首页> 外文期刊>Polish Journal of Environmental Studies >Decolorizing Palm Oil Mill Effluent (POME) Using Plant Polysaccharide Degrading Microorganisms Isolated from Soil
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Decolorizing Palm Oil Mill Effluent (POME) Using Plant Polysaccharide Degrading Microorganisms Isolated from Soil

机译:使用植物多糖降解土壤中分离的微生物对棕榈油厂废水(POME)进行脱色

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摘要

The high color intensity of palm oil mill effluent (POME) is because of the presence of plant constituents and melanoidins produced during Maillard reactions. In this study, various plant polysaccharide degrading microorganisms were isolated from enriched soil and utilized for decolorizing POME. The soil was screened for starch, cellulose, xylan, and chitin degrading microorganisms by using specific media and agar plate screening techniques. Based on the results of scoring, seven isolates were selected and treated with POME collected in liquid form from the palm oil industry in Malaysia. Morphological examinations and Gram staining were done for characterization of the selected isolates. The best three isolates, which were shown their potential for decolorization in terms of percentage of POME, were identified (DE 9, 11, and 17). It was expressed as mean +/- SD. In a seven-day study period of POME with isolates, shaking in room temperature conditions provided maximum percentage of decolorization over that of static in 37 degrees C conditions. The maximum percentages of decolorization for DE 9, DE 11, and DE 17 were 35.1 +/- 1.26, 20 +/- 1.0, and 30 +/- 1.0 on days 6, 5, and 5, respectively. This study primarily focused on decolorizing POME using various plant polysaccharide degrading aerobic bacteria isolated from the soil as an economic method of bioremediation.
机译:棕榈油厂废液(POME)的高色强度是由于存在美拉德反应期间产生的植物成分和黑色素。在这项研究中,从丰富的土壤中分离出各种降解植物多糖的微生物,并将其用于对POME进行脱色。通过使用特定的培养基和琼脂平板筛选技术,筛选土壤中的淀粉,纤维素,木聚糖和几丁质降解微生物。根据评分结果,选择了7种分离株,并用从马来西亚棕榈油工业中以液体形式收集的POME处理。进行形态学检查和革兰氏染色以表征所选分离株。确定了最好的三个分离株,这些分离株以POME的百分比显示有脱色的潜力(DE 9、11和17)。它表示为平均值+/- SD。在带有分离物的POME的为期7天的研究期间,在室温条件下摇动可提供比在37摄氏度条件下静态脱色更大的脱色百分比。在第6、5和5天,DE 9,DE 11和DE 17的最大脱色百分比分别为35.1 +/- 1.26、20 +/- 1.0和30 +/- 1.0。这项研究主要集中在使用多种植物多糖降解从土壤中分离出来的好氧细菌来使POME脱色,这是一种经济的生物修复方法。

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