壳聚糖
小虾
化学
食品科学
制浆造纸工业
生物量(生态学)
乳酸
化学工程
生物化学
生物
渔业
农学
细菌
遗传学
工程类
作者
Trang Sĩ Trung,Pham Thi Phuong,Van Hoa Nguyen,Nguyen Hoai Thuong,Witoon Prinyawiwatkul,Huynh Nguyen Duy Bao,Nguyễn Văn Hòa
标识
DOI:10.1016/j.ijbiomac.2023.125337
摘要
Chitosan lactate (CSS) has been widely used for academic and industrial applications due to its biocompatibility, biodegradability, and high biological activity. Unlike chitosan, which is generally soluble only in acid solution, CSS can be directly used by dissolving in water. In this study, CSS was prepared from moulted shrimp chitosan at room temperature by a solid-state method. Chitosan was first swollen in a mixture of ethanol and water, making it more susceptible to reacting with lactic acid in the next step. As a result, the prepared CSS had a high solubility (over 99 %) and zeta potential (+ 99.3 mV) and was comparable to the commercial product. The preparation method of CSS is facile and efficient for a large-scale process. In addition, the prepared product exhibited a potential flocculant for harvesting Nannochloropsis sp., a marine microalga widely used as a popular food for larvae. In the best condition, the CSS solution (250 ppm) at pH 10 showed the highest recovery capacity (∼ 90 % after 120 min) for harvesting Nannochloropsis sp. Besides, the harvested microalgal biomass showed excellent regeneration after 6 culture days. This paper's findings suggest a circular economy in aquaculture by producing value-added products from solid wastes, which can minimize the environmental impact and move towards sustainable zero-waste.
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