Comprehensive insight into surfactant modified-PBAT physico-chemical and biodegradability properties

生物降解 肺表面活性物质 润湿 材料科学 吸水率 化学工程 接触角 氢键 水解 复合材料 弹性模量 表面粗糙度 吸收(声学) 化学 有机化学 分子 工程类
作者
Paulo H. Camani,Alana G. Souza,Rennan F. S. Barbosa,Noelle C. Zanini,Daniella Regina Mulinari,Derval dos Santos Rosa
出处
期刊:Chemosphere [Elsevier]
卷期号:269: 128708-128708 被引量:40
标识
DOI:10.1016/j.chemosphere.2020.128708
摘要

This work aimed to prepare surfactant modified-PBAT (poly(butylene adipate-co-terephthalate)) sheets with superior properties to increase the PBAT applicability and be a possible solution for plastic disposal environmental problems. Three different surfactant contents (0, 1, 5, and 10 wt%) were investigated, and their effects on PBAT chemical structure, mechanical and morphological properties, wettability, and water absorption were investigated. Modified-PBAT samples showed high hydrogen bond coefficients (0.57) than the pristine PBAT (0.54), indicating an excellent electrostatic interaction between both components and the formation of a rigid hydrogen-bonded network, as confirmed by mechanical tests, where the elastic modulus values for PBAT and PBAT+10% surfactant were 44 and 60 MPa. SEM images and roughness measurements showed changes in PBAT morphology after surfactant addition, improving the roughness and wettability by the voids and polar groups presence, altering the water absorption (WA) behavior. The higher water affinity resulted in high water absorption for PBAT-10%S (17%) compared to the pristine PBAT (2%), which improves hydrolysis tendency, which is the initial step to biodegradation. Biodegradation results indicated that the roughness and WA behavior influenced the biodegradation rate, facilitating hydrolysis and microbial attack, and accelerating modified samples weight loss. Our results suggested developing a material with superior mechanical properties, mainly for PBAT-10%S, that can be applied in several applications, such as packaging and furniture. After discharge, it is not an environmental problem, being a biodegradable material with a green character.
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