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首页> 外文期刊>Bangladesh Journal of Scientific and Industrial Research >Treatment of metal-containing effluents from textile-dyeing industries by aquatic macrophytes to improve surface water treatment systems
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Treatment of metal-containing effluents from textile-dyeing industries by aquatic macrophytes to improve surface water treatment systems

机译:通过水生植物处理纺织印染行业的含金属废水,以改善地表水处理系统

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The present study was carried out to determine the physicochemical parameters of industrial effluents and to find out suitable macrophytes in removing metals from wastewater in order to enhance surface water treatment systems. The effluent samples, effluent free water and aquatic macrophytes were collected from Savar region. Higher values of temperature (56°C), pH (12.32), electrical conductivity (12375 ?S/cm), biochemical oxygen demand (835 mg/L), total suspended solids (2187 mg/L), total dissolved solids (6952 mg/L), turbidity (89.53 NTU) and total organic carbon (421.6 mg/L) were recorded in industrial effluents comparing with control. The lowest concentration of DO in industrial effluents (0.12 mg/L) was much lower than the control (5.65 mg/L). The concentration of Cr (0.69 mg/L), Se (0.08 mg/L), Pb (0.23 mg/L) and Cu (0.71 mg/L) in the effluent exceeded the limit of DOE. Although the concentration of Cd (0.017 mg/L), Li (0.019 mg/L), Ni (0.7 mg/L) and Zn (0.38 mg/L) of effluent water were within the limit of DOE, but were much higher than the control water. The cultures of aquatic macrophytes, Eichornia crassipes, Pistia stratoites and Salvinia cucullata using textile-dyeing effluent can efficiently uptake metals from the effluent. The uptake of metals increased with raising effluent concentration in relation to control culture. When cultured in 100% effluent, Eichornia crassipes, Pistia stratoites and Salvinia cucullata can uptake relatively high amount of Cr, Cd, Cu, Li, Ni, Zn, Co, Se and Pb compared to other two cultures (control, 50% effluent). At 100% effluent water, Eichornia crassipes and Pistia stratoites can uptake more than 90% Co and 80% Se and Pb with low survival capacity. Salvinia cucullata can efficiently absorb Cr, Cd, Li, Ni and Pb with long time survival capacity. While individually Pistia stratoites is more effective in absorbing Cu, Zn and Eichornia crassipes for absorbing Co and Pb in order to enhance surface water treatment system. Bangladesh J. Sci. Ind. Res. 48(2), 89-96, 2013 DOI: http://dx.doi.org/10.3329/bjsir.v48i2.15738
机译:本研究旨在确定工业废水的理化参数,并找到合适的大型植物来去除废水中的金属,以增强地表水处理系统。从萨瓦尔地区收集了污水样品,污水自由水和水生植物。温度(56°C),pH(12.32),电导率(12375?S / cm),生化需氧量(835 mg / L),总悬浮固体(2187 mg / L),总溶解固体(6952)中的较高值与对照相比,工业废水中记录了浊度(89.53 NTU)和总有机碳(421.6 mg / L)。工业废水中的最低溶解氧浓度(0.12 mg / L)远低于对照(5.65 mg / L)。废水中的Cr(0.69 mg / L),Se(0.08 mg / L),Pb(0.23 mg / L)和Cu(0.71 mg / L)的浓度超过了DOE的限值。尽管废水中的Cd(0.017 mg / L),Li(0.019 mg / L),Ni(0.7 mg / L)和Zn(0.38 mg / L)的浓度都在DOE的范围内,但远高于DOE的限值。控制水。使用纺织品染色的废水进行水生植物,凤眼莲,水浮萍,层积藻和Salvinia cucullata的培养可以有效地从废水中吸收金属。与对照培养相比,金属的吸收随着废水浓度的增加而增加。当在100%的废水中培养时,与其他两种培养物相比(对照,50%的废水),凤眼莲,Pistia层云母和Salvinia cucullata可以吸收相对大量的Cr,Cd,Cu,Li,Ni,Zn,Co,Se和Pb。 。在废水为100%的情况下,凤眼莲和Pistia地层岩可以吸收90%以上的Co和80%的Se和Pb,且生存能力低。 Salvinia cucullata可以有效吸收Cr,Cd,Li,Ni和Pb,具有长期生存能力。虽然单独的Pistia层云母更有效地吸收Cu,Zn和Eichornia crassipes以吸收Co和Pb,以增强地表水处理系统。孟加拉国科学杂志工业研究48(2),89-96,2013 DOI:http://dx.doi.org/10.3329/bjsir.v48i2.15738

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