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Removal of lead from contaminated water bodies using sea nodule as an adsorbent

机译:使用海结核作为吸附剂去除受污染水体中的铅

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Adsorption of water soluble lead on polymetallic sea nodule has been studied in detail. Complete decontamination of lead is possible by appropriate sea nodule dosing. Adsorption is also dependent on pH and best adsorption is achieved at pH 6. Beyond pH 6, the desorption of lead from sea nodule surface is practically zero. Residual metal concentrations in the filtrate after adsorption is negligible. Both Freundlich and Langmuir isotherms may reasonably explain adsorption of lead on sea nodule. Chemically bound moisture plays a very crucial role in lead adsorption. Lead adsorptive capability of sea nodule is practically destroyed when calcined at a temperature of 900℃. Lead loading capacity of sea nodule has been estimated at 440 mg of lead per gram of sea nodule. The performance of sea nodule as a lead adsorbent has been successfully tested over six simulated lead contaminated water systems. Lead loading capacity of sea nodule compares favorably with other adsorbents like activated carbon, ion exchange resin, anionic clay, granulated blast furnace slag and natural and treated zeolites.
机译:已经详细研究了水溶性铅在多金属海结核上的吸附。通过适当的海结核剂量,可以完全清除铅。吸附还取决于pH值,并且在pH 6时可获得最佳吸附。超过pH 6时,铅从海结节表面的解吸实际上为零。吸附后滤液中残留的金属浓度可以忽略不计。 Freundlich和Langmuir等温线都可以合理地解释铅在海结节上的吸附。化学结合的水分在铅吸附中起着至关重要的作用。在900℃的温度下煅烧,实际上会破坏海结核的铅吸附能力。海结核的铅负载量估计为每克海结核440毫克铅。海洋结节作为铅吸附剂的性能已经在六个模拟的铅污染水系统上成功进行了测试。海结核的铅负载量与其他吸附剂如活性炭,离子交换树脂,阴离子粘土,高炉矿渣和天然和处理过的沸石相比具有优势。

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