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Photocatalytic Degradation of Acid Blue 113 Over Iron Modified Vermiculite Using Solar Light

机译:铁修饰Ver石在太阳光下光催化降解酸性蓝113

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摘要

Natural vermiculite was enriched with iron by incipient wet method, and characterized by XRD and FT-IR. The structure of vermiculite was retained after modification. The modified vermiculite was used as the catalyst for the solar light assisted degradation of acid blue 113, a very commonly used dye in textile industry. The degradation was carried out by varying amount of H2O2 (15 mM - 75 mM) for 250 mL of 50 ppm dye solution. The degradation was monitored by measuring absorbance at 566 nm. The complete degradation of the dye required 240 min. The degradation was more than 90 % solar light assisted and removal of dye by adsorption was minimum (5 %). Complete mineralization of dye was evident from total organic carbon analysis. In support of total organic carbon results, the percentage chemical oxygen demand (% COD) increased with an increase in irradiation time. The optimum pH range for degradation was 2.9 to 3.5. Dissolution of iron from vermiculite was proved negligible. It was established that any textile effluent carrying acid blue 113 will be effectively mineralized using low cost naturally occurring eco-friendly vermiculite.
机译:天然ver石通过初湿法富集了铁,并通过XRD和FT-IR进行了表征。改性后保留retained石的结构。改性ver石被用作太阳能辅助酸性蓝113降解的催化剂,酸性蓝113是纺织工业中非常常用的染料。通过改变250 mL 50 ppm染料溶液中的H2O2(15 mM-75 mM)量进行降解。通过测量566nm处的吸光度来监测降解。染料的完全降解需要240分钟。超过90%的太阳光有助于降解,通过吸附去除的染料最少(5%)。从总有机碳分析来看,染料已完全矿化。为了支持总有机碳结果,化学需氧量百分比(COD)随着辐照时间的增加而增加。降解的最佳p​​H范围是2.9至3.5。 from石中铁的溶解被证明是微不足道的。已经确定,任何携带酸性蓝113的纺织品废水都可以使用低成本的天然存在的环保ver石有效地矿化。

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