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The miniaturised solid phase extraction of some trace metals using graphene nanoplatelets by GFAAS

机译:石墨烯原子吸收光谱法用石墨烯纳米片微型固相萃取某些痕量金属。

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In order to separate and enrich of cadmium, copper, lead and nickel before its determination with graphene nanoplatelets by atomic absorption spectrometry was described. For this aim, analyte elements were collected on sorbent in mini filter. The influences of experimental conditions (pH of sample, amount of sorbent, concentration of eluent, foreign ions), retention and elution parameters on the recovery of the analyte elements were examined. After the optimisation of experimental parameters, a successful separation and enrichment were obtained at pH=7 and eluted with 0.1M of HNO3 applying a 20mL/min of drawing and discharging rates for sorption and elution steps with high (95%) quantitative recovery and high precision (10% relative standard deviation). Using the proposed technique, the cadmium, copper, lead and nickel in various water samples (tap water and river water) could be practically and easily removed and enriched with 95% confidence level. The limit of detection for cadmium, copper, lead and nickel was 0.78, 0.41, 5.40 and 0.44 g/L (3 sigma, N=10), respectively. The proposed technique was fast, simple, environmental friendly and economic.
机译:为了分离和富集镉,铜,铅和镍,然后用原子吸收光谱法用石墨烯纳米片测定了镉,铜,铅和镍。为此,将分析物元素收集在微型过滤器中的吸附剂上。考察了实验条件(样品的pH,吸附剂的量,洗脱液的浓度,外来离子),保留和洗脱参数对分析物元素回收率的影响。优化实验参数后,在pH = 7的条件下成功分离和富集,并以0.1mL的HNO3进行洗脱,并以20mL / min的吸取和排出速率进行吸附和洗脱步骤,定量回收率高(> 95%)。高精度(相对标准偏差<10%)。使用所提出的技术,各种水样品(自来水和河水)中的镉,铜,铅和镍都可以被实用,轻松地去除,并具有95%的置信度。镉,铜,铅和镍的检出限分别为0.78、0.41、5.40和0.44 g / L(3西格玛,N = 10)。所提出的技术是快速,简单,环境友好和经济的。

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