首页> 美国卫生研究院文献>Mycobiology >Heavy Metals Biosorption from Aqueous Solution by Endophytic Drechslera hawaiiensis of Morus alba L. Derived from Heavy Metals Habitats
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Heavy Metals Biosorption from Aqueous Solution by Endophytic Drechslera hawaiiensis of Morus alba L. Derived from Heavy Metals Habitats

机译:来源于重金属栖息地的桑属内生海藻Drechslera hawaiiensis对水溶液中重金属的生物吸附

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摘要

The ability of dead cells of endophytic Drechslera hawaiiensis of Morus alba L. grown in heavy metals habitats for bioremoval of cadmium (Cd2+), copper (Cu2+), and lead (Pb2+) in aqueous solution was evaluated under different conditions. Whereas the highest extent of Cd2+ and Cu2+ removal and uptake occurred at pH 8 as well as Pb2+ occurred at neutral pH (6–7) after equilibrium time 10 min. Initial concentration 30 mg/L of Cd2+ for 10 min contact time and 50 to 90 mg/L of Pb2+ and Cu2+ supported the highest biosorption after optimal contact time of 30 min achieved with biomass dose equal to 5 mg of dried died biomass of D. hawaiiensis. The maximum removal of Cd2+, Cu2+, and Pb2+ equal to 100%, 100%, and 99.6% with uptake capacity estimated to be 0.28, 2.33, and 9.63 mg/g from real industrial wastewater, respectively were achieved within 3 hr contact time at pH 7.0, 7.0, and 6.0, respectively by using the dead biomass of D. hawaiiensis compared to 94.7%, 98%, and 99.26% removal with uptake equal to 0.264, 2.3, and 9.58 mg/g of Cd2+, Cu2+, and Pb2+, respectively with the living cells of the strain under the same conditions. The biosorbent was analyzed by Fourier Transformer Infrared Spectroscopy (FT-IR) analysis to identify the various functional groups contributing in the sorption process. From FT-IR spectra analysis, hydroxyl and amides were the major functional groups contributed in biosorption process. It was concluded that endophytic D. hawaiiensis biomass can be used potentially as biosorbent for removing Cd2+, Cu2+, and Pb2+ in aqueous solutions.
机译:重金属生境中生长的桑树内生Drechslera hawaiiensis死细胞对镉(Cd 2 + ),铜(Cu 2 + ),在不同条件下对水溶液中的铅(Pb 2 + )进行了评价。而在pH 8时Cd 2 + 和Cu 2 + 去除和吸收的程度最高,在中性pH时Pb 2 + 发生(6–7)在平衡时间10分钟后。 Cd 2 + 初始浓度为30 mg / L,接触时间为10分钟; Pb 2 + 和Cu 2 + 最佳接触时间为30分钟(生物量剂量等于5 mg夏威夷死枝干死亡生物量),从而实现了最高的生物吸附。 Cd 2 + ,Cu 2 + 和Pb 2 + 的最大去除量分别为100%,100%和99.6%通过使用夏威夷D. hawaiensis的死生物量,在pH 7.0、7.0和6.0的3小时接触时间内,分别从真实的工业废水中分别获得了分别为0.28、2.33和9.63 mg / g的容量,而94.7%, Cd 2 + ,Cu 2 + 和Pb 2+的去除率分别为98%和99.26%,吸收量分别为0.264、2.3和9.58 mg / g 分别与菌株的活细胞在相同条件下。通过傅立叶变换红外光谱(FT-IR)分析来分析生物吸附剂,以鉴定有助于吸附过程的各种官能团。通过FT-IR光谱分析,羟基和酰胺是生物吸附过程中贡献的主要官能团。结论:内生的夏威夷D.生物质可以潜在地用作去除Cd 2 + ,Cu 2 + 和Pb 2 + 的生物吸附剂。在水溶液中。

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