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Production of the Polyhydroxyalkanoate PHBV from Ricotta Cheese Exhausted Whey by

机译:从乳清干酪奶酪筋疲力尽的乳清产生了聚羟基烷烷的PHBV

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摘要

In the last decade, the dairy industry underwent a rapid expansion due to the increasing demand of milk-based products, resulting in high quantity of wastewater, i.e., whey and ricotta cheese exhausted whey (RCEW). Although containing high content of nutritional compounds, dairy by-products are still disposed as waste rather being reintroduced in a new production chain, hence leading to environmental and economic issues. This study proposes a new biotechnological approach based on the combination of membrane filtration and fermentation to produce poly-hydroxyalkanoates (PHA), biodegradable bioplastics candidate as an alternative to petroleum-derived plastics. The protocol, exploiting the metabolic capability Haloferax mediterranei to synthesize PHA from RCEW carbon sources, was set up under laboratory and pilot scale conditions. A multi-step fractionation was used to recover a RCEW fraction containing 12.6% (w/v) of lactose, then subjected to an enzymatic treatment aimed at releasing glucose and galactose. Fermentation conditions (culture medium for the microorganism propagation, inoculum size, time, and temperature of incubation) were selected according to the maximization of polymer synthesis, under in-flasks experiments. The PHA production was then tested using a bioreactor system, under stable and monitored pH, temperature, and stirring conditions. The amount of the polymer recovered corresponded to 1.18 g/L. The differential scanning calorimetry (DSC) analysis revealed the poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) as the polymer synthesized, with a relatively high presence of hydroxyvalerate (HV). Identity and purity of the polymer were confirmed by attenuated total reflectance-Fourier transform infrared (ATR-FTIR) and X-ray photoelectron (XPS) spectroscopy analyses. By combining the fractionation of RCEW, one of the most abundant by-products from the agri-food industry, and the use of the halophile Hfx mediterranei, the production of PHBV with high purity and low crystallinity has successfully been optimized. The process, tested up to pilot scale conditions, may be further implemented (e.g., through fed-batch systems) and used for large-scale production of bioplastics, reducing the economical and environmental issues related the RCEW disposal.
机译:在过去的十年中,由于牛奶基产品的需求日益增加,乳制品行业经历了迅速的扩张,导致大量废水,即乳清和乳清干酪耗尽的乳清(RCEW)。虽然含有高含量的营养化合物,但乳制品副产品仍然被处理为废物,而是在新的生产链中重新引入,因此导致环境和经济问题。本研究提出了一种基于膜过滤和发酵组合的新型生物技术方法,以生产聚 - 羟基烷烃(PHA),可生物降解的生物塑料候选物作为石油衍生塑料的替代品。利用代谢能力Haloferax Mediterranei从RCEW碳源合成PHA的协议,在实验室和试验规模条件下建立。使用多步级分馏来回收含有12.6%(w / v)的乳糖的RCEw馏分,然后进行旨在释放葡萄糖和半乳糖的酶处理。根据聚合物合成的最大化,根据聚合物合成的最大化,根据聚合物合成的最大化来选择发酵条件(用于微生物繁殖的培养基,接种介质,时间和温度)。然后使用生物反应器系统进行测试,在稳定和监测pH,温度和搅拌条件下测试PHA产生。回收的聚合物的量相当于1.18g / L.差分扫描量热法(DSC)分析显示聚(3-羟基丁酸酯-CO-3-羟基戊烯)(PHBV)作为合成的聚合物,具有相对高的羟基戊戊烷(HV)。通过减弱的总反射率 - 傅里叶变换红外(ATR-FTIR)和X射线光电子(XPS)光谱分析来确认聚合物的同一性和纯度。通过组合RCEW的分馏,来自农业食品工业中最丰富的副产品之一,以及使用高纯度和低结晶度的PHBV的生产的使用已经成功地进行了优化。可以进一步实施(例如,通过FED批处理系统)进行试验规模条件的过程,并用于大规模生产的生物塑料,减少了与RCEW处置相关的经济和环境问题。

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