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高羊茅生物炭对不同类型土壤中莠去津吸附和解吸的影响。

Effects of tall fescue biochar on the adsorption and desorption of atrazine in different types of soil.

机构信息

Key Laboratory of Nansihu Lake Wetland Ecological Conservation & Environmental Protection (Shandong Province), College of Geography and Tourism, Qufu Normal University, Rizhao, 276826, People's Republic of China.

Rizhao Key Laboratory of Territory Spatial Planning and Ecological Construction, Rizhao, 276826, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2021 Jan;28(4):4503-4514. doi: 10.1007/s11356-020-10821-0. Epub 2020 Sep 17.

Abstract

The excessive application of atrazine in agriculture has resulted in serious environmental contamination. The addition of biochar could reduce the bioavailability and mobility of atrazine in soil through adsorption-desorption processes. In this study, tall fescue biochar was prepared at 500 °C, and its effect on the adsorption-desorption behavior of atrazine in red soil, brown soil, and black soil was investigated. The tall fescue biochar with the pH value of 9.64 had a developed porous structure and large specific area that contained abundant surface functional groups. The element composition of the tall fescue biochar was C (50.46%), O (15.01%), N (4.54%), H (2.56%), and S (1.47%). The adsorption process of atrazine in the three soil types with and without biochar addition was divided into a fast stage, slow stage, and equilibrium stage. A pseudo second-order kinetic model was suitable for fitting the adsorption process of atrazine, and the determination coefficient (R) ranged from 0.985 to 0.999. The adsorption-desorption processes of atrazine were described accurately by the Freundlich model (R of 0.967-0.999). The adsorption capacity of the three soil types for atrazine increased significantly with the addition of biochar, whereby the equilibrium adsorption amount increased from an initial range of 3.968 to 5.902 μg g to a final range of 21.397 to 21.968 μg g. The desorption of atrazine was also inhibited as the hysteresis coefficient (HI) increased from an initial range of 0.451 to 0.586 to a final range of 0.916 to 0.941. The adsorption capacity of the red soil improved more than did the brown soil or black soil. Moreover, spontaneous adsorption of atrazine by the biochar-soil system occurred more easily at 35 °C than at 15 °C and 25 °C. Overall, tall fescue biochar was a prospective soil amendment material.

摘要

农业中超量使用莠去津导致了严重的环境污染。生物炭的添加可以通过吸附-解吸过程降低莠去津在土壤中的生物有效性和迁移性。本研究以高羊茅为原料,在 500℃下制备生物炭,考察了其对红壤、棕壤和黑土中莠去津吸附-解吸行为的影响。高羊茅生物炭的 pH 值为 9.64,具有发达的多孔结构和较大的比表面积,含有丰富的表面官能团。高羊茅生物炭的元素组成主要为 C(50.46%)、O(15.01%)、N(4.54%)、H(2.56%)和 S(1.47%)。添加和不添加生物炭的三种土壤类型中莠去津的吸附过程可分为快速阶段、缓慢阶段和平衡阶段。准二级动力学模型适合拟合莠去津的吸附过程,决定系数(R)在 0.985 到 0.999 之间。Freundlich 模型(R 在 0.967 到 0.999 之间)准确描述了莠去津的吸附-解吸过程。三种土壤类型对莠去津的吸附能力随着生物炭的添加而显著提高,平衡吸附量从初始的 3.968μg/g 到 5.902μg/g 增加到最终的 21.397μg/g 到 21.968μg/g。解吸也受到抑制,滞后系数(HI)从初始的 0.451 到 0.586 增加到最终的 0.916 到 0.941。红壤的吸附能力提高幅度大于棕壤或黑土。此外,35℃下生物炭-土壤系统对莠去津的自发吸附比 15℃和 25℃更容易发生。总的来说,高羊茅生物炭是一种有前景的土壤改良材料。

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