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Green Technology in Treating Aquaculture Wastewater

机译:绿色技术处理水产养殖废水

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Aquaculture contributes a large number of world food supplies which increases rapidly over these few years. Similarly, there is a huge development of aquaculture in Malaysia over the years. However, aquaculture activities generate wastewater with high in nutrients where developing a proper treatment system is crucial. An appropriate wastewater treatment is needed to reduce uncontrolled pollution and environmental impacts while sustaining the development of aquaculture industry. Hence, this study focuses on the implementation of green technology method namely physical and biological in treating aquaculture wastewater. Major effect of releasing wastewater that is rich in nutrients is mainly eutrophication. This problem could be mitigated utilizing microalgae whereby the nutrients used as feed for microalgae growth. However, excess nutrients will cause undesirable consequences such as algal blooms due to the rapid growth of microalgae. Therefore, harvesting microalgae after treating the wastewater helps in the prevention of this problem. Current microalgae harvesting technology depends on sophisticated and complex approaches such as hollow fiber filtration, chemical flocculants and centrifugation, which are deemed feasible if high value products were obtained. The potentiality of Moringa oleifera, filamentous fungus (Aspergillus niger), microalgae (Ankistrodesmus sp.), Biofloc Technology (BFT) and chitosan as bio-flocculant were investigated in harvesting microalgae, Chlorella sp.. This type of development in phytoremediation and phycoremediation with continuous bio-harvesting could promote the use of sustainable green technology for effective aquaculture wastewater treatment.
机译:水产养殖贡献了大量的世界粮食用品,在这几年内迅速增加。同样,多年来马来西亚的水产养殖巨大发展。然而,水产养殖活性产生具有高营养素的废水,其中开发适当的治疗系统至关重要。需要适当的废水处理,以减少不受控制的污染和环境影响,同时维持水产养殖业的发展。因此,本研究重点研究了绿色技术方法的实施,即物理和生物治疗水产养殖废水。富含营养成分的释放废水的主要效果主要是富营养化。可以利用微藻可以减轻该问题,其中用作微藻生长的饲料。然而,由于微藻的快速生长,过量的营养素会导致藻类盛开的不良后果。因此,在治疗废水后收获微藻有助于预防这个问题。目前的微藻收获技术取决于复杂和复杂的方法,如中空纤维过滤,化学絮凝剂和离心,这是可行的,如果获得高价值产物,则认为是可行的。在收获Microalgae,Collaella SP中,研究了Moringa Oleifera,微藻(Ankistrodesmus Sp.),生物氟虫技术(BFT)和壳聚糖作为生物絮凝剂的生物絮凝剂。这种类型的植物化和植物化持续生物收获可以促进使用可持续绿色技术进行有效水产养殖废水处理。

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