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Yasser REFAEY Boris JANSEN Pim DE VOOGT John R. PARSONS Abdel-Hamid EL-SHATER Abdel-Aziz EL-HADDAD Karsten KALBITZ 《土壤圈》2017,27(3):579-587
Natural clay minerals can play an important role in crude remediation of wastewater polluted with the heavy metals (HMs) Cu,Zn and Ni.The presence and timing of addition of natural dissolved organic matter (DOM) have a significant effect on the HM removal by clay mineral sorbents.However,the influence of the presence of DOM on the remediation of the used clay mineral sorbents once saturated with HMs is largely unknown.To resolve this,clay mineral-rich soil column of varying composition,loaded (i) with Cu,Zn and Ni only,(ii) first with DOM followed by Cu,Zn and Ni,or (iii) with DOM,Cu,Zn and Ni simultaneously,was used in a set of desorption experiments.The soil columns were leached with 0.001 mol L-1 CaCl2 dissolved in water as control eluent and 0.001 mol L-1 CaCl2 dissolved in DOM as treatment eluent.During the preceding loading phase of the sorbent,the timing of DOM addition (sequential or concurrent with HMs) was found to have a significant influence on the subsequent removal of the HMs.In particular when the column was loaded with DOM and HMs simultaneously,largely irreversible co-precipitation took place.Our results indicate that the regeneration potential of clay mineral sorbents in wastewater treatment will be significantly reduced when the treated water is rich in DOM.In contrast,in manured agricultural fields (where HMs enter together with DOM),HM mobility will be lower than expected from interaction dynamics of HMs and clay minerals. 相似文献
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Brenda ROMÁN-PONCE Diana Miryel REZA-VÁZQUEZ Sonia GUTIÉRREZ-PAREDES María de Jess DE HARO-CRUZ Jessica MALDONADO-HERNÁNDEZ Yanely BAHENA-OSORIO Paulina ESTRADA-DE LOS SANTOS En Tao WANG María Soledad VÁSQUEZ-MURRIETA 《土壤圈》2017,27(3):511-526
Phytoremediation is an emerging technology that uses plants and their associated microbes to clean up pollutants from the soil, water, and air. In order to select the plant growth-promoting rhizobacteria(PGPR) for phytoremediation of heavy metal contamination, 60 bacterial strains were isolated from the rhizosphere of two endemic plants, Prosopis laevigata and Spharealcea angustifolia, in a heavy metal-contaminated zone in Mexico. These rhizobacterial strains were characterized for the growth at different pH and salinity, extracellular enzyme production, solubilization of phosphate, heavy metal resistance, and plant growth-promoting(PGP) traits, including production of siderophores and indol-3-acetic acid(IAA). Overall, the obtained rhizobacteria presented multiple PGP traits. These rhizobacteria were also resistant to high levels of heavy metals(including As as a metalloid)(up to 480 mmol L(-1)As(V), 24 mmol L(-1)Pb(Ⅱ), 21 mmol L(-1)Cu(Ⅱ), and 4.5 mmol L(-1)Zn(Ⅱ)). Seven rhizobacterial strains with the best PGP traits were identified as members of Alcaligenes, Bacillus, Curtobacterium, and Microbacterium, and were selected for further bioassay.The inoculation of Brassica nigra seeds with Microbacterium sp. CE3R2, Microbacterium sp. NE1R5, Curtobacterium sp. NM1R1,and Microbacterium sp. NM3E9 facilitated the root development; they significantly improved the B. nigra seed germination and root growth in the presence of heavy metals such as 2.2 mmol L(-1)Zn(Ⅱ). The rhizobacterial strains isolated in the present study had the potential to be used as efficient bioinoculants in phytorremediation of soils contaminated with multiple heavy metals. 相似文献
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大型海藻养殖是一种低成本、高效、环保的水体富营养化生物修复方法,而水流则是影响大型海藻生长的一个重要因素。研究结果表明,水流交换率为200 vol·d-1时,羊栖菜(Sargassum fusiforme)比生长率最高达(4.34±0.11) %·d-1,而水流交换率为100 vol·d-1、中高浓度营养盐条件下石莼(Ulva pertusa)比生长率最大值分别可达(6.31±1.42) %·d-1、(8.00±0.79) %·d-1,营养盐浓度决定了两种大型海藻的生长率,石莼更适宜在高营养盐环境中生长。石莼体内叶绿素a、可溶性蛋白和可溶性碳水化合物在不同应用情境间均存在明显差异,而羊栖菜体内仅可溶性蛋白表现出明显变化。水流交换的增强明显改变了石莼的生长和羊栖菜可溶性碳水化合物含量。陆基中试实验表明,与低水流速度相比,中、高流速条件下羊栖菜的比生长率分别增加80%、14%,石莼则分别增加41.3%、33.3%。 相似文献
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