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Degradation of the Ferric Chelate of EDTA by a Pure Culture of an Agrobacterium sp

机译:农杆菌的纯培养降解EDTA的铁螯合物

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A pure culture of an Agrobacterium sp. (deposited as ATCC 55002) that mineralizes the ferric chelate of EDTA (ferric-EDTA) was isolated by selective enrichment from a treatment facility receiving industrial waste containing ferric-EDTA. The isolate grew on ferric-EDTA as the sole carbon source at concentrations exceeding 100 mM. As the degradation proceeded, carbon dioxide, ammonia, and an unidentified metabolite(s) were produced; the pH increased, and iron was precipitated from solution. The maximum rate of degradation observed with sodium ferric-EDTA as the substrate was 24 mM/day. At a substrate concentration of 35 mM, 90% of the substrate was degraded in 3 days and 70% of the associated chemical oxygen demand was removed from solution. Less than 15% of the carbon initially present was incorporated into the cell mass. Significant growth of this strain was not observed with uncomplexed EDTA as the sole carbon source at comparable concentrations; however, the ferric chelate of propylenediaminetetraacetic acid (ferric-PDTA) did support growth.
机译:农杆菌属的纯培养物。通过选择性浓缩从接收含有三价EDTA铁的工业废料的处理设施中分离出使EDTA的三价铁螯合物矿化的铁矿石(ATCC 55002)。分离株以EDTA铁为唯一碳源生长,浓度超过100 mM。随着降解的进行,会产生二氧化碳,氨气和未知的代谢产物。 pH升高,铁从溶液中沉淀出来。用铁-EDTA钠作为底物观察到的最大降解速率是24mM /天。在35 mM的底物浓度下,三天内90%的底物降解,并且从溶液中去除了70%的相关化学需氧量。最初存在的碳中不到15%被掺入到细胞团中。 EDTA作为可比浓度的唯一碳源,未观察到该菌株的显着生长。然而,丙二胺四乙酸的铁螯合物(铁-PDTA)确实支持了生长。

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