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首页> 外文期刊>Water science & technology >Optimisation of sugar cane activated carbon for arsenic(Ⅴ) and arsenic(Ⅲ) removal from water
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Optimisation of sugar cane activated carbon for arsenic(Ⅴ) and arsenic(Ⅲ) removal from water

机译:甘蔗活性炭去除水中砷(Ⅴ)和砷(Ⅲ)的优化

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摘要

This paper addresses the development of low-cost adsorbents for removal of arsenic from water in support of mitigation programmes in low and middle income countries. Activated carbon (AC) is a well established water treatment technology, but has high cost and low selectivity in respect of arsenic. AC made from agricultural by-products is a low-cost alternative to coal-based AC. In this study, the preparation parameters of sugar-cane activated carbon (SCAC) were optimised for arsenic (V) and arsenic(lll) adsorption. The effect of preparation parameters on arsenic removal was investigated with a 2~3 factorial experiment. SCAC was characterised by the pH of zero charge, surface area, pore width distribution, particle size distribution and imaging under scanning electron microscopy. Activation temperature (AT) has a profound effect on arsenic adsorption; arsenic(V) adsorption increased from 2.8% at an AT of 873 K to 87.6% at an AT of 1,173 K. The percentage of arsenic removal from water has a strong positive correlation with surface area, and a strong negative correlation with micropore/pore volume ratio and the percentage in volume of particles with a size of 60-2,000 μm. in conclusion, this research shows that low-cost AC can be manufactured for removal of target pollutants, such as arsenic, from water.
机译:本文介绍了低成本吸附剂的开发,该吸附剂用于从水中去除砷,以支持中低收入国家的缓解计划。活性炭(AC)是一种成熟的水处理技术,但砷的成本高且选择性低。由农业副产品制成的交流电是煤基交流电的低成本替代品。在这项研究中,甘蔗活性炭(SCAC)的制备参数针对砷(V)和砷(III)吸附进行了优化。通过2〜3阶乘实验研究了制备参数对砷去除的影响。 SCAC的特征在于零电荷的pH,表面积,孔宽度分布,粒度分布和在扫描电子显微镜下成像。活化温度(AT)对砷的吸附有深远的影响。砷的吸附量从873 K时的2.8%增加到1,173 K AT时的87.6%。从水中去除砷的百分比与表面积呈强正相关,与微孔/孔隙呈强负相关。体积比和尺寸为60-2,000μm的颗粒的体积百分比。总之,这项研究表明,可以制造低成本的交流电来去除水中的目标污染物,例如砷。

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