Iron Metal Ion Adsorption Capacity on Palm Oil Mill Effluent (POME) Using Montmorillonite Adsorbent

Maria Dayanti Mellanie, Tisna Harmawan, P. Wahyuningsih
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Abstract

Palm oil mill effluent (POME) is the most produced waste among other types of waste, which is around 60% in every 100% processing of fresh fruit bunches containing heavy metals, namely ferrous metal (Fe). Montmorillonite (MMT) is one of the best adsorbents used to reduce the concentration of Fe in POME. In addition, this mineral (MMT) also has a high cation fertilization capacity so that the space between layers of MMT is able to accommodate large amounts of cations and make MMT a unique material. In this review, the assurance of the mass variety of the MMT as adsorbent and the variety of the contact time on the adsorption capacity of Fe metal in POME was resolved utilizing a Atomic Absorption Spectrophotometer (AAS) and surface morphology analysis of MMT before and after adsorption using Scanning Electron Microscope (SEM). Based on the results of AAS analysis, the greater the mass of the adsorbent, the higher the amount of Fe adsorbed from the POME. Moreover, the longer the contact time between MMT and Fe, the higher the amount of Fe in the palm oil mill effluent adsorbed on the adsorbent surface. The best adsorption conditions occurred at an adsorbent mass of 8.5 g MMT in 50 mL adsorbate and a contact time of 5 hours with an adsorption capacity of 0.0383 mg/g. The results of the SEM showed the presence of empty spaces in the MMT before adsorption, in which after adsorption white granules occupies the empty spaces evenly on the surface of the MMT. The granules indicate the presence of Fe metals in the POME samples which are adsorbed on the MMT surface.
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蒙脱土吸附剂对棕榈油厂废液(POME)中铁金属离子的吸附性能
棕榈油厂废水(POME)是其他类型废物中产生最多的废物,在每100%加工含有重金属(即黑色金属(Fe))的新鲜水果串中,约有60%的废物。蒙脱土(MMT)是降低POME中铁浓度的最佳吸附剂之一。此外,这种矿物(MMT)还具有很高的阳离子施肥能力,因此MMT层之间的空间能够容纳大量的阳离子,使MMT成为一种独特的材料。本文利用原子吸收分光光度计(AAS)和扫描电子显微镜(SEM)分析了MMT吸附前后的表面形貌,分析了MMT作为吸附剂的质量变化和接触时间的变化对POME中Fe金属吸附量的影响。原子吸收光谱分析结果表明,吸附剂质量越大,POME吸附铁的量越大。此外,MMT与Fe接触时间越长,吸附在吸附剂表面的棕榈油废液中铁的含量越高。最佳吸附条件为吸附剂质量为8.5 g MMT / 50 mL,接触时间为5 h,吸附量为0.0383 mg/g。SEM结果表明,吸附前MMT表面存在空隙,吸附后白色颗粒均匀占据MMT表面的空隙。颗粒表明POME样品中存在铁金属,这些铁金属被吸附在MMT表面。
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