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首页> 外文期刊>Environmental Science and Pollution Research >A systematic study of the synthesis conditions of blue and green ultramarine pigments via the reclamation of the industrial zeolite wastes and agricultural rice husks
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A systematic study of the synthesis conditions of blue and green ultramarine pigments via the reclamation of the industrial zeolite wastes and agricultural rice husks

机译:通过产业沸石废弃物和农业稻壳的填海综合处理蓝绿色紫外线颜料合成条件的系统研究

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Discarded industrial zeolite waste and agricultural rice husks have caused a waste of resources. To achieve resource reuse, we proposed an economical method for the preparation of ultramarine pigments via the reclamation of industrial zeolite waste (ZW) and agricultural rice husks (RHs) or previously bio-charred rice husks (BRHs). The optimal blue and green pigments were synthesized by solid state reaction of mixtures of BRH/ZW/Na2CO3/S with mass ratios of 1:2:1:1.5 and 2:2:7:3, respectively, and using a two-step calcination process with a first stage at 500 and a second stage at 800 degrees C. Furthermore, the blue and green pigments were also obtained using directly RH (instead of BRH) as raw material, but this time with RH/ZW/Na2CO3/S mass ratios of 1:2:2:3 and 1:2:7:3.5 and with first-stage and second-stage calcination temperatures of 400 and 800 degrees C. This was done to reduce additional chemical reactions (e.g., BRH derived from the pyrolysis of RH). The XRD, FT-IR, Raman, and SEM results suggest that the synthetic blue and green pigments have the sodalite structure containing S-3(-) and S-2(-) radicals. The synthetic green pigment using RH as raw material had the best acid resistance. Additionally, the synthesis of blue and green ultramarine pigments via the reclamation of the industrial zeolite wastes and agricultural rice husks can reduce the costs of the production process.
机译:丢弃的工业沸石废物和农业大米壳导致资源浪费。为了实现资源再利用,我们提出了一种通过填海工业沸石废物(ZW)和农业大米壳(RHS)或以前生物焚烧稻壳(BRHS)的制备紫外线颜料的经济方法。 2:1:1.5和2:2:7:分别为3,并用一个两步骤的最佳蓝色和绿色颜料通过用1质量比BRH / ZW /碳酸钠/ S的混合物的固相反应合成了煅烧过程在500℃下的第一阶段和800℃的第二阶段。此外,也使用直接RH(代替BRH)作为原料,但是随着RH / ZW / NA2CO3 / s的这次,也可以获得蓝色和绿色颜料。大量比例为1:2:2:3和1:2:7:3.5,以及400和800℃的第一阶段和第二阶段煅烧温度。这是为了减少额外的化学反应(例如,BRH衍生自Rh的热解)。 XRD,FT-IR,拉曼和SEM结果表明,合成的蓝色和绿色颜料具有含有S-3( - )和S-2( - )基团的钠体结构。使用Rh作为原料的合成绿色颜料具有最佳的耐酸性。此外,通过填海工业沸石废物和农业稻壳的填海壳体合成蓝绿和绿色紫外线颜料可以降低生产过程的成本。

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