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首页> 外文期刊>International Biodeterioration & Biodegradation >PAH removal by immobilized bacterial cells-support systems using low-cost culture media for biomass production
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PAH removal by immobilized bacterial cells-support systems using low-cost culture media for biomass production

机译:PAH通过固定化的细菌细胞 - 支持系统使用低成本培养基进行生物质生产

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摘要

The use of immobilized biomass for polycyclic aromatic hydrocarbon (PAH) removal from a liquid phase is a very promising technology. For this technology to be economically viable, the biomass production and immobilization should be as cost-effective as possible. The aim of this work was to produce a low-cost PAH removal system consisting of an immobilized biomass on different supports. A co-culture formed by two PAH-degrading bacteria (Pseudomonas monteilii P26 and Gordonia sp. H19, autochthonous Patagonian strains) was used. Industrial by-products such as sugar cane molasses, corn steep liquor, whey permeate and crude glycerol were used in combination to formulate different low-cost growth media. Naphthalene, phenanthrene and pyrene removal was evaluated using immobilized bacteria in polyurethane foam cubes, in sand and in calcium alginate beads. The growth of P. monteilii P26 and Gordonia sp. H19 was satisfactory in the different media assayed. The culture medium containing 1% corn steep liquor-2% molasses was selected for biomass production for subsequent immobilization. The removal of PAHs in different immobilization systems could be attributed to both the supports and the bacteria (up to 88.9% pyrene removal in 12 days); thus, immobilized cell systems for removing PAHs from an aqueous phase are proposed. (C) 2017 Elsevier Ltd. All rights reserved.
机译:从液相中除去多环芳烃(PAH)的固定化生物质是非常有前途的技术。对于这种技术在经济上可行,生物质生产和固定应尽可能成本效益。这项工作的目的是生产由不同支撑件上的固定化生物质组成的低成本PAH去除系统。使用两种PAH降解细菌(Pseudomonas Monteilii P26和Gordonia Sp.H19,自身加载的巴塔哥哥菌株)形成的共培养物。使用甘蔗糖蜜,玉米陡液,乳清液和粗甘油等工业副产物用于配制不同的低成本生长培养基。使用固定的细菌在聚氨酯泡沫块,沙子和藻酸钙珠粒中评价萘,菲和芘去除。 P. Monteilii P26和Gordonia sp的生长。 H19在不同培养基中令人满意。选择含有1%玉米陡液-2%糖蜜的培养基用于生物质生产以供随后的固定化。在不同的固定体系中除去PAHS可以归因于支撑件和细菌(12天内高达88.9%的芘除去);因此,提出了用于从水相中除去PAHs的固定化细胞系统。 (c)2017 Elsevier Ltd.保留所有权利。

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