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Dyeing to Degrade: A Bioplastics Experiment for College and High School Classrooms

机译:染色降解:学院和高中教室的生物塑料实验

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摘要

A versatile experiment is described for the high school and college laboratory setting based on the synthesis of biobased polymers prepared from inexpensive, renewable, and nonhazardous chemicals. Combinations of readily available citric acid, glycerol, and tapioca root starch are used to prepare three polymeric materials with different observable physical properties. Simple qualitative comparisons of aqueous degradation rates can be made or a dye can be added for quantitative assessment. Food and Drug Administration (FDA) approved Yellow Dye No. 5 is selected as a dye stable to basic conditions and is added to each sample in the form of commercial food coloring. The dyed polymer samples are observed to degrade in an aqueous sodium hydroxide solution, releasing the dye. Both ultraviolet-visible spectroscopy and smartphone colorimetry are used to follow the increasing dye concentration, which is inversely correlated to polymer degradation. The collected data is suitable for analysis and graphing by students. Potential learning outcomes of the experiment include Le Chatelier's principle, types of intermolecular forces, hydrolysis, absorption spectroscopy, Beer's Law, rate determinations, and graphing. The experiment models green chemistry principles of design for safer chemicals, degradation, and use of renewable feedstocks. Paramount to the educational objectives of the curriculum are the societal connections to plastics that are accumulating in the environment and causing harm, as well as examples of successful advances in commercial bioplastics such as poly(lactide) (PLA).
机译:基于由廉价,可再生和非荒野化学品制备的生物化聚合物的合成,描述了高中和大学实验室设定的多功能实验。易于获得的柠檬酸,甘油和木薯根淀粉的组合用于制备具有不同观察物理性质的三种聚合物材料。可以制造简单的含水降解速率的定性比较,或者可以添加染料以进行定量评估。食品和药物管理(FDA)批准的黄色染料No.5被选择为染料稳定的碱性条件,并以商业食品着色的形式加入每个样品中。观察到染色的聚合物样品在氢氧化钠水溶液中降解,释放染料。紫外线可见光光谱和智能手机比色测量均用于遵循增加的染料浓度,这与聚合物降解相反。收集的数据适用于学生分析和图形。实验的潜在学习结果包括Le Chatelier的原理,分子间力类型,水解,吸收光谱,啤酒法,速率测定和图形。实验模型设计更安全的化学品,降解和可再生原料的设计设计的绿色化学原理。课程的教育目标至关重要是与在环境中积累的塑料的社会联系,并造成伤害,以及商业生物塑料等成功进步的例子,如聚(丙交酯)(PLA)。

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