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Humic acids from coals of the North-Bohemian coal field II~☆. Metal-binding capacity under static conditions

机译:来自北波希米亚煤田II〜☆的煤中的腐殖酸。静态条件下的金属结合能力

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摘要

The interactions of metal cations (Al, Ba, Ca, Cd, Ci, Cr, Cu, Fe, Mg, Mn, Ni, Pb, Zn) with solid humic acis (HAs) were investigated in a batch arrangement. The sorption of metals on the surface of HAs depends strongly on the Ph-sorption decreases with decreasing pH. The metal-binding capacities estimated from the metal-humate binding model range from ca. 0.4 mmol/g (Fe, Ni, Zn) to 1.7 mmol/g (Pb). Of the examined metal cations, Pb~2+ binds ost strongly to solid HAs. The order of the metal-humate binding strength is consistent with series found in the literature and is based on the stability constants of metal-humate complexes. In comparison with coal-derived HAs, soil HAs from chernozem (and also low molecular weight HAs) exhibited markedly higher metal-binding capacities, whereas the capacity of oxyhumolite (the raw material for HA production) was lower.
机译:以分批方式研究了金属阳离子(Al,Ba,Ca,Cd,Ci,Cr,Cu,Fe,Mg,Mn,Ni,Pb,Zn)与固态腐殖酸(HAs)的相互作用。 HAs表面金属的吸附在很大程度上取决于pH值随pH的降低而降低。根据金属-腐植酸盐结合模型估计的金属结合能力范围为约1。 0.4 mmol / g(铁,镍,锌)至1.7 mmol / g(Pb)。在所检查的金属阳离子中,Pb〜2 +牢固地与固态HA结合。金属-腐植酸盐结合强度的顺序与文献中发现的序列一致,并且基于金属-腐植酸盐络合物的稳定性常数。与源自煤的高铁相比,黑钙土的土壤高铁(以及低分子量高铁)具有明显更高的金属结合能力,而湿腐质土(高铁的生产原料)的金属结合能力较低。

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