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首页> 外文期刊>International Biodeterioration & Biodegradation >Bioremediation of metal contamination in the Plankenburg River, Western Cape, South Africa
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Bioremediation of metal contamination in the Plankenburg River, Western Cape, South Africa

机译:南非西开普省普兰肯堡河中金属污染的生物修复

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Three bioreactors (two laboratory-scale and one on-site) were evaluated for their efficiency to reduce metal concentrations in water collected from the Plankenburg River, South Africa. Water (bioreactors one, two and on-site) and bioballs (bioreactors two and on-site) collected throughout the study periods were digested and analysed using Inductively Coupled Plasma Atomic Emission Spectrometry (ICP-AES). Aluminium (Al), nickel (Ni), and zinc (Zn) concentrations decreased from 0.41 mg l[super]-1 to 0.06 mg l[super]-1 (85%), 0.2 mg l[super]-1 to 0.07 mg l[super]-1 (65%) and 75 mg l[super]-1 to 0.02 mg l[super]-1 (97%), respectively (bioreactor one). Aluminium [(1.55-0.38 mg l[super]-1 (75%)], copper (Cu) [57% (from 0.33 mg l[super]-1 to 0.14 mg l[super]-1)], iron (Fe) [71.99-40.4 mg l[super]-1 (44%)] and manganese (Mn) [57% (0.07-0.03 mg l[super]-1)] concentrations also decreased in the water samples from bioreactor two. In the on-site, six-tank bioreactor system, concentrations for Fe, Cu, Mn and Ni decreased, while Zn and Al concentrations increased. The concentrations recorded in biofilm samples were higher than the corresponding water samples. The bioballs employed in the bioreactor were thus shown to be efficient attachment surfaces for biofilm development and subsequent metal accumulation. Potentially metal-tolerant organisms (Pseudomonas sp., Sphingomonas sp., and Bacillus sp.) were also identified using phylogeny.
机译:对三个生物反应器(两个实验室规模和一个现场)进行了评估,以降低从南非普兰肯堡河收集的水中金属浓度的效率。在整个研究期间收集的水(生物反应器一,两和现场)和生物球(生物反应器二和一现场)被消化并使用电感耦合等离子体原子发射光谱法(ICP-AES)进行分析。铝(Al),镍(Ni)和锌(Zn)的浓度从0.41 mg l-1降至0.06 mg l-1(85%),从0.2 mg l-1降至0.07分别为1mg-1-1(65%)和75mg-1-1至0.02mg-1-1(97%)(生物反应器1)。铝[(1.55-0.38 mg l-1(75%)],铜(Cu)[57%(从0.33 mg l-1到0.14 mg l-1)],铁(来自第二个生物反应器的水样品中的Fe)[71.99-40.4 mg l-1(44%)]和​​锰(Mn)[57%(0.07-0.03 mg l-1])的浓度也降低。在现场的六罐生物反应器系统中,Fe,Cu,Mn和Ni的浓度降低,而Zn和Al的浓度增加,生物膜样品中记录的浓度高于相应的水样品。因此,它们被证明是生物膜发育和随后的金属积累的有效附着表面,还通过系统发育鉴定了潜在的金属耐受生物(假单胞菌,鞘氨醇单胞菌和芽孢杆菌)。

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