Bio-removal of Pb, Cu, and Ni from solutions as nano-carbonates using a plant-derived urease enzyme-urea mixture

被引:11
作者
Abdel-Gawwad, Hamdy A. [1 ]
Hussein, Hala. S. [2 ]
Mohammed, Mona S. [2 ]
机构
[1] Housing & Bldg Natl Res Ctr HBRC, Raw Bldg Mat & Proc Technol Res Inst, Cairo, Egypt
[2] Natl Res Ctr, Dept Chem Engn & Pilot Plant, Cairo, Egypt
关键词
Urea hydrolysis; Removal rate; Heavy metal concentration; Biocarbonation; Nanosheets; Geopolymeric coating; Sulfur-oxidizing bacteria; Atomic force microscopy; HEAVY-METAL REMOVAL; MECHANICAL-PROPERTIES; PHOSPHATE ADSORPTION; UREOLYTIC BACTERIA; AQUEOUS-SOLUTION; WASTE-WATER; RECOVERY; BIOREMEDIATION; BIOCHAR; MICROSTRUCTURE;
D O I
10.1007/s11356-020-09359-y
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study focuses on utilizing a plant-derived urease enzyme (PDUE)-urea mixture to remove heavy metals from water as constituents of nano-carbonate minerals. The bio-removal process was conducted by individually mixing PbCl2, CuCl2, and NiCl(2)solutions with a PDUE-urea mixture, followed by incubation for 24 h at 23 +/- 2 degrees C. The preliminary results revealed that the proposed method exhibited high Pb removal efficiency (> 99%) in a short time (8 h); meanwhile, moderate Cu and Ni removal efficiencies (67.91% and 58.49%, respectively) were obtained at the same incubation time. The concentration of heavy metals (50-200 mM) had an insignificant effect on the bio-removal rate, indicating that the PDUE-urea mixture is highly effective for the removal of heavy metals at different concentrations. The bio-removal process involved the transformation of soluble heavy metals into insoluble carbonate materials. A spherically shaped nano-cerussite (4-15 nm), a malachite hexahydrate nanosheet (thickness 8 nm), and an ultrafine micro-hellyerite (thickness 0.3 mu m) were the main minerals produced by the Pb, Cu, and Ni bio-removal processes, respectively. As a beneficial application, nano-cerussite was used as an additive in an alkali-activated slag/ceramic waste-based geopolymeric coating. A preliminary study proved that increasing the nano-cerussite content enhanced the resistance of the geopolymeric coating to sulfur-oxidizing bacteria, which is detrimental to normal concrete, particularly in sewer systems.
引用
收藏
页码:30741 / 30754
页数:14
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