首页> 外文会议>International Conference on Advanced Materials for Better Future >The synthesis of corncobs (zea mays) active charcoal and water hyacinth (eichornia crassipes) adsorbent to adsorb Pb(II) with it's analysis using solid-phase spectrophotometry (sps)
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The synthesis of corncobs (zea mays) active charcoal and water hyacinth (eichornia crassipes) adsorbent to adsorb Pb(II) with it's analysis using solid-phase spectrophotometry (sps)

机译:用固相分光光度法(SPS)合成玉米饼(ZeA 5月)活性炭和水葫芦(Eichornia rasepes)吸附剂吸附于吸附Pb(II)的分析(SPS)

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This research aim to examine the effect of the combination between corncobs and water hyacinth to adsorb lead (II), the most effective combination have determined by compared the ratio of corncobs adsorbent and water hyacinth to the increasing adsorption of the Pb(II), prove the effectiveness of the solid-phase spectrophotometry (sps) to determine the levels of Pb(II) as the result of the corncobs active charcoal adsorption and water hyacinth in the level of μg/L.The research method used is experimental method. The data collecting technique is carried out by several stages, which are carbonization using muffle furnace at a temperature of 350°C for 1.5 hours, activation of the corncobs charcoal and water hyacinth using HC1 1M and HC1 5M activator, contacting the adsorbent of corncobs active charcoal and water hyacinth with liquid waste simulation of Pb(II) using variation of corncobns and water hyacinth, 1:0; 0:1; 1:1; 2:1; 1:2, analysis of Pb(II) using an sps, characterization of corncobs active charcoal adsorbent and water hyacinth using FTIR. Research results show that the combined effect of activated charcoal corncobs and water hyacinth can increase the ability of the adsorbent to absorb Pb(II), the optimum adsorbent mass ratio of 1:1 with the absorption level of 90.33%, SPS is an effective method to analyze the decreasing level of Pb(II) as the adsorbtion result of the corncobs active charcoal and water hyacinth in the level of μg/L, with the limit of detection (LOD) of 0.06 μg/L.
机译:本研究的目标是检查以吸附铅(II),最有效的组合具有由玉米芯吸附剂和水葫芦到PB的吸附(II)增加相比的比率来确定玉米穗轴和水葫芦之间的组合的效果,证明固相分光光度法(SPS)的有效性,以确定铅(II)的水平以μg水平活性的玉米穗轴炭吸附和水葫芦的结果/ L.The用于研究方法是实验方法。数据采集​​技术由几个阶段,这是碳化使用马弗炉在使用HC1 1M和HCl 5M活化剂1.5小时,所述玉米芯木炭和水葫芦的活化的350℃的温度下进行,活性玉米芯的吸附剂接触木炭和使用1 corncobns和水葫芦的变型中,铅(II)的液体废物模拟水葫芦:0; 0:1; 1:1; 2:1; 1:2,铅(II)的分析使用的SPS,玉米芯的表征活性炭吸附剂并用FTIR水葫芦。研究结果表明,活性炭玉米穗轴和水葫芦的组合效果可以提高吸附剂的吸收的Pb(II)的能力,为1的最佳吸附剂质量比:具有90.33%的吸收水平1,SPS是一种有效的方法分析的Pb(II)的降低水平为玉米穗轴活性炭和水葫芦以μg/ L的水平的吸附树脂结果,检测(LOD)中的0.06微克/升的极限。

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