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再生工业干磨砂粉对砷的吸附适用性。

Applicability of reused industrial dry sanding powder for adsorption of arsenic.

作者信息

Park Y J, Yang J K, Choi S I

机构信息

Department of Environmental Engineering, Kwangwoon University, Seoul, Republic of Korea.

出版信息

Water Sci Technol. 2008;58(8):1575-80. doi: 10.2166/wst.2008.541.

Abstract

This study examined the potential reuse of powdered wastes (PW) generated during the sanding and sawing process in a local chemical company in Korea with the viewpoint of the recycling these wastes and minimizing the level of contamination. As the aluminium hydroxide inside the PW could be thermally converted to various types of aluminium oxides depending on the calcination temperature, the adsorptive properties could be changed and it may affect on adsorption ability. Calcination of the PW was performed for 3 h at 550 degrees C, 750 degrees C, and 950 degrees C. From the results, amorphous aluminium oxide was thermally generated by calcinating the PW at 550 degrees C and with further increase of temperature to 950 degrees C, the crystallinity of amorphous aluminium oxide was gradually increased. The physicochemical analysis of calcined powdered wastes (CPW) at various temperatures showed that more developed porosity was noted in the CPW as the calcinations temperature increased, whereas surface area was significantly decreased from 175.5 m2 g(-1) to 46.5 m2 g(-1). The removal efficiency of arsenate on the CPW decreased as the calcinations temperature increased from 550 degrees C to 950 degrees C. The CPW550 exhibited the highest adsorption capacities toward arsenate over pH range of 2-8 and showed a complete removal of the arsenate (10.0 mg L(-1)) within the first 10 min. Adsorption kinetic studies showed that the rate of arsenic adsorption on the CPW decreased with the increase of the calcination temperature. When the maximum adsorption capacity of arsenic onto the CPW was calculated by Langmuir equation, the CPW550 has the highest value as 43.9 mg g(-1).

摘要

本研究从回收这些废弃物并尽量减少污染程度的角度,考察了韩国一家当地化工公司在打磨和锯切过程中产生的粉末状废弃物(PW)的潜在再利用情况。由于PW中的氢氧化铝可根据煅烧温度热转化为各种类型的氧化铝,其吸附性能可能会发生变化,这可能会影响吸附能力。分别在550℃、750℃和950℃下对PW进行3小时的煅烧。结果表明,在550℃煅烧PW可热生成无定形氧化铝,随着温度进一步升高至950℃,无定形氧化铝的结晶度逐渐增加。对不同温度下煅烧的粉末状废弃物(CPW)进行的物理化学分析表明,随着煅烧温度的升高,CPW的孔隙率更发达,而比表面积从175.5 m2 g(-1)显著降低至46.5 m2 g(-1)。随着煅烧温度从550℃升高到950℃,CPW对砷酸盐的去除效率降低。CPW550在pH值为2-8的范围内对砷酸盐表现出最高的吸附容量,并在最初10分钟内完全去除了砷酸盐(10.0 mg L(-1))。吸附动力学研究表明,随着煅烧温度的升高,CPW对砷的吸附速率降低。当用朗缪尔方程计算CPW对砷的最大吸附容量时,CPW550的值最高,为43.9 mg g(-1)。

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