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CHARACTERIZATION OF MODIFIED ZEOLITE AS MICROBIAL IMMOBILIZATION MEDIA ON POME ANAEROBIC DIGESTION

机译:改性沸石作为微生物固定介质在睑值上的微生物厌氧消化的特征

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As the world's biggest palm oil producer, Indonesia generates also huge amount of Palm Oil Mill Effluent (POME) wastewater and causes serious problem in environment. In conventional method, POME was converted into biogas using lagoon system which required extensive land area. Anaerobic Fluidized Bed Reactor (AFBR) proposes more effective biogas producing with smaller land area. In the proposed system, a immobilization media would be main factor for enhancing productivity. This research studied on characterization of Lampung natural zeolite as immobilization media in the AFBR system for POME treatment. Various activation method such as physical and chemical were attempted to create more suitable material which has larger surface area, pore size distribution as well as excellent surface structures. The physical method was applied by heating up the material till 400°C while HC1 was used on the chemical activation. Based on the result, the chemical activation increased the surface area significantly into 71 m~2/g compared to physical as well as original zeolite. The strong acid material was quite effective to enforce the impurities within zeolite pore structure compared to heating up the material. According to distribution data, the Lampung zeolite owned the pore size with the range of 3 - 5 um which was mesopore material. The pore size was appropriate for immobilization media as it was smaller than size of biogas microbial. The XRD patterns verified that chemical activation could maintain the zeolite structure as the original. Obviously, the SEM photograph showed apparent structure and pore size on the modified zeolite using chemical method. The testing of modified zeolite on the batch system was done to evaluate the characterization process. The modified zeolite using chemical process resulted fast reduction of COD and stabilized the volatile fatty acid as the intermediate product of anaerobic digestion, especially in the beginning of the process. Therefore, the chemical activation process was most suitable to produce the immobilization media from Lampung natural zeolite for POME waste treatment
机译:作为世界上最大的棕榈油生产商,印度尼西亚也会产生大量的棕榈油磨流出物(圆顶)废水,并在环境中引起严重的问题。在传统方法中,使用泻湖系统转换为沼气系统,该系统需要广泛的土地面积。 Anaerobic流化床反应器(AFBR)提出了更有效的沼气,含有较小的土地面积。在拟议的系统中,固定介质将是提高生产力的主要因素。本研究研究了灯天然沸石作为泥质系统AFBR系统中的固定介质的表征。试图产生各种活化方法,例如物理和化学品,以产生具有更大的表面积,孔径分布以及优异的表面结构的更合适的材料。通过在化学活化上加热至400℃,通过加热材料来施加物理方法。基于结果,与物理和原始沸石相比,化学活化显着增加到71m〜2 / g。与加热材料相比,强酸材料非常有效地在沸石孔结构中强制实施杂质。根据分配数据,灯沸石拥有孔径,范围为3-5 um,含有缺陷的材料。孔径适合于固定介质,因为它小于沼气微生物的大小。 XRD图案验证了化学活化可以将沸石结构保持为原件。显然,使用化学方法,SEM照片在改性沸石上显示出明显的结构和孔径。进行了对批量系统进行修饰的沸石的测试以评估表征过程。使用化学过程的改性沸石导致COD的快速减少,稳定挥发性脂肪酸作为厌氧消化的中间产物,特别是在该过程的开始。因此,化学活化方法最适合于从灯泡天然沸石生产用于沼泽废物处理的固定培养基

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