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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Preventing biofilm development on DGT devices using metals and antibiotics
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Preventing biofilm development on DGT devices using metals and antibiotics

机译:防止使用金属和抗生素在DGT设备上形成生物膜

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摘要

The DGT technique has potential as a tool for monitoring reactive phosphorus in freshwater aquaculture effluents.Because those waters have high concentrations of suspended matter and nutrients,biofilms may form on the surface of the DGT devices.Those biofilms may hinder the movement of reactive phosphorus and hence interfere with the DGT measurements.We tested two antibiotics,glutaraldehyde and chloramphenicol,two metal-iodides,copper and silver and also two alternative filter types,nucleopore membrane and silver-based filters,to evaluate their respective potential to prevent the formation of algae.The treatment with silver iodide seems to affect the properties of the diffusive gel and changes the flux measurements of the DGT device.The DGT response observed using the copper iodide and chloramphenicol treatments was not significantly different from the control.Glutaraldehyde changed the macroproperties of the diffusive gel and interfered with the phosphorus detection using spectrophotometric determinations.The effect of the anti-biofilm treatments on the DGT measurements was independent of pH and ionic strength of the water.For the field deployment in fish farms,copper and silver were the best anti-biofilm agents.Copper prevented algal colonisation for 14-days post-deployment and the response was unaffected by the anti-biofilm agent throughout this period.Silver was even better and prevented biofilm formation up to a 21-days post-deployment.Conversely,chloramphenicol did not prevent algal colonisation for the 14-and 21-days deployments.However,for deployments longer than 14 days,it was difficult to obtain consistently good results for all of anti-biofilm agents tested,due to the high concentration of suspended matter in the freshwater effluents of the fish farms tested.This approach suggests a metal pre-treatment of the membrane filters is useful to prevent biofilm formation for DGT deployments aimed at P measurements.DGT deployments for metal measurements would likely require a different approach.
机译:DGT技术有潜力作为监测淡水养殖废水中活性磷的工具。由于这些水中的悬浮物和养分含量高,DGT设备表面可能会形成生物膜。这些生物膜可能会阻碍活性磷和磷的迁移。我们测试了两种抗生素,戊二醛和氯霉素,两种金属碘化物,铜和银,还测试了两种替代过滤器类型,核孔膜和银基过滤器,以评估它们各自防止藻类形成的潜力。碘化银处理似乎会影响扩散凝胶的性能并改变DGT装置的通量测量结果。碘化铜和氯霉素处理所观察到的DGT反应与对照无显着差异。戊二醛改变了DGT装置的宏观性能。扩散凝胶并干扰分光光度法检测磷抗生物膜处理对DGT测量的影响与水的pH值和离子强度无关。对于鱼类养殖场的现场部署而言,铜和银是最佳的抗生物膜剂。部署后14天,在整个期间内,抗生物膜剂均不影响其反应。在部署后21天内,银甚至更好,可防止生物膜形成。相反,氯霉素在14天内并未阻止藻类定植。 -和21天的部署时间。但是,对于超过14天的部署,由于所测试的养鱼场的淡水废水​​中悬浮物的浓度较高,因此所有测试的抗生物膜剂均难以获得始终如一的良好结果这种方法表明对膜过滤器进行金属预处理对于防止DGT用于P测量时的生物膜形成是有用的。几乎需要其他方法。

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