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Surface characteristics of crop-residue-derived black carbon and lead(II) adsorption

机译:作物残渣黑碳和铅(II)吸附的表面特性

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Previous studies demonstrated that black carbon (BC) in soils arising from the burning of crop residues is a highly effective adsorbent for organic contaminants. This work evaluated the adsorptive ability of BC for heavy metals in relation to the BC surface characteristics. Two BC samples, rice carbon (RC) and wheat carbon (WC) isolated from the burning residues of rice straw and wheat straw, respectively, were characterized for their surface properties with reference to a commercial activated carbon (AC). While RC and WC had lower surface areas than AC, the two BC samples possessed higher surface acidities and thus lower pH of the isoelectric points (pH_(IEP)) than AC as indicated by titration, FTIR, and zeta potential measurements. The Pb(II) adsorption by RC and WC was higher than that by AC and increased significantly with increasing pH, suggesting the electrostatic interactions between positive Pb(II) species and negatively charged functional groups on RC and WC as the primary adsorptive forces. A reduction in the total positive charge of Pb(II) species with increasing pH as computed by MINTEQA2 suggested that the deprotonation of surface functional groups of RC and WC was the controlling factor of the adsorption. The Pb(II) adsorption decreased with increasing ionic strength, due to the screening role of Na~+ in neutralizing the negative charge of RC and WC. This study demonstrated that BC may be an important adsorbent of heavy metals in soil and that the adsorption may be significantly influenced by environmental conditions.
机译:先前的研究表明,由于燃烧农作物残渣而产生的土壤中的黑碳(BC)是一种有机污染物的高效吸附剂。这项工作评估了BC对重金属的吸附能力与BC表面特性的关系。分别从稻草和小麦秸秆的燃烧残留物中分离出的两种BC样品,即稻碳(RC)和小麦碳(WC),以市售活性炭(AC)为特征进行了表征。尽管RC和WC的表面积比AC的表面积小,但两个BC样品的表面酸度更高,因此,如滴定,FTIR和Zeta电位测量所示,等电点的pH(pH_(IEP))比AC更低。 RC和WC对Pb(II)的吸附高于AC,并且随着pH的增加而显着增加,表明RC和WC上正Pb(II)物种与带负电的官能团之间的静电相互作用是主要的吸附力。 MINTEQA2计算得出,随着pH的升高,Pb(II)物种的总正电荷减少,这表明RC和WC表面官能团的去质子化是吸附的控制因素。由于Na〜+在中和RC和WC负电荷中的屏蔽作用,Pb(II)的吸附随着离子强度的增加而降低。这项研究表明,BC可能是土壤中重金属的重要吸附剂,而且吸附可能会受到环境条件的显着影响。

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