高分子吸附剂初步浓缩后测定油泥中痕量钒

M. B. Hasanova, Azerbaijan State Oil, F. Bahmanova, F. Chiragov, C. I. Mirzai
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引用次数: 0

摘要

提出了一种以马来酸酐与甲基丙烯酸共聚物为基料的改性钒吸附剂。采用了对氨基水杨酸片段聚合物螯合吸附剂。确定了最佳吸附条件,并研究了吸附量与溶液酸度的关系。在pH为5时,吸附度达到最大值。研究了离子强度对钒吸附性能的影响。研究表明,离子强度高达0.6 mol/l时不影响吸附,在0.6 mol/l之后,离子强度开始逐渐增加,然后吸附急剧下降。研究了离子强度对钒吸附的影响,发现离子强度达到0.6 mol/l时对钒的吸附不产生影响,而在0.6 mol/l之后,离子强度开始逐渐升高,而后急剧下降。所有进一步的实验都在离子强度为0.6的溶液中进行。结果表明,随着溶液中钒浓度的升高,金属吸附量增大,在pH = 5, CV5+ = 8.10-3 mol/l, vtotal = 20 ml时达到最大值。= 0.03 g, SC = 243 mg/g)。建立了该吸附剂吸附钒的等温线。在溶液与吸附剂接触后1小时内达到吸附平衡。吸附时间的进一步延长不会改变吸附剂的特性。该吸附剂从溶液中提取钒,回收率为93%。研究了相同浓度的不同无机酸(HClO4、H2SO4、HNO3、HCl)对吸附剂中钒(V)脱附的影响。分析结果表明,钒(V)的最大解吸发生在高氯酸中。将所建立的方法应用于初步浓度测定油泥中痕量钒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DETERMINATION OF VANADIUM (V) TRACE AMOUNTS IN OIL SLUDGE AFTER PRELIMINARY CONCENTRATION WITH POLYMER SORBENT
A modified sorbent based on copolymer of maleic anhydride with methacrylic acid was proposed for sorption of vanadium (V) concentration. A polymer chelating sorbent with fragments of para-amino salicylic acid was used in the work. Optimal sorption conditions were determined and the dependence of sorption capacity on the acidity of the solution studied. At pH 5, the degree of sorption attains its maximum. The effect of ionic strength on vanadium sorption was studied. Studies have shown that the ionic strength up to 0.6 mol/l does not affect the sorption, after 0.6 mol/l the increase in the ionic strength at the beginning gradually, and then sharply decreases the sorption. The effect of ionic strength on vanadium sorption was studied to show that the ionic strength up to 0.6 mol/l does not affect the sorption, and after 0.6 mol/l the increase in the ionic strength at the beginning gradually, and then sharply decreases the sorption. All further experiments were carried out in the solutions with an ionic strength of 0.6. It was found that as the concentration of vanadium rises in the solution, the amount of sorbed metal increases, and at a concentration of 8.10-3 mol/l it becomes maximum (pH = 5, CV5+ = 8.10-3 mol/l, vtotal = 20 ml, msorb. = 0.03 g, SC = 243 mg/g). The isotherm of vanadium (V) sorption with the synthesized sorbent was constructed. Sorption equilibrium is achieved within 1 hour of contact between the solution and the sorbent. Further growth in the sorption time does not change sorbent’s characteristics. The sorbent extracts vanadium (V) from solutions with a recovery rate of 93%. The effect of different mineral acids (HClO4, H2SO4, HNO3, HCl) of identical concentrations on vanadium (V) desorption from the sorbent was also studied. The results of the analysis showed that the maximum desorption of vanadium (V) occurs in perchlorate acid. The developed method was applied to determine the trace amounts of vanadium in oil sludge with preliminary concentration.
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