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基于生物炭特性对生物炭改良土壤中阿特拉津吸附与分配关系的定量评估

Quantitative evaluation of relationships between adsorption and partition of atrazine in biochar-amended soils with biochar characteristics.

作者信息

Zhao Zhendong, Wu Qianqian, Nie Tiantian, Zhou Wenjun

机构信息

Department of Environmental Science, Zhejiang University Hangzhou Zhejiang 310058 China

Zhejiang Provincial Key Laboratory of Organic Pollution Process and Control Hangzhou Zhejiang 310058 China.

出版信息

RSC Adv. 2019 Jan 31;9(8):4162-4171. doi: 10.1039/c8ra08544g. eCollection 2019 Jan 30.

Abstract

Atrazine (ATZ) adsorption in two natural soils amended with biochars produced from different feedstocks at 300, 500, and 700 °C were investigated; further, the relationships between the surface and partition adsorption capacities of ATZ in biochar-amended soils with biochar characteristics were quantitatively evaluated. The results revealed that high aromaticity, hydrophobicity, and low polarity of biochar facilitated ATZ adsorption. The addition of selected biochars significantly increased the adsorption of ATZ on paddy soil (PS) and black soil (BS) by 5.2-7.5 times and 2.3-4.2 times, respectively. On the contrary, the degree of increase in surface adsorption was much higher than that in partition adsorption, mainly due to the role of the specific adsorption of ATZ on biochar. Meanwhile, the respective contributions of surface and partition adsorptions to the total ATZ adsorption on biochar-amended soil changed with different addition amounts of biochar. The multiple nonlinear regression analysis demonstrated the linear dependence of H/C ratio, (O + N)/C ratio, and specific surface area (SSA) of biochar on the surface adsorption capacity of biochar-amended PS and BS, as well as the linear dependence of organic carbon and ash contents on the partition adsorption capacity of biochar-amended PS and the linear dependence of the H/C ratio and SSA on the partition adsorption capacity of biochar-amended BS. In biochar-amended soil systems, interactions between biochar and soil could affect ATZ adsorption, and organic matter in biochar might compensate for the role of soil organic matter in the competition for adsorption sites with a decrease in the biochar pyrolysis temperature.

摘要

研究了在300、500和700℃下用不同原料生产的生物炭改良的两种天然土壤中阿特拉津(ATZ)的吸附情况;此外,还定量评估了生物炭改良土壤中ATZ的表面吸附容量和分配吸附容量与生物炭特性之间的关系。结果表明,生物炭的高芳香性、疏水性和低极性有利于ATZ的吸附。添加选定的生物炭分别使ATZ在水稻土(PS)和黑土(BS)上的吸附显著增加了5.2 - 7.5倍和2.3 - 4.2倍。相反,表面吸附的增加程度远高于分配吸附,这主要是由于ATZ在生物炭上的特异性吸附作用。同时,表面吸附和分配吸附对生物炭改良土壤中总ATZ吸附的各自贡献随生物炭添加量的不同而变化。多元非线性回归分析表明,生物炭的H/C比、(O + N)/C比和比表面积(SSA)与生物炭改良PS和BS的表面吸附容量呈线性相关,生物炭的有机碳和灰分含量与生物炭改良PS的分配吸附容量呈线性相关,生物炭的H/C比和SSA与生物炭改良BS的分配吸附容量呈线性相关。在生物炭改良土壤系统中,生物炭与土壤之间的相互作用会影响ATZ的吸附,并且随着生物炭热解温度的降低,生物炭中的有机质可能会弥补土壤有机质在吸附位点竞争中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f34c/9060563/1d179d0c4653/c8ra08544g-f1.jpg

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