated weathering and soil burial tests on biocomposites of various ratios of coir (CF)/pineapple leaf fibres (PALF) with polylactic acid (PLA) were conducted to study the Biodegradability, colour, and texture properties as compared with PLA.The Biodegradability of a lignocellulosic composite largely depends on its polymer matrix, and the rate of biodegradation depends on many environmental factors such as moisture, light(radiation), temperature and microbes. Biodegradation was evaluated by soil burial and accelerated weathering tests. Changes in physical and morphological properties were observed in the biocomposites after weathering. These results allowed us to conclude that untreated CF/PALF/PLA biocomposites would be a more favourable choice owing to their better Biodegradability and are suitable for the suggested biodegradable food packaging applications.
J B Van Lier - One of the best experts on this subject based on the ideXlab platform.
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effects of thermo chemical pre treatment on anaerobic Biodegradability and hydrolysis of lignocellulosic biomass
Bioresource Technology, 2009Co-Authors: Tânia V Fernandes, G Zeeman, Johan P M Sanders, J B Van LierAbstract:The effects of different thermo-chemical pre-treatment methods were determined on the Biodegradability and hydrolysis rate of lignocellulosic biomass. Three plant species, hay, straw and bracken were thermo-chemically pre-treated with calcium hydroxide, ammonium carbonate and maleic acid. After pre-treatment, the plant material was anaerobically digested in batch bottles under mesophilic conditions for 40 days. From the pre-treatment and subsequent anaerobic digestion experiments, it was concluded that when the lignin content of the plant material is high, thermo-chemical pre-treatments have a positive effect on the Biodegradability of the substrate. Calcium hydroxide pre-treatment improves the Biodegradability of lignocellulosic biomass, especially for high lignin content substrates, like bracken. Maleic acid generates the highest percentage of dissolved COD during pre-treatment. Ammonium pre-treatment only showed a clear effect on Biodegradability for straw.