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基于小麦粉、尿素基低共熔增塑剂和咖啡渣的生物复合材料:制备、物理化学表征及其对植物生长影响的研究

Biocomposites Based on Wheat Flour with Urea-Based Eutectic Plasticizer and Spent Coffee Grounds: Preparation, Physicochemical Characterization, and Study of Their Influence on Plant Growth.

作者信息

Zdanowicz Magdalena, Rokosa Marta, Pieczykolan Magdalena, Antosik Adrian Krzysztof, Skórczewska Katarzyna

机构信息

Center of Bioimmobilisation and Innovative Packaging Materials, Faculty of Food Sciences and Fisheries, West Pomeranian University of Technology, Szczecin, Janickiego St. 35, 71-270 Szczecin, Poland.

Laboratory of Plant Physiology and Entomology, Department of Bioengineering, Faculty of Environmental Management and Agriculture, West Pomeranian University of Technology, Szczecin, Słowackiego St. 17, 70-953 Szczecin, Poland.

出版信息

Materials (Basel). 2024 Mar 6;17(5):1212. doi: 10.3390/ma17051212.

Abstract

In this study, we conducted the first plasticization of wheat flour (WF) with the addition of choline chloride:urea (1:5 molar ratio) eutectic mixture as a plasticizer and spent coffee grounds (cf) as a filler. Thermoplastic wheat flour (TPWF) films were obtained via twin-screw extrusion and then thermocompression. Their physicochemical characterization included mechanical tests, dynamic mechanical thermal analysis (DMTA), and sorption tests. XRD analysis revealed that the eutectic plasticizer led to a high degree of WF amorphization, which affected the physicochemical properties of TPWF. The results indicated that it was easy for the TPWF biocomposites to undergo thermocompression even with a high amount of the filler (20 pph per flour). The addition of the cf into TPWF led to an increase in tensile strength and a decrease in the swelling degree of the biocomposites. Biodegradation tests in soil revealed that the materials wholly degraded within 11 weeks. Moreover, a study of cultivated plants indicated that the biocomposites did not exhibit a toxic influence on the model rowing plant.

摘要

在本研究中,我们首次对小麦粉(WF)进行了塑化处理,添加了氯化胆碱:尿素(摩尔比1:5)低共熔混合物作为增塑剂,并添加了咖啡渣(cf)作为填料。通过双螺杆挤出然后热压得到热塑性小麦粉(TPWF)薄膜。其物理化学表征包括力学测试、动态热机械分析(DMTA)和吸附测试。X射线衍射分析表明,低共熔增塑剂导致WF高度非晶化,这影响了TPWF的物理化学性质。结果表明,即使含有大量填料(每面粉20 pph),TPWF生物复合材料也易于进行热压。向TPWF中添加cf导致生物复合材料的拉伸强度增加,溶胀度降低。土壤中的生物降解测试表明,材料在11周内完全降解。此外,对栽培植物的研究表明,生物复合材料对模式栽培植物没有毒性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74ff/10935203/29cb29a926a6/materials-17-01212-g001.jpg

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