Heavy metals in handloom-dyeing effluents and their biosorption by agricultural byproducts

被引:0
作者
Kamrun Nahar
Md. Abul Khair Chowdhury
Md. Akhter Hossain Chowdhury
Afzal Rahman
K. M. Mohiuddin
机构
[1] Bangladesh Agricultural University,Department of Agricultural Chemistry
[2] Bangladesh Agricultural University,Department of Food Technology and Rural Industries
来源
Environmental Science and Pollution Research | 2018年 / 25卷
关键词
Handloom-dyeing; Heavy metal; Pollution load; Biosorption; Agricultural byproducts;
D O I
暂无
中图分类号
学科分类号
摘要
The Madhabdi municipality in the Narsingdi district of Bangladesh is a well-known area for textile, handloom weaving, and dyeing industries. These textile industries produce a considerable amount of effluents, sewage sludge, and solid waste materials every day that they directly discharge into surrounding water bodies and agricultural fields. This disposal poses a serious threat to the overall epidemic and socio-economic pattern of the locality. This research entailed the collection of 34 handloom-dyeing effluent samples from different handloom-dyeing industries of Madhabdi, which were then analyzed to determine the contents of the heavy metals iron (Fe), zinc (Zn), copper (Cu), chromium (Cr), manganese (Mn), lead (Pb), and cadmium (Cd). Average concentrations of Fe, Cr, Cu, Pb, Mn, and Zn were 3.81, 1.35, 1.70, 0.17, 0.75, and 0.73 mg L−1, respectively, whereas Cd content was below the detectable limit of the atomic adsorption spectrophotometer. The concentrations of Fe, Cr, Cu, Pb, and Mn exceed the industrial effluent discharge standards (IEDS) for inland surface water and irrigation water guideline values. A biosorption experiment of the heavy metals (Fe, Cr, Cu, Mn, and Zn) was conducted without controlling for any experimental parameters (e.g., pH, temperature, or other compounds present in the effluent samples) by using four agricultural wastes or byproducts, namely rice husk, sawdust, lemon peel, and eggshell. Twenty grams of each biosorbent was added to 1 L of effluent samples and stored for 7 days. The biosorption capacity of each biosorbent is ranked as follows: eggshell, sawdust, rice husk, and lemon peel. Furthermore, the biosorption affinity of each metal ion was found in the following order: Cu and Cr (both had similar biosorption affinity), Zn, Fe, Mn. The effluents should not be discharged before treatment, and efficient treatment of effluents is possible with eggshell powder or sawdust at a rate of 20 g of biosorbent per liter of effluents.
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页码:7954 / 7967
页数:13
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共 384 条
[1]  
Abdel-Ghani NT(2007)Removal of lead from aqueous solution using low cost abundantly available adsorbents Int J Environ Sci Technol 4 67-73
[2]  
Hefny M(2012)Eggshell and coral wastes as low cost sorbents for the removal of Pb J Ind Eng Chem 18 198-204
[3]  
El-Chaghaby GAF(1958), Cd Chem Soc London Q Rev 12 265-276
[4]  
Ahmad M(1996) and Cu Water Res 30 1478-1482
[5]  
Usman ARA(1998) from aqueous solutions Water Res 32 3085-3091
[6]  
Lee SS(2002)The relative affinities of ligand atoms for acceptor molecules and ions Process Biochem 38 161-173
[7]  
Kim SC(2010)Studies on removal and recovery of Cr (VI) from electroplating wastes J Appl Sci Technol 7 85-90
[8]  
Yang JH(2009)Role of sawdust in the removal of copper (II) from industrial wastes J Hazard Mater 164 322-328
[9]  
Ok SY(2006)Binary biosorption of iron(III) and iron(III)-cyanide complex ions on Ind Eng Chem Res 45 8105-8110
[10]  
Ahrland S(1998): modelling of synergistic interaction Indian J Chem Technol 5 41-85