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Combined chemical, physical and biological treatment using Chlorella vulgaris sp. on landfill leachate

机译:使用小球藻vulgaris sp组合化学,物理和生物学治疗。在垃圾填埋场渗滤液

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Nowadays, the high amount of waste generated by the world population represents a major environmental problem. Landfills still represent one of the main endpoints of the solid wastes disposal in most of the countries. The major problem associated with this is the landfill leachate production. Leachate treatment using microalgae has been reported in numerous studies and it is a very promising method. A key challenge is the sensitivity of microalgae to high contaminants in landfill leachate. This paper underlines the landfill leachate treatment using Chlorella vulgaris sp. with pre-treated landfill leachate by physico-chemical treatment. Current research is to explore a dual purpose method to treat the leachate by incorporating Chlorella vulgaris sp. culturing in 100% pre-treated landfill leachate. During pre-treatment, the leachate samples were undergone coagulation process by using aluminium ammonium sulphate 12-hydrate followed by modified filtration system. The chemical analysis such as Total Solids (TS), turbidity, pH, Chemical Oxygen Demand (COD), Biochemical Oxygen Demand (BOD), Total Organic Carbon (TOC), and heavy metal contents were analysed for landfill leachate samples before the treatment, after physico-chemical treatment, and after the combined physico-chemical-biological treatment using Chlorella vulgaris. The combined coagulation, filtration and microalgae treatments achieved removal efficiencies of more than 94% on turbidity, COD, BOD, TOC, and heavy metals. Effective contaminants removal efficiencies have been attained through the pre-treatment by coagulation and filtration. Microalgae managed to polish the pre-treated leachate to achieve the standard discharge limit according to DOE of Malaysia government. The lipids with broad carbon range of (C-21 to C-36) were identified in Chlorella vulgaris. The paper proves that the deteriorative impact of landfill leachate can be reduced successfully with combined treatment approaches.
机译:如今,世界人口产生的大量废物是主要的环境问题。垃圾填埋场仍然代表大多数国家的固体废物处理的主要终点之一。与此相关的主要问题是垃圾填埋场渗滤液生产。在许多研究中报道了使用微藻的渗滤液治疗,并且是一种非常有前途的方法。关键挑战是微藻对垃圾渗滤液中的微藻对高污染物的敏感性。本文利用小黄紫藤液强调垃圾填埋场渗滤液治疗。采用预处理的垃圾填埋场通过物理化学处理渗滤液。目前的研究是探讨通过掺入小黄紫外线SP来治疗渗滤液的双目的。在100%预处理的垃圾填埋场渗滤液中培养。在预处理期间,通过使用硫酸铝12-水合物随后通过改性过滤系统,通过硫酸铝进行渗透方法进行凝血过程。分析了总固体(TS),浊度,pH,化学需氧量(COD),生化需氧量(BOD),总有机碳(TOC)和重金属含量的化学分析,用于治疗前填埋渗滤液样品,在物理化学处理后,使用小球藻的物理化学 - 生物治疗后使用小球藻。结合凝血,过滤和微藻处理在浊度,鳕鱼,BOD,TOC和重金属上取得了超过94%的去除效率。通过凝血和过滤的预处理,通过预处理获得了有效的污染物去除效率。根据马来西亚政府的DOE,微藻凝血地抛光预处理的渗滤液以实现标准排放限制。具有宽碳范围(C-21至C-36)的脂质在小球藻中鉴定出来。本文证明,垃圾渗滤液的恶化局部可以成功减少组合治疗方法。

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