Degradation of Polyethylene Using Bacteria from Waste Dump Sites in Obio/Akpor Local Government Area in Rivers State, Nigeria

Ezekwu Chizike, W. Olufunmilayo, C. Ugboma
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Abstract

All around the world today, different types of plastics are used for packaging materials, especially in form of low density polyethylene (LDPE). The aim of the study was to degrade polyethylene using bacteria from waste dump sites in Alakahia and Ogbogoro of Obio/ Apkor Local Government Area, Rivers State. Soil samples were randomly collected from Alakahia and Ogbogoro dump sites in Obio/Apkor Local Government Area, in Rivers state. Polyethylene degraders were determined using microscopy and weight loss methods. The total heterotrophic bacterial counts recorded were 3.03 x 106 CFU/g and 1.12 x 106 CFU/g for Ogbogoro and Alakahia samples. The total count of Pseudomonas recorded were 5.0 x 104 CFU/g and 4.9 x 104 CFU/g for Ogbogoro and Alakahia sample. There was no significant difference (P ≤ 0.05) within the counts of the samples. The bacteria isolated from the soil collected from the dumpsites were Bacillus sp, Klebsiella sp, Pseudomonas sp, Staphylococcus sp, Serratia sp, Escherichia coli, Shigella sp, Salmonella sp. The identified bacteria were Pseudomonas proteolytica NR025588.1, Pseudomonas aeruginosa CP0296051 and Bacillus circulans CP026031.1. From the result of the degradative ability by the individual microorganism using weight loss measurement, Pseudomonas aeruginosa CP0296051 showed a greater percentage of degradation of polyethylene of 5% to 27.03% (after 150 days) followed by Pseudomonas proteolytica NR025588.1 which recorded percentage degradation of 6.0% to 23.28% (after 150 days) while Bacillus circulans CP02603.1 recorded the least percentage of 5% to 19.9% (after 150 days). The result of degradative potential of the microbes in consortium set ups showed that the consortium of Pseudomonas aeruginosa CP0296051 and Bacillus circulans CP02603.1 (B8+B6) showed the highest degradation potential producing degradation percentage range of 8.7 to 46.80% after 150 days of the study and the least degradation potential of polyethylene was observed in Pseudomonas aeruginosa CP0296051 and Pseudomonas proteolytica NRO255SS.1 (B6+B3) with the percentage range of 5% to 27.03% after 150 days. From the study, Pseudomonas sp, Bacillus sp and their consortium showed higher potential to degrade low density polyethylene (LDPE) hence the prospect in remediation of polyethylene.
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利用细菌降解尼日利亚河流州奥比奥/阿克波尔地方政府地区垃圾场的聚乙烯
今天,在世界各地,不同类型的塑料被用于包装材料,特别是低密度聚乙烯(LDPE)。该研究的目的是利用来自河流州Obio/ Apkor地方政府区的Alakahia和Ogbogoro垃圾场的细菌降解聚乙烯。随机从河流州奥比奥/阿普科尔地方政府区的Alakahia和Ogbogoro垃圾场收集土壤样本。用显微镜和失重法测定聚乙烯降解物。Ogbogoro和Alakahia样本的异养细菌总数分别为3.03 × 106 CFU/g和1.12 × 106 CFU/g。Ogbogoro和Alakahia样品的假单胞菌总数分别为5.0 × 104 CFU/g和4.9 × 104 CFU/g。各样品间计数差异无统计学意义(P≤0.05)。从垃圾填埋场土壤中分离到的细菌有芽孢杆菌、克雷伯氏杆菌、假单胞菌、葡萄球菌、沙雷氏菌、大肠杆菌、志贺菌、沙门氏菌,其中鉴定出的细菌有溶蛋白假单胞菌NR025588.1、铜绿假单胞菌CP0296051和环状芽孢杆菌CP026031.1。从单个微生物的失重降解能力结果来看,铜绿假单胞菌CP0296051对聚乙烯的降解率最高,为5% ~ 27.03% (150 d),其次是水解蛋白假单胞菌NR025588.1,降解率为6.0% ~ 23.28% (150 d),循环芽孢杆菌CP02603.1的降解率最低,为5% ~ 19.9% (150 d)。结果表明,铜绿假单胞菌CP0296051和环状芽孢杆菌CP02603.1 (B8+B6)的降解潜力最大,150 d后降解率为8.7 ~ 46.80%,铜绿假单胞菌CP0296051和水解蛋白假单胞菌NRO255SS.1对聚乙烯的降解潜力最小(B6+B3), 150天后的百分比范围为5%至27.03%。从研究结果来看,假单胞菌、芽孢杆菌及其菌群对低密度聚乙烯(LDPE)具有较高的降解潜力,因此在聚乙烯修复中具有广阔的应用前景。
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