Biofilms Production from Avocado Waste

Q4 Engineering Ingenieria y Universidad Pub Date : 2021-10-12 DOI:10.11144/javeriana.iued25.bpaw
H. Sánchez, Wilmer Ponce, B. Brito, W. Viera, R. Baquerizo, M. Riera
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Abstract

Objective: To obtain biofilms from starch and cellulose present in the avocado (Persea americana) peel and seed. Materials and methods: The starch characterization included humidity, gelatinization temperature, paste clarity, absorption index, solubility index, swelling power, amylose, amylopectin, amount, and starch yield. Five mixtures were made with 3 g of starch, 5 mL of 30 % NaOH (w/v), 3 g of cellulose, and different proportions for glycerin: 2 g; 2.5 g; 3 g; 3.5 g; 4 g, and PVA: 2 g, 3 g, 4 g, 5 g, and 6 g. Films were formed on acrylic plates, using the casting method. The bioplastic was characterized in terms of moisture, solubility in water, density, thickness, biodegradability, stress, deformation, and modulus of elasticity. Results and discusión: The addition of cellulose to the mixture does not contribute to film formation, unlike PVA which did. The film had the best physical appearance with a mixture of 2 g of glycerin and 6 g of PVA. The bioplastic characterization was 23.43 % humidity, 39.39 % for water solubility, 1.52 g/cm3 density, 0.58 mm thickness, 21.03 % weight loss for the biodegradability test, 1.53 MPa for tension, 21.25 % deformation, and 10,04 MPa for the modulus of elasticity. Conclusions: The bioplastic obtained did not show the resistance of traditional plastic. However, the results obtained serve as a starting point for the realization of other formulations, aimed at producing a bioplastic capable of competing with its synthetic relatives.
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利用鳄梨废弃物生产生物膜
目的:从鳄梨(Persea americana)果皮和种子中的淀粉和纤维素中获得生物膜。材料与方法:淀粉的表征包括湿度、糊化温度、糊状清晰度、吸收指数、溶解度指数、膨胀力、直链淀粉、支链淀粉、用量、淀粉得率。用3g淀粉、5ml 30% NaOH (w/v)、3g纤维素和不同比例的甘油配制成5种混合物:2g;2.5克;3 g;3.5克;4克,聚乙烯醇:2克,3克,4克,5克,6克。薄膜是用铸造法在丙烯酸板上形成的。生物塑料在水分、水中溶解度、密度、厚度、生物降解性、应力、变形和弹性模量方面进行了表征。结果和discusión:在混合物中加入纤维素不会形成薄膜,不像PVA那样。当2 g甘油和6 g聚乙烯醇混合时,膜的物理外观最佳。生物塑性表征为湿度23.43%,水溶性39.39%,密度1.52 g/cm3,厚度0.58 mm,生物降解试验失重21.03%,张力1.53 MPa,变形21.25%,弹性模量10.04 MPa。结论:制备的生物塑料不具有传统塑料的耐药性。然而,所获得的结果可以作为实现其他配方的起点,旨在生产能够与其合成亲戚竞争的生物塑料。
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来源期刊
Ingenieria y Universidad
Ingenieria y Universidad Engineering-Engineering (all)
CiteScore
0.80
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0.00%
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0
期刊介绍: Our journal''s main objective is to serve as a medium for the diffusion and divulgation of the articles and investigations in the engineering scientific and investigative fields. All the documents presented as result of an investigation will be received, as well as any review about engineering, this includes essays that might contribute to the academic and scientific discussion of any of the branches of engineering. Any contribution to the subject related to engineering development, ethics, values, or its relations with policies, culture, society and environmental fields are welcome. The publication frequency is semestral.
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