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Efficiency of Microalgae Chlamydomonas on the Removal of Pollutants from Palm Oil Mill Effluent (POME)

机译:微藻衣骨瘤的效率在棕榈油磨流出物中除去污染物(Pome)

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Malaysia is considered as a major palm oil producer in the world. Therefore, it is vital to utilize an environmentally friendly and inexpensive method to treat palm oil mill effluent (POME) in Malaysia. Nowadays, the use of microalgae to remove pollutants from POME has gained a lot of attention. The main objective of this research was to investigate the effect of POME as a nutrient on the microalgae growth and analyze the removal rate of pollution. In this study, a pure culture Chlamydomonas incerta was aseptically transferred to an Erlenmeyer flask containing POME. The effect of POME as a high nutritional substrate, different cultivation scales, carbon total nitrogen (C:TN) ratio, and the lipid productivity of microalgae C. incerta were assessed. C. incerta was grown at room temperature under continuous illumination with the intensity of ± 15 (μmol/m~2/s) for 28 days, followed by the measurement of chemical oxygen demand (COD) reduction at different substrate concentrations. The results of this study demonstrated that organic carbon was removed by C. incerta for the ratio of 100:7, 100:13, and 100:31 respectively within the second day of cultivation. Fast growth of microalgae was observed in organic and inorganic substrates for adoption within the second day of experiment. The optimum achievement rate of nutrient removal with C. incerta was about 67.35% of COD for 250 mg/L of POME concentrations in 28 days. The significance of mis study is regarding the introduction of a new microalgae strain with a high ability to remove nutrients from POME, which can contribute to the effort in finding an efficient and economic technology for improving our environment.
机译:马来西亚被认为是一个主要的棕榈油生产国。因此,至关重要的是要利用环境友好的和便宜的方法来治疗棕油厂废水(POME)在马来西亚。如今,利用微藻从波姆光去除污染物已经获得了很多的关注。这项研究的主要目的是调查波姆光作为对微藻生长的营养效果,并分析污染去除率。在这项研究中,纯培养衣未定无菌转移至锥形瓶中含有POME。 POME的作为高营养底物,不同栽培秤,碳总氮(C:TN)的效果比,以及微藻C.未定的脂质生产率进行了评估。 C.未定在室温下连续照明生长具有±15(微摩尔/米〜2 / s)的28天的强度,此后(COD)还原化学需氧量在不同底物浓度的测量。这项研究表明,有机碳是由C.未定为的100比除去的结果:7,100:13,和100 31分别培养的第二天内。在有机和无机基材观察到通过实验的第二日内微藻的快速增长。营养物去除用C.未定的最佳实现率约为为28天250毫克/升浓度POME的COD的67.35%。 MIS研究的意义就引入了一个新的微藻株与从波姆光去除营养物质的高能力,可在找到一个有效和经济的技术改善环境作出贡献的努力。

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