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Environmental impact of peanut skin‐reinforced native starch foams modified by acetylation

机译:乙酰化改性的花生皮增强天然淀粉泡沫对环境的影响

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Abstract Starch foams are natural and biodegradable alternatives proposed as sustainable replacements to expanded polystyrene. Despite being recognized as eco‐friendly materials, environmental impacts associated with their production process remain poorly studied. Here, the cradle‐to‐gate life‐cycle assessment of four types of starch‐based foams (potato, cassava, corn, and sweet potato) reinforced with peanut skin was assessed and analyzed. Chemically modifying starch by acetylation may accelerate the degradation ratio and decrease its hydrophilicity, which is a common issue in packaging applications. Hence, two starch scenarios were evaluated, considering as‐prepared and acetylated starches. The environmental burden of starch foam production varied depending on the starch source due to the different agricultural and irrigation practices. By incorporating 10?wt of acetylated starch, the environmental impact drastically increased in most categories. Additionally, the sensitivity analysis carried out with different peanut skin contents showed a limited effect under 0–30?wt of peanut skin, suggesting that peanut production exhibits a similar environmental burden to most starches.
机译:摘要 淀粉泡沫是天然和可生物降解的替代品,可作为发泡聚苯乙烯的可持续替代品。尽管被公认为环保材料,但与其生产过程相关的环境影响研究仍然很少。在这里,评估和分析了用花生皮增强的四种淀粉基泡沫(马铃薯、木薯、玉米和红薯)的从摇篮到大门的生命周期评估。通过乙酰化对淀粉进行化学改性可能会加速降解率并降低其亲水性,这是包装应用中的常见问题。因此,评估了两种淀粉方案,考虑了制备淀粉和乙酰化淀粉。由于不同的农业和灌溉方法,淀粉泡沫生产的环境负担因淀粉来源而异。通过掺入10?wt%的乙酰化淀粉,大多数类别的环境影响急剧增加。此外,对不同花生皮含量进行的敏感性分析显示,在0-30?wt%的花生皮下效果有限,表明花生生产表现出与大多数淀粉相似的环境负担。

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