Produksi Ekstrak Bioaktif Untuk Aditif Pangan Dari Limbah Kulit Buah Naga: Pengaruh Metode Pre-Treatment Dan Ekstraksi

Dian Shofinita, Yazid Bindar, Arwinda Aprillia Jaelawijaya, Ardiyan Harimawan, Mifta Fawwaz
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引用次数: 3

Abstract

Dragon fruit is one of the tropical fruits can be grown in Indonesia. The skin of dragon fruit, which is accounted for 30-35% of the whole fruit usually thrown away as waste. This study aims to produce a bioactive extract from extraction of dragon fruit skin that is rich in phenolic and pigment compounds then it used as food additives. The variation that was used in this study includes the application of drying as pre-treatment of dragon fruit skin and the extraction methods (maceration and Soxhlet extraction). The obtained extracts were evaluated for the amount of total phenolic compounds and pigments (anthocyanin and betacyanin). Drying of dragon fruit skin was found to yield lower amounts of bioactive materials, which may occur due to the thermal degradation even though a low drying temperature was used. In addition, the maceration method was found to give a higher amount of bioactive materials compared with the Soxhlet method. The extraction with the highest yield of bioactive materials was obtained by the use of fresh dragon fruit skin and maceration for 240 minutes, which gave amounts of anthocyanin, betacyanin, and total phenolic compounds of  0.08, 0.04, dan 0.35 mg/g fresh dragon fruit skin, respectively.
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从龙果果皮废物中提取生物活性提取物:治疗前方法和提取的效果
火龙果是印尼可以种植的热带水果之一。火龙果的果皮占整个火龙果的30-35%,通常被当作废物扔掉。本研究旨在从火龙果皮中提取出富含酚类和色素化合物的生物活性提取物,并将其用作食品添加剂。在本研究中使用的变化包括干燥作为火龙果皮的前处理和提取方法(浸渍和索氏提取)。对得到的提取物进行总酚类化合物和色素(花青素和甜菜花青素)的含量评估。研究发现,干燥火龙果果皮产生的生物活性物质较少,这可能是由于热降解,即使使用较低的干燥温度。此外,与索氏法相比,浸渍法可以获得更多的生物活性物质。以新鲜火龙果皮为原料,浸泡240 min,得到的花青素含量为0.08 mg/g,甜菜花青素含量为0.04 mg/g,总酚类化合物含量为0.35 mg/g,生物活性物质提取率最高。
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