Dahiya Sudhir, Tripathi R M, Hegde A G
Environmental Studies Section, Health Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400085, India.
J Hazard Mater. 2008 Jan 31;150(2):376-86. doi: 10.1016/j.jhazmat.2007.04.134. Epub 2007 May 6.
In this study biosorption potential of pre-treated arca shell biomass for lead, copper, nickel, cobalt and cesium was explored from the artificially prepared solution containing known amount of metals. The effects of pH, initial concentration, biosorbent dosage and contact time were studied in batch experiments. Effects of common ions like sodium, potassium, calcium and magnesium on the sorption capacity of pre-treated arca biomasses were also studied. To analyse the homogeneity of the biomaterial, experiments were performed for eight lots arca shell biomass for all the studies elements and it was observed that relative standard deviation in uptake capacity was within 10% for all elements. At equilibrium, the maximum total uptake by shell biomaterial was 18.33+/-0.44, 17.64+/-0.31, 9.86+/-0.17, 3.93+/-0.11 and 7.82+/-0.36 mg/g for lead, copper, nickel, cesium and cobalt, respectively, under the optimised condition of pH, initial concentration, biosorbent dose and contact time. Effect of all the common ions jointly up to concentration of 50 ppm was negligible for all the elements but at higher levels the cations affects the uptake capacity. Sorption isotherms were studied to explain the removal mechanism of both elements by fitting isotherms data into Lagergren, Freundlich and Langmuir equations. Halls separation factor estimated under optimised condition also favours the sorption potential of these elements using arca shell biomass. Arca shell biomass can be effectively and efficiently employed for removal of studied elements after optimisation of parameters.
在本研究中,从含有已知量金属的人工制备溶液中探索了预处理过的蚶壳生物质对铅、铜、镍、钴和铯的生物吸附潜力。在分批实验中研究了pH值、初始浓度、生物吸附剂用量和接触时间的影响。还研究了钠、钾、钙和镁等常见离子对预处理过的蚶生物量吸附能力的影响。为了分析生物材料的均匀性,对八个批次的蚶壳生物质进行了所有研究元素的实验,观察到所有元素的吸收容量相对标准偏差在10%以内。在平衡状态下,在pH值、初始浓度、生物吸附剂剂量和接触时间的优化条件下,蚶壳生物材料对铅、铜、镍、铯和钴的最大总吸收量分别为18.33±0.44、17.64±0.31、9.86±0.17、3.93±0.11和7.82±0.36mg/g。所有常见离子浓度共同达到50ppm时,对所有元素的影响可忽略不计,但在更高水平时,阳离子会影响吸收容量。通过将等温线数据拟合到Lagergren、Freundlich和Langmuir方程中,研究了吸附等温线以解释两种元素的去除机制。在优化条件下估算的哈金斯分离因子也有利于使用蚶壳生物质对这些元素的吸附潜力。在参数优化后,蚶壳生物质可有效且高效地用于去除所研究的元素。