State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, P.O. Box 821, Nanjing, China,
Environ Sci Pollut Res Int. 2013 Dec;20(12):8491-501. doi: 10.1007/s11356-013-1769-8. Epub 2013 May 7.
The purpose of this study is to compare the relative contribution of different mechanisms to the enhanced adsorption of Cu(II), Pb(II) and Cd(II) by variable charge soils due to incorporation of biochars derived from crop straws. The biochars were prepared from the straws of canola and peanut using an oxygen-limited pyrolysis method at 350 °C. The effect of biochars on adsorption and desorption of Cu(II), Pb(II) and Cd(II) by and from three variable charge soils from southern China was investigated with batch experiments. Based on the desorption of pre-adsorbed heavy metals, the electrostatic and non-electrostatic adsorptions were separated. EDTA was used to replace the heavy metals complexed with biochars and to evaluate the complexing ability of the biochars with the metals. The incorporation of biochars increased the adsorption of Cu(II), Pb(II) and Cd(II) by the soil; peanut straw char induced a greater increase in the adsorption of the three metals. The increased percentage of Cd(II) adsorption induced by biochars was much greater than that for the adsorption of Cu(II) and Pb(II). Cu(II) adsorption on three variable charge soils was enhanced by the two biochars mainly through a non-electrostatic mechanism, while both electrostatic and non-electrostatic mechanisms contributed to the enhanced adsorption of Pb(II) and Cd(II) due to the biochars. Peanut straw char had a greater specific adsorption capacity than canola straw char and thus induced more non-electrostatic adsorption of Cu(II), Pb(II) and Cd(II) by the soils than did the canola straw char. The complexing ability of the biochars with Cu(II) and Pb(II) was much stronger than that with Cd(II) and thus induced more specific adsorption of Cu(II) and Pb(II) by the soils than that of Cd(II). Biochars increased heavy metal adsorption by the variable charge soils through electrostatic and non-electrostatic mechanisms, and the relative contribution of the two mechanisms varied with metals and biochars.
本研究旨在比较不同机制对添加作物秸秆生物炭后可变电荷土壤增强吸附 Cu(II)、Pb(II) 和 Cd(II) 的相对贡献。生物炭是通过在 350°C 下使用氧气限制热解方法从油菜和花生秸秆中制备的。通过批量实验研究了生物炭对来自中国南方的三种可变电荷土壤中 Cu(II)、Pb(II) 和 Cd(II) 的吸附和解吸的影响。基于预吸附重金属的解吸,分离了静电和非静电吸附。使用 EDTA 替代与生物炭络合的重金属,以评估生物炭与金属的络合能力。生物炭的添加增加了土壤对 Cu(II)、Pb(II) 和 Cd(II) 的吸附;与油菜秸秆炭相比,花生秸秆炭诱导了三种金属吸附的更大增加。生物炭诱导的 Cd(II)吸附增加百分比远大于 Cu(II)和 Pb(II)的吸附增加百分比。两种生物炭主要通过非静电机制增强了三种可变电荷土壤对 Cu(II)的吸附,而静电和非静电机制都有助于由于生物炭而增强了对 Pb(II)和 Cd(II)的吸附。与油菜秸秆炭相比,花生秸秆炭具有更大的比表面积,因此比油菜秸秆炭诱导更多的非静电吸附 Cu(II)、Pb(II) 和 Cd(II)。生物炭与 Cu(II)和 Pb(II)的络合能力远强于 Cd(II),因此比 Cd(II)诱导更多的 Cu(II)和 Pb(II)被土壤特异性吸附。生物炭通过静电和非静电机制增加了可变电荷土壤对重金属的吸附,两种机制的相对贡献随金属和生物炭的不同而变化。
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