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Biofouling and biodegradation of polyolefins in ocean waters

机译:海水中聚烯烃的生物淤积和生物降解

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High density polyethylene (HDPE), low density polyethylene (LDPE) and polypropylene (PP) coupons were immersed for a period of 6 months in Bay of Bengal near Chennai Port (Port) and Fisheries Survey of India (FSI). Samples were retrieved every month and the extent of biofouling and biodegradation were monitored by measuring biological and physicochemical parameters. Dissolved oxygen and oxidation reduction potential were higher at Port than at FSI. Total suspended solids and organic matter were more on PP followed by HDPE and LDPE indicating hydrophobic surfaces favour more biofouling. Pseudomonas sp., anaerobic, heterotrophic and iron-reducing bacteria were observed on polymer surface. Biofouling was found to depend on the season, loading being highest in the month of August. Chlorophyll was higher at FSI than at Port due to higher pollution levels and also being closer to the shores. Maximum weight loss was seen in LDPE (1.5-2.5), followed by that in HDPE (0.5-0.8) and finally in PP (0.5-0.6) samples deployed at Port in the six month time period. (C) 2007 Elsevier Ltd. All rights reserved.
机译:高密度聚乙烯 (HDPE)、低密度聚乙烯 (LDPE) 和聚丙烯 (PP) 试样在钦奈港 (Port) 附近的孟加拉湾和印度渔业调查局 (FSI) 浸泡了 6 个月。每个月取回样品,通过测量生物和物理化学参数来监测生物污损和生物降解的程度。Port 的溶解氧和氧化还原电位高于 FSI。总悬浮固体和有机物在PP上更多,其次是HDPE和LDPE,表明疏水表面更有利于生物污垢。在聚合物表面观察到假单胞菌属、厌氧菌、异养菌和还原铁菌。发现生物淤积取决于季节,8月份的负荷最高。FSI的叶绿素高于港口,因为污染水平较高,而且离海岸更近。LDPE的重量损失最大(1.5-2.5%),其次是HDPE(0.5-0.8%),最后是部署在港口的PP(0.5-0.6%)样品。(C) 2007 爱思唯尔有限公司保留所有权利。

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