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Activated carbons from sewage sludge Application to aqueous-phase adsorption of 4-chlorophenol

机译:污水污泥中的活性炭在4-氯苯酚水相吸附中的应用

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Activated carbons of different characteristics have been prepared from dried sewage sludge using CO2, air and KOH as activating agents. The adsorption capacity of the resulting materials has been checked using 4-chlorophenol as a target compound in aqueous solution. CO2 and air-activation led to carbons of low BET area which increased with the activation temperature but did not reach 100 m~(-2)/g at the best. The high ash content of the starting material (23%, d.b.) limits the development of porosity since the partial gasification does not affect the inorganic matter. In the case of air-activation, the resulting surface remains fairly low even in ash-free basis, reaching no more than 250 m~(-2)/g. Activation with KOH allows a much higher development of porosity. Using a KOH to solids ratio of 3:1 and a temperature of 750 °C a BET area above 1800 m~(-2)/g with a mesopore volume higher than 0.35 cm~3/g was reached. In spite of those dramatic differences on the textural properties, the air-activated carbons showed an adsorption capacity for 4-chlorophenol of almost 85% that of the KOH-activated carbons. These results warrant in principle air-activation at moderate temperature as a promising way of sewage sludge valorisation to inexpensive adsorbents for the removal of water pollutants.
机译:用二氧化碳,空气和KOH作为活化剂,从干燥的污水污泥中制备了具有不同特性的活性炭。使用4-氯苯酚作为目标化合物在水溶液中,检查了所得材料的吸附能力。 CO2和空气活化导致低BET区的碳含量随活化温度的升高而增加,但最高未达到100 m〜(-2)/ g。原料的高灰分含量(23%,d.b。)限制了孔隙的形成,因为部分气化不影响无机物。在空气活化的情况下,即使在无灰的情况下,所得的表面仍保持相当低的水平,达到不超过250 m〜(-2)/ g。用KOH活化可以提高孔隙率。使用3:1的KOH与固体的比例和750°C的温度,获得了大于1800 m〜(-2)/ g的BET面积,其中介孔体积大于0.35 cm〜3 / g。尽管在质地特性上有这些显着差异,但空气活性炭对4-氯苯酚的吸附能力几乎是KOH活性炭的85%。这些结果原则上保证了在中等温度下进行空气活化,这是将污泥增值为廉价吸附剂以去除水污染物的一种有前途的方法。

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