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首页> 外文期刊>Adsorption Science & Technology >Adsorption Capacities of Activated Carbons Derived from Rice Straw and Water Hyacinth in the Removal of Organic Pollutants from Water
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Adsorption Capacities of Activated Carbons Derived from Rice Straw and Water Hyacinth in the Removal of Organic Pollutants from Water

机译:稻草和水葫芦活性炭对水中有机污染物的吸附能力。

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摘要

Two activated carbons were prepared from unconventional raw materials, i.e. rice straw (RS) and water hyacinth (WH), using the same activation scheme, i.e. impregnation with 50 vol% H,PO4 followed by pyrolysis at 500°C. The porosity characteristics of the samples were determined via nitrogen adsorption studies at-196°C from which the various parameters were evaluated. WH carbon showed a more developed porosity relative to RS, although both carbons were apparently of low quality. The capacities of both samples towards the removal from aqueous solution of live organic sorbates were tested. These were phenol (P), p-nilrophenol (PNP), p-nitroaniline (PNA), Methylene Blue (MB) and Congo Red (CR). The adsorption of the two dyes (MB and CR) was a function of the pore dimensions, whereas phenol uptake was greatly reduced because of the acidic oxygen functional groups on the carbon surface. The amount of PNP taken up corresponded exactly with the specific surface area as estimated from nitrogen isotherm measurements. The surface abundances (as μmol/m~2) of PNP, P and PNA were found to be independent of the porosity characteristic of the active carbon and followed the general sequence PNP > P > PNA > MB > CR. The observed removal capacities were comparable to that of a commercial carbon produced by Prolabo whose porosity was much more developed.
机译:使用相同的活化方案,即用50 vol%的H,PO4浸渍,然后在500°C下进行热解,由非常规原料即稻草(RS)和水葫芦(WH)制备了两种活性炭。样品的孔隙率特性是通过在-196°C下的氮吸附研究确定的,并据此评估了各种参数。相对于RS,WH碳显示出更发达的孔隙度,尽管两种碳显然质量较低。测试了两种样品从活性有机山梨酸酯水溶液中去除的能力。它们是苯酚(P),对硝基苯酚(PNP),对硝基苯胺(PNA),亚甲基蓝(MB)和刚果红(CR)。两种染料(MB和CR)的吸附是孔径的函数,而苯酚的吸收由于碳表面的酸性氧官能团而大大降低。从氮等温线测量值估计,吸收的PNP量与比表面积完全对应。发现PNP,P和PNA的表面丰度(μmol/ m〜2)与活性炭的孔隙率特性无关,并且遵循以下一般顺序PNP> P> PNA> MB> CR。观察到的去除能力与Prolabo生产的商业碳的去除能力相当,后者的孔隙率要大得多。

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