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(00967)Adsorptive Removal of Marbofloxacin from Milk using Activated Carbons

机译:(00967)使用活性碳从牛奶中吸附马巴氟沙星

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The present study aims to remove the residual marbofloxacin (MBX)from milk with activated carbons (ACs)in batch and flow systems to meet the maximum residue limits (MRLs, 0.075 μg mL~(-1)). Different types (granular and powder)and amounts of ACs were studied. In batch mode, 50 mg of commercial granular AC (CGAC)with 1083 m2 g~(-1)of BET specific surface area exhibited the superior adsorption performance for 20 mL of 1 μg Ml~(-1)MBX-spiked milk. 93.7% of removal efficiency (RE)and 0.063 μg mL~(-1)of MBX residue were achieved. In flow mode, 325 mL of 1 μg mL~(-1)MBX-spiked milk was efficiently purified through 500 mg CGAC in a glass column (1 cm ID)and 93.4% of RE and 0.066 μg mL~(-1)of MBX residue were attained at the end. The flow process can handle 1.6 times higher in volume than that in batch mode. In conclusion, antibiotics can be efficiently, economically and conveniently removed using ACs adsorption from milk, despite the presence of competition adsorption of impurities. The adsorption with flow mode paves the way for the removal of antibiotics in milk.
机译:本研究旨在通过分批和流动系统用活性碳(ACS)从牛奶中除去残留的马巴氟沙星(MBX),以满足最大残留物限制(MRL,0.075μgmL〜(-1))。研究了不同类型(粒状和粉末)和AC的量。在分批模式下,具有1083m 2 G〜(-1)的BET比表面积的50mg商业粒状AC(CGAC)表现出20ml1μgmL〜(-1)MBX掺入牛奶的优异吸附性能。实现了93.7%的去除效率(RE)和0.063μgmL〜(-1)的MBX残基。在流动模式下,325ml1μgmL〜(-1)MBX掺入乳通过500mg CGAc在玻璃塔(1cm ID)中有效纯化,93.4%的RE和0.066μgmL〜(-1)最终达到MBX残留物。流程过程可以处理比批量模式高的1.6倍。总之,尽管存在竞争吸附的杂质,但可以有效,经济和方便地使用来自牛奶的ACS吸附的抗生素。流动模式的吸附铺平了去除牛奶中抗生素的方式。

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