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用于农业应用的可生物降解碳基灰烬/玉米淀粉复合薄膜

Biodegradable Carbon-based Ashes/Maize Starch Composite Films for Agricultural Applications.

作者信息

Stasi Enrica, Giuri Antonella, Ferrari Francesca, Armenise Vincenza, Colella Silvia, Listorti Andrea, Rizzo Aurora, Ferraris Eleonora, Corcione Carola Esposito

机构信息

Dipartimento di Ingegneria dell'Innovazione, Università del Salento, 73100 Lecce, Italy.

Istituto di Nanotecnologia CNR-Nanotec c/o Campus Ecotekne, Via Monteroni, 73100 Lecce, Italy.

出版信息

Polymers (Basel). 2020 Mar 1;12(3):524. doi: 10.3390/polym12030524.

Abstract

The aim of this work is the development and characterization of biodegradable thermoplastic recycled carbon ashes/maize starch (TPAS) composite films for agricultural applications. A proper plasticizer, that is, glycerol, was added to a commercial maize starch in an amount of 35 wt.%. Carbon-based ashes were produced by the biomass pyro-gasification plant CMD ECO 20, starting from lignocellulosic wastes. The ashes were added to glycerol and maize native starch at different amounts ranging from 7 wt. % to 21 wt.%. The composite was mixed at 130 °C for 10 min and then molded. The effect of the different amounts of carbon based ashes on the thermal and physical-mechanical properties of the composite was assessed by using several techniques, such as rheology, wide- angle X-ray diffraction (WAXD), scanning electron microscopy (SEM), differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), moisture absorption, degradation and mechanical tests. The presence of the carbon waste ashes allows to improve thermal and durability performances of the thermoplastic starch (TPS) films. It reduces the water absorption of starch matrix and strongly decreases the deterioration of starch, independently from fillers amount, enhancing the lifetime of the TPS films in outdoor conditions. In addition, the waste carbon ashes/maize starch films present an advantage in comparison to those of neat starch; it can biodegrade, releasing the plant nutrients contained in the ashes into the soil. In conclusion, this approach for recycling carbon waste ashes increases the efficiency of industrial waste management, along with a reduction of its impact on the environment.

摘要

这项工作的目的是开发和表征用于农业应用的可生物降解热塑性再生碳灰/玉米淀粉(TPAS)复合薄膜。向商业玉米淀粉中添加适量的增塑剂甘油,添加量为35 wt.%。碳基灰分由生物质热解气化厂CMD ECO 20从木质纤维素废料中产生。将灰分以7 wt.%至21 wt.%的不同量添加到甘油和天然玉米淀粉中。复合材料在130°C下混合10分钟,然后成型。通过流变学、广角X射线衍射(WAXD)、扫描电子显微镜(SEM)、差示扫描量热法(DSC)、热重分析(TGA)、吸湿、降解和力学测试等多种技术评估不同量的碳基灰分对复合材料热性能和物理机械性能的影响。碳废料灰分的存在有助于改善热塑性淀粉(TPS)薄膜的热性能和耐久性。它降低了淀粉基质的吸水率,并强烈降低了淀粉变质,与填料量无关,延长了TPS薄膜在户外条件下使用寿命。此外,废碳灰/玉米淀粉薄膜与纯淀粉薄膜相比具有优势;它可以生物降解,将灰分中所含的植物养分释放到土壤中。总之,这种回收碳废料灰分的方法提高了工业废物管理效率,同时减少了其对环境的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07b4/7182920/3317af1cc2cc/polymers-12-00524-g001.jpg

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