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Synthesis and properties of geopolymers based on water treatment residue and their immobilization of some heavy metals

机译:基于水处理残留物的地质聚合物的合成与性能及其对重金属的固定

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Inorganic polymers (geopolymers) were synthesized by alkali activation of water treatment residue, a waste material containing aluminosilicates and a significant concentration of iron in the form of a ferric nanoparticle oxide gel. The effect on the structures of these geopolymers of incorporating the heavy metals chromium, zinc and iron, as occur in industrial wastewaters, was studied by their addition at the geopolymer synthesis stage, both as the pre-prepared hydroxides and as 1 M nitrate solutions. The heavy metals form several new crystalline phases, but the geopolymers display typical solid-state Al-27 and Si-29 MAS NMR characteristics. The 28-day strengths of the geopolymers without the metals (up to 11.2 MPa) were significantly degraded by the presence of the heavy metals, particularly 1 M zinc nitrate solution. The deleterious effect of the heavy metals on the strength may arise from their presence as the hydroxides rather than their incorporation as charge-balancing cations in the geopolymer structure. Leaching tests in simulated acid rain indicate that the geopolymers with molar ratios of SiO2/Al2O3 = 1.78 are capable of immobilizing all three metals to within safe leachate levels. The geopolymers are sufficiently strong to withstand handling and transportation and are capable of immobilizing wastes containing these heavy metals for storage or disposal.
机译:通过水处理残留物的碱活化合成无机聚合物(地质聚合物),含有铝硅酸盐的废料和含有铁纳米粒子氧化物凝胶的形式的含有铝硅酸盐的废料。通过在地质聚合物合成阶段的添加中,研究了对工业废水中的重质金属铬,锌和铁的掺入重金属铬,锌和铁的结构的影响,作为预制备的氢氧化物和作为1M硝酸盐溶液。重金属形成几个新的结晶相,但是地质聚合物显示典型的固态Al-27和Si-29MAS NMR特性。地质聚合物的无金属(最高达11.2兆帕)28天的强度由重金属,特别是1μm锌的硝酸盐溶液的存在下显著降解。重金属对强度的有害效果可能因其作为氢氧化物的存在而不是其作为地质聚合物结构中的电荷平衡阳离子的掺入。模拟酸雨中的浸出试验表明,具有SiO 2 / Al2O3 = 1.78的摩尔比的地质聚合物能够将所有三种金属固定在安全的渗滤液水平内。地质聚合物足够强以承受处理和运输,能够固定含有这些重金属的废物以储存或处置。

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