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Effectiveness of Combined Activated Allophane and Effective Microorganisms Attached Bioball to Reduce Phenol Concentration in Water

机译:联合活性苯胺苯甲烷和有效微生物附着生物平面的有效性,降低水中的苯酚浓度

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Phenol is a hazardous substance and should be reduced to 1 ppm to meet the quality standard of the Indonesia Ministry of Environment No 5 of 2014. This study aims to design an effective, acceptable to community and low cost technique for phenol reduction. The model design combines two techniques consisting of adsorption by activated allophane and biosorption by commercial type 4 Effective Microorganisms (EM4) on bioball media. The natural allophane clay is abundantly and freely available in Lawu volcano soils, Central Java, Indonesia. Allophane is activated using NaOH to increase adsorption capacity and molded to a tube form. The EM4 is capable of biodegrading phenol as containing photosynthesis bacteria, Lactobacillus sp., Actinomycetes sp., Streptomycetes sp., fermentation fungus and yeast. The EM4 is seeded and attached to bioball media and contained into the allophane tube. This combination is supposed to be effective in reducing phenol level. Four kinds of model solutions were prepared, each consisted of 3 ppm, 4 ppm, 5 ppm and 6 ppm phenol in aquadest. Each of 10 liter model solution was contained into a different bioreactor and operated in an aerobic environment using batch method. All bioreactors are set for 0, 6, 12, 18, 24 hours at 28°C, 32°C, 37°C and 46°C. The examination of phenol levels were done according to Indonesia National Standard Procedure (SNI) No. 06-6989.21-2004. The optimum result showed a decrease of 80.6% from 3.993 ppm to 0.772 ppm phenol at 28°C and 24 hour contact time. To understand the overall combination process, analysis of Langmuir and Freundlich isotherms was consulted. As Langmuir isotherm with determination coefficient (R~2) of 0.9845 and constant (c) of 1,7199 was more compatible than Freundlich isotherm, the chemical reaction of the combination technique was dominant over physical process.
机译:苯酚是一种危险物质,应降至1 ppm,以满足印度尼西亚环境部的质量标准2014年。本研究旨在设计有效,可接受的群落和低成本的苯酚减少。模型设计结合了两种技术,通过在生物媒体上通过商业型活化的苯胺和生物吸附和生物吸附组成的两种技术(EM4)。天然雄酮粘土在印度尼西亚中部爪哇省的乌武火山土壤中大量和自由地提供。使用NaOH激活所有硫酮,以增加吸附容量并模塑成管形式。 EM4能够生物降解酚,含有光合作用细菌,Lactobacillus Sp。,放线菌,sp。,streptomycetes sp。,发酵真菌和酵母。将EM4接种并连接到生物培养基中并包含在苯胺烷管中。这种组合应该有效减少苯酚水平。制备了四种模型溶液,各自包括3ppm,4ppm,5 ppm和6ppm的3ppm苯酚。将10升模型溶液中的每一个包含在不同的生物反应器中,并使用分批方法在有氧环境中操作。所有生物反应器在28°C,32°C,37°C和46°C时设置为0,6,12,18,24小时,设置为0,6,12,18,24小时。根据印度尼西亚国家标准程序(SNI)No.06-6989.21-2004进行酚类水平的检查。最佳结果显示在28℃和24小时接触时间为3.993ppm至0.772ppm酚的80.6%降低。要了解整体组合过程,请咨询Langmuir和Freundlich等温机构的分析。由于兰姆苏尔等温线的0.9845且恒定(c)的恒定(R〜2)比Freundlich等温线更相容,组合技术的化学反应在物理过程中显着。

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