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A Heavy Metal Biotrap for Wastewater Remediation Using Poly-gamma-Glutamic Acid

机译:聚γ-谷氨酸处理废水的重金属生物阱

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摘要

Poly-gamma-glutamic acid (gamma-PGA) obtained from Bacillus licheniformis ATCC 9945 was evaluated as a potential biosorbent material for use in the removal of heavy metals from aqueous solution.Copper (Cu~(2+)) was chosen as the model heavy metal used in these studies since it is extensively used by electroplating and other industries,has been the model for many other similar studies,and can be easily assayed through a number of convenient methods.Cu~(2+)-gamma-PGA binding parameters under varying conditions of pH,temperature,ionic strength,and in the presence of other heavy metal ions were determined for the purified biopolymer using a specially designed dialysis apparatus.Applying the Langmuir adsorption isotherm model showed that gamma-PGA had a copper capacity approaching 77.9 mg/g and a binding constant of 32 mg/L (0.5 mM) at pH 4.0 and 25 deg C.Cu~(2+)-gamma-PGA adsorption was relatively temperature independent between 7 and 40 deg C,while an increase in ionic strength led to a decrease in metal ion binding.Cd~(2+) and Zn~(2+) ions compete with Cu~(2+) for binding sites on the gamma-PGA biopolymer.Metal uptake by gamma-PGA was further tested using a tangential flow filtration apparatus in a diafiltration mode in which metal was continually processed through a dilute solution of gamma-PGA without allowing for equilibrium to be established.The circulating polymer solution was able to complex metal as well as successfully prevent passage of unbound copper ions present in solution through the membrane.Using 500 mL of a 0.2% gamma-PGA solution,up to 97% of a 50 mg/L copper sulfate solution processed at a flow rate of 115 mL/min was retained by the polymer.For a 10 mg/L solution of Cu~(2+) as copper sulfate,filtrate concentrations of Cu~(2+) never rose above 0.6 mg/L while processing 2.5 L of dilute copper sulfate.
机译:从地衣芽孢杆菌ATCC 9945获得的聚γ-谷氨酸(γ-PGA)被评估为潜在的从水溶液中去除重金属的生物吸附材料,并选择了铜(Cu〜(2+))作为模型这些研究中使用的重金属,因为它已被电镀和其他行业广泛使用,已经成为许多其他类似研究的模型,并且可以通过许多方便的方法轻松地进行测定。Cu〜(2 +)-γ-PGA结合使用专门设计的渗析设备,在不同的pH,温度,离子强度以及存在其他重金属离子的条件下,确定了纯化的生物聚合物的参数。应用Langmuir吸附等温线模型表明,γ-PGA的铜容量接近在pH 4.0和25摄氏度下,吸附量为77.9 mg / g,结合常数为32 mg / L(0.5 mM).Cu〜(2 +)-γ-PGA吸附在7至40摄氏度之间相对温度独立,而增加离子强度导致广告Cd〜(2+)和Zn〜(2+)离子与Cu〜(2+)竞争γ-PGA生物聚合物上的结合位点。使用切线法进一步测试了γ-PGA对金属的吸收渗滤模式下的流动过滤设备,其中金属通过γ-PGA的稀溶液连续处理而没有建立平衡。循环的聚合物溶液能够络合金属并成功地阻止存在的未结合的铜离子通过溶液通过膜。使用500 mL的0.2%γ-PGA溶液,最多保留97%的以115 mL / min的流速处理的50 mg / L硫酸铜溶液。对于10 mg / L的Cu〜(2+)溶液为硫酸铜,处理2.5 L的稀硫酸铜时,Cu〜(2+)的滤液浓度从未超过0.6 mg / L。

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