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不同生物质飞灰对水中敌草隆和 3,4-二氯苯胺的吸附潜力。

Sorption potential of different biomass fly ashes for the removal of diuron and 3,4-dichloroaniline from water.

机构信息

Department of Environmental Protection, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas (EEZ-CSIC), C/Profesor Albareda 1, 18008 Granada, Spain.

Department of Environmental Protection, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas (EEZ-CSIC), C/Profesor Albareda 1, 18008 Granada, Spain.

出版信息

J Hazard Mater. 2017 Jun 5;331:300-308. doi: 10.1016/j.jhazmat.2017.02.047. Epub 2017 Feb 27.

Abstract

Hazardous contaminants in water and biomass fly ash spillage are causes for environmental and health concern. We selected five fly ashes generated from olive-mill (O,P, G and H) and greenhouse vegetable (I) waste used as biomass fuel in order to quantify their capacity to remove diuron and 3,4-dichloroaniline (DCA) from water. To understand the sorption processes involved, four kinetic models and two adsorption isotherms were assayed. The pseudo second-order kinetic showed the best fit (R>0.99). The initial adsorption rate constant was found to be faster for DCA than for diuron. The Freundlich adsorption constants of ashes O, P, G and H for diuron were more than 2-fold higher than for DCA (Kf=109-16μggmL). The alkaline pH of these fly ashes plays an important role in the adsorption process. Sorption/desorption processes were significantly affected by iron oxide content. DCA sorption was also influenced by particle size and carbon content. Low hysteresis coefficient values (H=0.01-0.26) revealed an irreversible sorption process. The study presents novel information on the immobilization of hazardous chemicals in water by biomass fly ashes generated from olive-oil industry and greenhouse crop waste.

摘要

水中和生物质飞灰溢出的有害污染物是引起环境和健康关注的原因。我们选择了来自橄榄磨坊(O、P、G 和 H)和温室蔬菜(I)废物的五种飞灰,这些废物被用作生物质燃料,以量化它们从水中去除敌草隆和 3,4-二氯苯胺(DCA)的能力。为了了解涉及的吸附过程,我们测试了四个动力学模型和两个吸附等温线。准二级动力学模型表现出最好的拟合(R>0.99)。发现 DCA 的初始吸附速率常数比敌草隆快。灰烬 O、P、G 和 H 对 DCA 的弗里德里希吸附常数比敌草隆高 2 倍以上(Kf=109-16μggmL)。这些飞灰的碱性 pH 值在吸附过程中起着重要作用。吸附/解吸过程受到氧化铁含量的显著影响。DCA 的吸附也受到粒径和碳含量的影响。低滞后系数值(H=0.01-0.26)表明吸附过程是不可逆的。本研究提供了关于通过来自橄榄油工业和温室作物废物的生物质飞灰将危险化学品固定在水中的新信息。

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