Feasibility study of utilization of palm oil mill effluent (POME) as a source for microalgae nutrients

Rifqi Ahmad Baihaqi, Wahyu Dizky Pratama
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Abstract

As palm oil productivity increases, the waste produced will increase. Every palm oil industry produces liquid waste known as palm oil mill effluent (POME). POME contains very high BOD and COD so that it can inhibit microalgae growth. Therefore, comprehensive research is needed to find pre-treatment steps to reduce the COD and BOD content in POME before it is used as a medium for the growth and development of microalgae. The experimental mixture procedure carried out POME and microalgae according to the specified ratio. Research shows that Pond IV POME waste can be used as wild microalgae to grow, thereby reducing the BOD and COD levels of POME waste. Variable modifiers were applied to the volume of POME to the ratio of microalgae volume and the amount of nutrients provided. Microalgae growth with a ratio of 1:4 resulted in a decrease in BOD and COD to 61.66 ppm and 173.33 ppm from 110.6 ppm and 496.67 ppm. On the effect of providing C nutrition (120 ppm), resulted in lower BOD and COD at 65.33 ppm and 186.67 ppm, while the effect of providing N (40 ppm) nutrition resulted in lower BOD and reached 55.41 ppm and 158.33 ppm.
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利用棕榈油厂废水作为微藻营养物来源的可行性研究
随着棕榈油产量的提高,产生的废物也会增加。每个棕榈油工业都会产生被称为棕榈油厂废水(POME)的液体废物。POME含有很高的BOD和COD,可以抑制微藻的生长。因此,在将POME作为微藻生长发育的培养基之前,需要进行综合研究,找到降低POME中COD和BOD含量的预处理步骤。按照规定的比例进行POME和微藻的混合实验。研究表明,IV池POME废弃物可作为野生微藻生长,从而降低POME废弃物的BOD和COD水平。根据微藻体积的比例和提供的营养物质的数量,对POME的体积进行了可变的修改。微藻生长比例为1:4时,BOD和COD由110.6 ppm和496.67 ppm分别降至61.66 ppm和173.33 ppm。在提供C (120 ppm)营养的影响下,BOD降低,COD为65.33 ppm和186.67 ppm,而提供N (40 ppm)营养的影响下,BOD降低,达到55.41 ppm和158.33 ppm。
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