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首页> 外文期刊>Nova Biotechnologica et Chimica >Removal Of Contaminants From Aqueous Solutions Using Hop (Humulus Lupulus L.) Agricultural By-Products
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Removal Of Contaminants From Aqueous Solutions Using Hop (Humulus Lupulus L.) Agricultural By-Products

机译:利用蛇麻草(A. mul)农业副产品去除水溶液中的污染物

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Agricultural wastes can be used as an alternative to the existing sorbents for the removal of metals or synthetic dyes from contaminated liquids. In this work, the fine powdered biomass of the hop (Humulus lupulus L.) variety Osvald's clone 72 and variety Bohemie as a sorbent for the removal of Cd from aqueous solutions of CdCl2 spiked with radionuclide 109Cd and synthetic dyes thioflavine T (ThT) or methylene blue (MB) from single dye solutions under conditions of batch systems was used. The maximum sorption capacity Q = 264 μmol Cd/g (d.w.) was found in the case of the leaf biomass of hop (H. lupulus L.) variety Osvald's clone 72 at the initial concentration of CdCl2 10,000 μmol/dm3, whereby the sorption capacity decreased in the order Qleaves : Qstems : Qroots = 1.0 : 0.8 : 0.7. The sorbed amount of Cd was removed from the hop biomass with the following increasing desorption efficiency of the extraction reagents: deionised H2O 3 HCl ≤ 0.1 mol/dm3 EDTA-Na2. Similarly as in the case of Cd sorption, the kinetics of ThT and MB sorption by the leaf biomass of the hop (H. lupulus L.) variety Bohemie were also showed as two-phase processes. The maximum sorption of ThT approx. Q = 19 mg/g (d.w.) and MB approx. Q = 70 mg/g (d.w.) were found within the range of the initial values of pH 4 – 7. The sorption of both dyes by the leaf biomass from single dye solutions decreased with increasing biomass concentration and on the other hand increased with increasing the initial concentrations of ThT or MB. The process of ThT and MB sorption was better described by the Langmuir model than the Freundlich model of sorption isotherm. From the obtained values of Qmax, it was found that in the case of MB the dried leaf biomass showed more than 2-times higher sorption capacity (Qmax = 184 mg/g; d.w.) in comparison with the value predicted for ThT. Obtained results suggest that dried plant biomass of hop (H. lupulus L.) as agricultural by-products can be used as a potential sorbent for both types of studied contaminants.
机译:农业废料可以用作现有吸附剂的替代品,用于从受污染的液体中去除金属或合成染料。在这项工作中,啤酒花(Humulus lupulus L.)品种Osvald的克隆72和品种Bohemie的细粉状生物质作为吸附剂,用于从掺有放射性核素的CdCl 2 水溶液中去除Cd。使用了在间歇系统条件下从单一染料溶液中合成的> 109 Cd和合成染料硫黄素T(ThT)或亚甲基蓝(MB)。在啤酒花(H. lupulus L.)品种Osvald's克隆72的初始浓度为CdCl 2 的情况下,最大吸附量Q = 264μmolCd / g(dw)。 10,000μmol/ dm 3 ,吸附能力以Q leaves :Q stems :Q roots 的顺序降低= 1.0∶0.8∶0.7。啤酒花生物量中Cd的吸附量随着萃取试剂的解吸效率的提高而提高:去离子H 2 O 3 HCl≤0.1 mol / dm 3 EDTA-Na 2 。与Cd吸附相似,啤酒花(H. lupulus L.)品种Bohemie的叶片生物量对ThT和MB的吸附动力学也显示为两阶段过程。 ThT的最大吸附量约为Q = 19 mg / g(d.w。),MB约为Q = 70 mg / g(dw)在pH值4 – 7的初始值范围内。随着生物量浓度的增加,叶片生物量对两种染料的吸附量均随生物量浓度的增加而降低,另一方面,随着生物量浓度的增加而增加。 ThT或MB的初始浓度。 Langmuir模型比Freundlich模型吸附等温线更好地描述了ThT和MB吸附过程。从获得的Q max 值中发现,在MB情况下,干燥的叶片生物量显示出超过2倍的高吸附容量(Q max = 184 mg / g; dw)与ThT的预测值进行比较。获得的结果表明,啤酒花(H. lupulus L.)的干燥植物生物量作为农业副产品可以用作两种研究污染物的潜在吸附剂。

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