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Simultaneous uptake of ammonium and phosphate ions by compounds prepared from paper sludge ash

机译:由纸泥渣制备的化合物同时吸收铵离子和磷酸根离子

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Al-containing CaO-SiO_2-H_2O phases were prepared by hydrothermal treatment of mixtures of paper sludge ash (PSA) with various silica and calcia sources and their properties were determined with particular reference to the simultaneous uptake of ammonium and phosphate ions, which are implicated in the eutrophication of lakes and ponds. After examination of various silica and calcia sources, Ca(OH)_2 and SiO_2 sol were selected as the most appropriate starting materials. Dry milling was found to be superior to wet milling in avoiding contamination from the milling media during mixing. Nine samples with three different Ca/Si ratios and Al_2O_3 contents were prepared with various mass ratios of Ca(OH)_2, PSA and SiO_2. The chemical compositions of the hydrothermal products of these mixtures moved towards the tieline of CaSiO_3-PSA, with respect to the starting compositions. The major phase formed in all samples was poorly crystalline C-S-H(I), with hydroxysodalite also formed in the Al-containing mixtures. All the products showed a capacity for the simultaneous uptake of ammonium and phosphate ions. The saturated sorption capacities calculated from the Langmuir equation ranged from 0.9 to 2.4 mmol/g for the ammonium ion and from 3.3 to 5.2 mmol/g for the phosphate ion. Since the sorption capacities for both ions increased with increasing Ca contents of the product, substitution of Ca~(2+) for NH_4~+ and the formation of calcium phosphate phases such as apatite and brushite by precipitation are thought to be the main sorption mechanisms.
机译:含铝的CaO-SiO_2-H_2O相是通过对纸泥渣(PSA)与各种二氧化硅和氧化钙来源的混合物进行水热处理而制得的,其性能尤其要考虑到同时吸收铵离子和磷酸根离子,这涉及在湖泊和池塘的富营养化中。在检查了各种二氧化硅和氧化钙来源后,选择Ca(OH)_2和SiO_2溶胶作为最合适的原料。发现在避免混合过程中研磨介质的污染方面,干研磨优于湿研磨。制备了具有三种不同Ca / Si比和Al_2O_3含量的9个样品,其中Ca(OH)_2,PSA和SiO_2的质量比各不相同。相对于起始组成,这些混合物的水热产物的化学组成朝着CaSiO_3-PSA的结合线移动。在所有样品中形成的主要相均为结晶性差的C-S-H(I),在含Al的混合物中也形成了羟基钠钙石。所有产品均具有同时吸收铵离子和磷酸根离子的能力。根据Langmuir方程计算的饱和吸附容量对于铵离子为0.9至2.4mmol / g,对于磷酸根离子为3.3至5.2mmol / g。由于两种离子的吸附能力随产物中Ca含量的增加而增加,因此,Ca〜(2+)替代NH_4〜+以及通过沉淀形成磷灰石和磷灰石等磷酸钙相是主要的吸附机理。 。

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