自合成乙酰化纳米纤维素和丁香(L.)Skeels (Fadel)水果提取物-含疏水性和智能薄膜鸡肉新鲜度监测

IF 2.8 Q2 FOOD SCIENCE & TECHNOLOGY
Rajendra Bahadur G. C, Ganesh Prasad Awasthi*, Miyeon Shin, Khagendra Prasad Bohara, Bhanu Bhakta Neupane, Susmita Dey Sadhu, Surya Kant Kalauni, Arjun Prasad Tiwari, Changho Yu* and Mahesh Kumar Joshi*, 
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引用次数: 0

摘要

以自合成的乙酰化纳米纤维素(ANC)和富含花青素的茴香(Syzygium cumini)为原料,研制了一种新型醋酸纤维素(CA)基智能食品包装薄膜。果皮(Fadel)提取物(FD)。将纳米纤维素乙酰化得到的ANC和萃取得到的粗FD均匀分散在CA基质中,采用浇铸法制备CAANC(10%)FD膜。ANC和FD显著提高了膜的疏水性、机械强度和土壤降解性。CAANC(10%)FD薄膜具有优越的TS(28.4±0.4 MPa),超过了高密度聚乙烯(HDPE, 15 MPa)。与纯HDPE相比,该薄膜在土壤中45天内失重17.231±3.703%,即使在土壤中埋藏4个月也没有失重。该薄膜在25±1°C和48±5% RH条件下可以有效地实时监测鸡肉的新鲜度。因此,CAANC(10%)FD薄膜可以成为传统塑料包装的可持续替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Self-Synthesized Acetylated Nanocellulose and Syzygium cumini (L.) Skeels (Fadel) Fruit Extract-Incorporated Hydrophobic and Intelligent Film for Chicken Meat Freshness Monitoring

Self-Synthesized Acetylated Nanocellulose and Syzygium cumini (L.) Skeels (Fadel) Fruit Extract-Incorporated Hydrophobic and Intelligent Film for Chicken Meat Freshness Monitoring

A novel cellulose acetate (CA)-based film was developed for intelligent food packaging by incorporating self-synthesized acetylated nanocellulose (ANC) and anthocyanin-rich Syzygium cumini (L.) Skeels (Fadel) fruit extract (FD). The ANC derived through nanocellulose acetylation and crude FD obtained via extraction was uniformly dispersed in a CA matrix and fabricated into a CAANC(10%)FD film using the casting method. The ANC and FD significantly enhanced the film’s hydrophobicity, mechanical strength, and soil degradability. The CAANC(10%)FD film exhibited a superior TS (28.4 ± 0.4 MPa), surpassing that of high-density polyethylene (HDPE, 15 MPa). The film showed a 17.231 ± 3.703% weight loss in soil within 45 days compared to pure HDPE, which demonstrated no weight loss even after burial in soil for 4 months. The film demonstrated efficient real-time freshness monitoring of chicken meat at 25 ± 1 °C and 48 ± 5% RH. Hence, the CAANC(10%)FD film can be a sustainable alternative to conventional plastic packaging.

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