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[Lead adsorption by Trametes gallica, Bacillus cereus, and their co-immobilized biomaterial].

Zhouping YangPing ChenZhenyu WangRong HuDe-Jun JingQ. Huang

2012PubMedEngineering被引 4

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摘要

Taking Trametes gallica mycelium pellets, Bacillus cereus, and their co-immobilized biomaterial as bio-adsorbents, this paper studied their Pb2+ adsorption under effects of different contact time, medium initial pH value and Pb2+ concentration, and bio-adsorbent concentration, and compared the infrared spectra of the bio-adsorbents before and after Pb2+ absorption. The Pb2+ adsorption efficiency of the bio-adsorbents was the highest when the bio-adsorbent concentration was 2 g x L(-1), initial pH was 5.0, initial Pb2+ concentration was 50 mg x L(-1), and contact time was 1 h, with the Pb2+ biosorption rate being 71.7% for the mycelium pellets of T. gallica, 91.0% for B. cereus, and 96.9% for the co-immobilized biomaterial. The infrared spectra of the bio-adsorbents were mainly consisted of the absorption zones of protein, carbohydrates, and sulphur- and phosphors-based groups, suggesting that hydroxyl, carboxyl, and sulphur- and phosphate-based groups played important roles in the Pb2+ adsorption by the bio-adsorbents.

引用本文(GB/T 7714)

Zhouping Yang, Ping Chen, Zhenyu Wang, 等. [Lead adsorption by Trametes gallica, Bacillus cereus, and their co-immobilized biomaterial].[J]. PubMed, 2012.

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