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A sustainable approach to enhance fruit shelf-life: Edible coating from pineapple fruit waste biomass

机译:一种可持续的果实保质期的可持续方法:菠萝水果废物生物质的食用涂层

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The quality and commercial value of fruits largely depend on color, texture, appearance, nutritional value, and other factors that cease the growth of the microbes causing food spoilage. Coating with suitable edible material would keep fruits fresh for a considerable time after their harvest till it reaches to the demanding consumers. The nonedible portions (peel, crown) of pineapple are identified as an inexpensive source for the production of such edible coating material. The present work is focused on the extraction and physicochemical analysis of cellulose prepared from waste bio-mass of pineapple fruit. Physicochemical characterization of the cellulose is performed using X-ray diffraction, Fourier-transform infrared spectroscopy and scanning electron microscopy. The extracted cellulose is converted to carboxymethyl cellulose and formulated as a coating film in conjugation with other suitable substances. The formulated coating is applied on banana fruit to check the performance of protection against the natural degradation of the fruit. FTIR analysis of the extracted cellulose has confirmed the removal of lignin and hemicelluloses molecules from the waste biomass of pineapple. X-ray diffraction analysis has shown the crystal size of extracted cellulose was 3.23 nm with 35.62% crystallinity. Degree of substitution (DS) is estimated 0.523 for carboxymethyl cellulose prepared from the extracted cellulose. Application of coating has shown the increment in shelf-life period of banana in comparison with control up to 8 days of storage at ambient condition. This study has demonstrated a sustainable process to transform waste biomass into carboxymethyl cellulose based coating for improving storage capacity of banana fruit.
机译:水果的质量和商业价值在很大程度上取决于颜色、质地、外观、营养价值和其他阻止导致食品变质的微生物生长的因素。在水果收获后,用合适的可食用材料涂膜可以在相当长的一段时间内保持新鲜,直到满足消费者的需求。菠萝的不可食用部分(果皮、果冠)被认为是生产这种可食用涂层材料的廉价来源。本论文主要研究菠萝果实废弃物中纤维素的提取和理化分析。利用X射线衍射、傅里叶变换红外光谱和扫描电子显微镜对纤维素进行了物理化学表征。提取的纤维素转化为羧甲基纤维素,并与其他合适的物质结合形成涂层。将配制好的涂料涂在香蕉果实上,以检查其对香蕉果实自然降解的保护性能。对提取的纤维素进行的FTIR分析证实,从菠萝废料中去除了木质素和半纤维素分子。X射线衍射分析表明,提取的纤维素结晶度为3.23nm,结晶度为35.62%。从提取的纤维素制备的羧甲基纤维素的取代度(DS)估计为0.523。涂层的应用表明,与对照相比,香蕉在环境条件下贮藏8天,保质期延长。本研究证明了一种将废弃生物质转化为羧甲基纤维素基涂层以提高香蕉果实贮藏能力的可持续过程。

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