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Application of Modified Coal Fly Ash as an Absorbent for Ammonia-Nitrogen Wastewater Treatment

机译:改性煤粉煤灰作为氨 - 氮废水处理吸收剂的应用

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Three methods, sodium hydroxide hydrothermal treatment, sodium carbonate calcination-hydrothermal treatment, and sodium hydroxide calcination-hydrothermal treatment, were used to modify fly ash as an adsorbent for wastewater treatment. Results from XRD analysis show that the fly ash with sodium hydroxide hydrothermal treatment the fly ash has a porous structure in which alumina disappear and silica is dissolved. With sodium carbonate calcination-hydrothermal treatment exhibits nepheline and Na_7A_(17)SiO_(16) structures. With sodium hydroxide calcination-hydrothermal treatment a zeolite-like new phase and porous structure can be observed. Results from SEM and BET indicate that the specific surface area increases from 0.160 m~2/g for the raw material to 7.22 m~2/g, 1.05m~2/g and 276 m~2/g for the respectively modified by sodium hydroxide hydrothermal treatment, sodium carbonate calcination-hydrothermal treatment and sodium hydroxide calcination-hydrothermal treatment. The three modified fly ash were used to treat a concentration of 80 mg/L of ammonia-nitrogen wastewater. The removal capacity for the three modified ash was 58%, 44% and 94% respectively that was significant higher than 14% for the original fly ash. These results show that fly ash by alkali modification can improve the activity and enhance the ability of ammonia-nitrogen wastewater treatment.
机译:三种方法,氢氧化钠水热处理,碳酸钠煅烧 - 水热处理,氢氧化钠煅烧 - 水热处理,用于改性粉煤灰作为废水处理的吸附剂。 XRD分析结果表明,粉煤灰具有氢氧化钠水热处理的粉煤灰具有多孔结构,其中氧化铝消失,二氧化硅溶解。碳酸钠煅烧 - 水热处理表现出尼触线和NA_7A_(17)SIO_(16)结构。通过氢氧化钠煅烧 - 水热处理可以观察到沸石样的新相和多孔结构。 SEM和BET的结果表明,特定表面积从原料的0.160m〜2 / g增加至7.22m〜2 / g,由钠分别改性为7.22m〜2 / g,1.05m〜2 / g和276 m〜2 / g氢氧化物水热处理,碳酸钠煅烧 - 水热处理及氢氧化钠煅烧 - 水热处理。三种改性粉煤灰用于治疗浓度为80mg / L的氨氮废水。三种改性灰分的去除能力分别为58%,44%和94%,显着高于原始粉煤灰的14%。这些结果表明,通过碱改性的粉煤灰可以改善活性并增强氨 - 氮废水处理的能力。

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