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Formation of high crystalline LDH sludge for removing Cu and Zn from wastewater by controlled double-jet precipitation

机译:通过受控双喷射沉淀去除废水中除去Cu和Zn的高晶体LDH污泥的形成

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In order to improve the heavy metal wastewater treatment by avoiding formation of amorphous sludge phase, we develop a faster formation of high crystalline layered double hydroxide (LDH) sludge to remove Cu and Zn from wastewater by controlled double-jet precipitation (CDJP) without hydrothermal or heat aging post-treatment. A series of experimental procedures are conducted to determine the optimal parameters. Results show that the optimal adding rate, pH value, and stirring rate is 0.5 mL min~(-1),9.0, and 500 rpm, respectively. The CuZnAl-LDH phase sludge is formed in a well-crystallized hexagonal platelet, which assembled into a flower-like architecture. Comparative studies show that the formation of amorphous LDH sludge in conventional precipitation (CP) could be divided roughly into two stages-from the mixed copper hydroxide, zinc hydroxide, 3nd scarbroite to the mixed low crystallinity CuAl-LDH and ZnAl-LDH. However, in CDJP method, the high crystalline LDH sludge evolved from a new four-step evolution process that is the formation of an amorphous (quasi-)multinary metastable ternary CuZnAl-LDH phase, followed by the indiffusion of cations and substitution of anions to fabricate crystalline LDH, the integrated LDH hexagonal platelets assembled into a flower-like architecture by the screw dislocation growth mechanism, the coarsening growth of each ternary LDH platelet, respectively. Thereinto, the formation of (quasi-)multinary metastable LDH phase instead of metal hydroxide in initial stage would be an obvious advantage of the CDJP method compared to CP method due to the former skipping the sequential precipitation.
机译:为了提高通过避免形成非晶污泥相的重金属的废水处理中,我们开发出高结晶性的更快的形成层状双氢氧化物(LDH)的污泥通过受控双注沉淀(CDJP)从废水中除去Cu和Zn无水热或热老化后处理。一系列的实验方法进行,以确定最佳参数。结果表明,最佳分别添加速度,pH值,并且搅拌速度为0.5ml分钟〜(-1),9.0,和500rpm。形成良好的结晶六边形血小板,其组装成花状结构的铜锌铝-LDH相污泥。对比研究表明,在常规沉淀(CP)的无定形LDH污泥的形成大致可分为两个阶段,从混合氢氧化铜,氢氧化锌,3ND scarbroite到混合低结晶度的CuAl-LDH和的ZnAl-LDH。然而,在CDJP法,高结晶LDH污泥从一个新的四步演化的过程,是无定形(准)多元亚稳三元铜锌铝-LDH相的形成演变,随后阳离子的向内扩散和取代阴离子的至编造结晶LDH,组装成花状结构由螺旋位错生长机制,分别的各三元LDH血小板粗大生长集成LDH六边形血小板。到其中,(准)多元亚稳相LDH代替初期金属氢氧化物的形成将是相比于CP方法CDJP方法的一个明显的优势是由于前者跳过连续沉淀。

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