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Bioplastic production using wood mill effluents as feedstock

机译:使用木厂废水作为原料的生物塑料生产

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摘要

Fibreboard production is one of the most important industrial activities in Galicia (Spain). Great amounts of wastewater are generated, with properties depending on the type of wood, treatment process, final product and water reusing, among others. These effluents are characterized by a high chemical oxygen demand, low pH and nutrients limitation. Although anaerobic digestion is one of the most suitable processes for the treatment, lately bioplastics production (mainly polyhydroxyalkanoates) from wastewaters with mixed cultures is being evaluated. Substrate requirements for these processes consist of high organic matter content and low nutrient concentration. Therefore, wood mill effluents could be a suitable feedstock. In this work, the possibility of producing bioplastics from to wood mill effluents is evaluated. First, wood mill effluent was converted to volatile fatty acids in an acidogenic reactor operated at two different hydraulic retention times of 1 and 1.5 d. The acidification percentage obtained was 37% and 42%, respectively. Then, aerobic batch assays were performed using fermented wood mill effluents obtained at different hydraulic retention times. Assays were developed using different cultures as inoculums. The maximum storage yield of 0.57 Cmmol/Cmmol was obtained when when the culture was enriched on a synthetic media.
机译:纤维板生产是加利西亚(西班牙)最重要的工业活动之一。产生大量废水,其性质取决于木材的类型,处理过程,最终产品和水的再利用等。这些废水的特点是化学需氧量高,pH值低和营养成分有限。尽管厌氧消化是最合适的处理方法之一,但目前正在评估混合培养废水中生物塑料的生产(主要是聚羟基链烷酸酯)。这些过程的底物要求包括高有机物含量和低营养物浓度。因此,木材厂废水可能是合适的原料。在这项工作中,评估了从木厂废水中生产生物塑料的可能性。首先,将木厂废水在产酸反应器中转化为挥发性脂肪酸,该产酸反应器在1和1.5 d的两种不同的水力停留时间下运行。获得的酸化百分比分别为37%和42%。然后,使用在不同水力停留时间获得的发酵木厂废水进行有氧分批测定。使用不同的培养物作为接种物进行了测定。当在合成培养基上富集培养物时,获得的最大储存产率为0.57 Cmmol / Cmmol。

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