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Engineering and functional properties of biodegradable pellets developed from various agro-industrial wastes using extrusion technology

机译:使用挤压技术从各种农业工业废料开发的可生物降解颗粒的工程和功能特性

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摘要

Different agro-industrial wastes were mixed with different plasticizers and extruded to form the pellets to be used further for development of biodegradable molded pots. Bulk density and macro-porosity are the important engineering properties used to determine the functional characteristics of the biodegradable pellets viz., expansion volume, water solubility, product colour, flowability and compactness. Significant differences in the functional properties of pellets with varying bulk densities (loose and tapped) and macro-porosities (loose, tapped) were observed. The observed mean bulk density of biodegradable pellets made from different formulations ranged between 0.213 and 0.560 g/ml for loose fill conditions and 0.248 to 0.604 g/ml for tapped fill conditions. Biodegradable pellets bear a good compaction for both loose and tapped fill methods. The mean macro-porosity of biodegradable pellets ranged between 1.19 and 54.48 % for loose fill condition and 0.29 to 53.35 % for tapped fill condition. Hausner ratio (HR) for biodegradable pellets varied from 1.026 to 1.328, indicating a good flowability of biodegradable pellets. Pearson’s correlation between engineering properties and functional properties of biodegradable pellets revealed that from engineering properties functional properties can be predicted.
机译:将不同的农业工业废料与不同的增塑剂混合,然后挤出制成颗粒,以进一步用于开发可生物降解的成型锅。堆积密度和大孔隙率是用于确定可生物降解的颗粒的功能特性的重要工程性质,即膨胀体积,水溶性,产品颜色,流动性和致密性。观察到具有不同的堆积密度(松散和分头)和大孔隙(松散,分头)的颗粒的功能特性存在显着差异。对于松散填充条件,观察到的由不同配方制成的可生物降解颗粒的平均堆积密度范围为0.213至0.560 g / ml,对于轻敲填充条件为0.248至0.604 g / ml。可生物降解的颗粒对于松散和轻敲填充方法均具有良好的压实性。对于松散填充条件,可生物降解颗粒的平均大孔隙率范围为1.19%至54.48%,对于轻拍填充条件为0.29%至53.35%。可生物降解颗粒的Hausner比(HR)为1.026至1.328,表明可生物降解颗粒具有良好的流动性。皮尔逊在工程性质和可生物降解颗粒的功能性质之间的相关性表明,从工程性质可以预测功能性质。

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