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The effect of biochar amendments on phenanthrene sorption desorption and mineralisation in different soils

机译:生物炭改良剂对不同土壤菲吸附解吸和矿化的影响

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摘要

The contamination of soils and waters with organic pollutants, such as polycyclic aromatic hydrocarbons (PAHs), affect a large number of sites worldwide that need remediation. In this context soils amendments can be used to immobilise PAHs while maintaining soil functioning, with biochar being a promising amendment. In this experiment, phenantrene (Phe) was used as a frequent PAH contaminating soils and we studied the effect of three biochars at 1% applications to three different substrates, two agricultural topsoils and pure sand. We evaluated the changes in soil properties, sorption-desorption of Phe, and mineralisation of Phe in all treatments. Phe in pure sand was effectively sorbed to olive pruning (OBC) and rice husk (RBC) biochars, but pine biochar (PBC) was not as effective. In the soils, OBC and RBC only increased sorption of Phe in the silty soil. Desorption was affected by biochar application, RBC and OBC decreased water soluble Phe independently of the soil, which may be useful in preventing leaching of Phe into natural waters. Contrastingly, OBC and RBC slightly decreased the mineralisation of Phe in the soils, thus indicating lower bioavailability of the contaminant. Overall, biochar effects in the two tested soils were low, most likely due to the rather high soil organic C (SOC) contents of 2.2 and 2.8% with Koc values in the same range as those of the biochars. However, OBC and RBC additions can substantially increase adsorption of Phe in soils poor in SOC.
机译:土壤和水域受到有机污染物(如多环芳烃(PAH))的污染,影响了全世界许多需要补救的场所。在这种情况下,土壤改良剂可用于固定多环芳烃,同时保持土壤功能,其中生物炭是一种有前途的改良剂。在该实验中,菲(Phe)被用作PAH的常见污染土壤,我们研究了三种生物炭在1%施用量对三种不同基质,两种农业表层土和纯砂的影响。我们评估了所有处理中土壤性质,Phe的吸附-解吸和Phe矿化的变化。纯沙子中的苯丙氨酸可有效吸附到橄榄修剪(OBC)和稻壳(RBC)生物炭中,但松木生物炭(PBC)效果不佳。在土壤中,OBC和RBC仅增加了粉质土壤中Phe的吸附。解吸受生物炭施用的影响,RBC和OBC会独立于土壤而降低水溶性Phe,这可能有助于防止Phe浸入天然水中。相反,OBC和RBC稍微减少了土壤中Phe的矿化作用,因此表明污染物的生物利用度较低。总体而言,两种被测土壤中的生物炭效应都很低,最可能的原因是土壤有机碳(SOC)含量较高,分别为2.2和2.8%,而Koc值与生物炭相同。但是,添加OBC和RBC可以大大增加SOC差的土壤中Phe的吸附。

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