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Węgrzyn Magdalena Rudnik Ewa Kamocka-Bronisz Renata Kukfisz Bożena 《Journal of Polymers and the Environment》2021,29(6):1808-1816
Journal of Polymers and the Environment - Biocomposites based on polyethylene from renewable resources derived from sugar cane as raw material were modified with phosphonium ionic liquids.... 相似文献
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Comparative Biodegradation in Soil Behaviour of two Biodegradable Polymers Based on Renewable Resources 总被引:2,自引:0,他引:2
This work presents the last phase of long-term experimental studies on the biodegradation in soil behaviour of polymers destined
for agricultural applications. The paper focuses on comparative studies between the biodegradation in soil behaviour of two
important biodegradable polymers based on renewable resources: poly(lactic acid) (PLA) versus polyhydroxyalkanoates (PHA).
Full-scale experiments were carried out during the period June 2008–January 2009. Different methods of exposure were applied
in the case of polyhydroxyalkanoates, simulating the agricultural biodegradable mulching films use and their fate in soil
after the end of their useful lifetime. The field results were compared with the results of biodegradation under controlled
laboratory conditions simulating biodegradation in soil, using soil from the experimental field. Further, the field results
were compared against the results of biodegradation under farm composting conditions. 相似文献
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Ewa Rudnik Maciej Pierzynka Piotr Handzlik 《Journal of Material Cycles and Waste Management》2016,18(2):318-328
The paper concerns a hydrometallurgical method for selective recovery of copper from low-grade electric and electronic wastes. The following consecutive stages were proposed: smelting of the scraps to produce Cu–Zn–Ag alloy, leaching of the alloy in ammoniacal solution, and selective copper electrowinning. Cu–Zn–Ag alloy was a polymetallic and five-phase system. It was leached in chloride, carbonate, sulfate and thiosulfate solutions. This resulted in the separation of the metals, wherein metallic tin and silver as well as lead salts remained in the slimes, while copper and zinc were transferred to the electrolyte. Copper was selectively recovered from the ammoniacal solutions by the electrolysis, leaving zinc ions in the electrolyte. The best conditions of the alloy treatment were obtained in the ammonia–carbonate system, where the final product was copper of high purity (99.9 %) at the current efficiency of 60 %. Thiosulfate solution was not applicable for the leaching of the copper alloy due to secondary reactions of the formation of copper(I) thiosulfate complexes and precipitation of copper(I) sulfide, both inhibiting dissolution of the metallic material. 相似文献
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The aim of the work was to study the biodegradation process of biocomposites prepared from renewable resources and the ecotoxicological assessment of their biodegradation products. Biocomposites from modified starch reinforced with various cellulose fibers were prepared by the extrusion process. Biodegradation studies were carried out according to the ISO respirometic method. Ecotoxicity of biodegradation products was assessed by the luminescent bacteria test. It was found that biodegradation of biocomposites was above 60% within 24 days according to the results of respirometric test. Increase in the amount of natural fiber reinforcement, as well as smaller fiber size increased the biodegradability of biocomposites. On the basis of the preliminary results of the ecotoxicological test using luminescent bacteria it seems that the biodegradation products of the biocomposites studied are ecologically safe. 相似文献
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