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首页> 外文期刊>Journal of Cleaner Production >Potential utilization of fish waste for the sustainable production of microalgae rich in renewable protein and phycocyanin-Arthrospira platensis/Spirulina
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Potential utilization of fish waste for the sustainable production of microalgae rich in renewable protein and phycocyanin-Arthrospira platensis/Spirulina

机译:用于可再生蛋白质和植物蛋白 - arthrospira platensis / spirulina的微藻富含药物废物的潜在利用

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The fish processing industry generates the solid biological waste (head, trimmings, skin, viscera, scale, bone etc) based on the processing methods, which poses a serious effect on the environment. Fish waste is valorized by various treatment methods which are costly and generate the effluents with high organic load. The objective of the present study was to utilize the fish waste in the form of fish protein hydrolysate (FPH) as an organic nitrogen source for the cultivation of Spirulina instead of inorganic nitrogen. Since the inorganic nitrogen in the algal cultivation accounts for high costs and energy, in addition to the continuous discharge of unspent inorganic nitrogen causing severe environmental problems. The proposed organic nutrient could be a sustainable and environment friendly solution from both the perspective of fish waste valorization and Spirulina cultivation. The proximate and amino acid composition of FPH derived from fish waste were characterized. Inorganic nitrogen (sodium nitrate) in the conventional medium was replaced with different concentrations of FPH varying from 0.1 to 1% (v/v). The effect of various concentrations of FPH on the growth, biomass productivity, biochemical composition and pigments of Spirulina were investigated. FPH concentration of 0.5% enhanced dry cell weight (DCW), biomass productivity (Pb), protein, and phycocyanin content by 34%, 39% and 15% and 98% respectively, compared to the conventional Zarrouk medium (control). Increase in the FPH concentration decreased the in vitro digestibility of the protein. The carbohydrate content and theoretical ethanol production were 5 times higher in the 0.1% FPH concentration than that of control. Results showed that the fish waste in the form of FPH could be a potential organic nitrogen for the cultivation of Spirulina with high quality pigment. Finally, a preliminary sustainability assessment has been made to analyze the bioeconomy of the process. (C) 2021 Elsevier Ltd. All rights reserved.
机译:鱼类加工行业基于加工方法产生固体生物废物(头部,饰型,皮肤,内脏,骨骼等),这对环境产生了严重影响。通过各种处理方法储存鱼类废物,其昂贵并产生具有高有机载荷的流出物。本研究的目的是利用鱼蛋白水解产物(FPH)形式的鱼类废物作为螺旋藻代替无机氮的有机氮源。由于藻类栽培中的无机氮来占高成本和能量,除了连续的无机氮气引起严重的环境问题。拟议的有机营养素可以是来自鱼类废物储存和螺旋藻栽培的视角的可持续和环境友好的解决方案。表征了来自鱼类废物的FPH的近似和氨基酸组成。将常规培养基中的无机氮(硝酸钠)用不同浓度的FPH替换为0.1至1%(v / v)。研究了各种浓度FPH对螺旋藻生长,生物质生产率,生化组合物和颜料的影响。与传统的Zarrouk培养基(对照)相比,FPH浓度为0.5%增强的干细胞重量(DCW),生物质生产率(Pb),蛋白质和植物生产率(Pb),蛋白质和植物蛋白含量,分别为34%,39%和15%和98%。 FPH浓度的增加降低了蛋白质的体外消化率。碳水化合物含量和理论乙醇产量为0.1%FPH浓度比对照的0.1%的5倍。结果表明,FPH形式的鱼类废物可以是具有高品质色素的螺旋藻的潜在有机氮。最后,已经进行了初步的可持续性评估来分析过程的生物经济。 (c)2021 elestvier有限公司保留所有权利。

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