农业钙质黄土中螺旋霉素的吸附保留:评估影响因素和机制的作用

IF 3.8 4区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES Water, Air, & Soil Pollution Pub Date : 2024-07-03 DOI:10.1007/s11270-024-07312-0
Zhewei Liu, Yufeng Jiang, Rui He, Jiali Wu, Xiaozhen Zhang, Kui Huang, Yingqin Wu
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引用次数: 0

摘要

不同抗生素的吸附截留能力和土壤的理化性质会有很大差异,从而导致其在土壤环境中的截留能力不同。为探讨螺旋霉素(SPI)在三种不同农用钙质黄土中的吸附截留特性、转移风险及影响因素,采用间歇平衡法对其进行了研究。结果表明,假二阶模型可以很好地描述吸附动力学数据,Freundlich 模型可以描述吸附等温线。这些模型参数表明,土壤有机质(SOM)和阳离子交换容量(CEC)对 SPI 的吸附保留起着关键作用,而土壤粘土含量和 pH 值也有一定影响。此外,SPI 的解吸量始终小于 35%,表现出高度的不可逆性和明显的解吸滞后性,使其容易滞留在土壤中。在 pH 值为 3 到 7 的范围内,吸附量变化不大。在 pH 值为 7 时,土壤和 SPI 之间的阳离子桥接以及静电引力的存在促进了吸附。当 pH 值超过 7 时,由于静电排斥作用,吸附量减少。与 K+ 和 NH4+ 相比,Ca2+、Mg2+ 等高价离子和浓度较高的离子对吸附有明显的抑制作用。对吸附剂的傅立叶变换红外光谱分析显示,吸附保留主要受阳离子交换、氢键和表面络合作用的影响。该研究为评估典型兽用抗生素在土壤环境中的滞留能力和转移风险提供了科学依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Adsorption retention of spiramycin in agricultural calcareous loess soils: Assessing the impact of influential factors and mechanisms

The adsorption retention of different antibiotics and the physical and chemical properties of soil can vary significantly, leading to differences in their retention ability in soil environments. To investigate the adsorption retention characteristics and transfer risk, as well as influential factors of spiramycin (SPI) in three different agricultural calcareous loess soils, which were studied by means of batch equilibrium method. The results show that the adsorption kinetics data can be well described by the pseudo-second-order model, and the sorption isotherms can be described by the Freundlich model. These model parameters indicate that soil organic matter (SOM) and cation exchange capacity (CEC) play a key role in the adsorption retention of SPI, while soil clay content and pH also exert some influence. Furthermore, the desorption amounts of SPI were consistently less than 35%, showing a high degree of irreversibility and a clear desorption hysteresis, making it prone to remaining retention in the soil. The adsorption amount changed little of pH value from 3 to 7. At a pH value of 7, adsorption is promoted by cation bridging between soil and SPI, and the existence of electrostatic attraction. The adsorption amount decreased when the pH value exceeded 7 dues to electrostatic repulsion. Compared with K+ and NH4+, the presence of high valence ions such as Ca2+, Mg2+ and ions with higher concentration has a significant inhibitory effect on adsorption. The FTIR spectral analysis of the adsorbents revealed that the adsorption retention was mainly governed by cation exchange, hydrogen bonding, and surface complexation. This study provides a scientific basis for assessing the retention ability and transfer risk of typical veterinary antibiotics in the soil environment.

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来源期刊
Water, Air, & Soil Pollution
Water, Air, & Soil Pollution 环境科学-环境科学
CiteScore
4.50
自引率
6.90%
发文量
448
审稿时长
2.6 months
期刊介绍: Water, Air, & Soil Pollution is an international, interdisciplinary journal on all aspects of pollution and solutions to pollution in the biosphere. This includes chemical, physical and biological processes affecting flora, fauna, water, air and soil in relation to environmental pollution. Because of its scope, the subject areas are diverse and include all aspects of pollution sources, transport, deposition, accumulation, acid precipitation, atmospheric pollution, metals, aquatic pollution including marine pollution and ground water, waste water, pesticides, soil pollution, sewage, sediment pollution, forestry pollution, effects of pollutants on humans, vegetation, fish, aquatic species, micro-organisms, and animals, environmental and molecular toxicology applied to pollution research, biosensors, global and climate change, ecological implications of pollution and pollution models. Water, Air, & Soil Pollution also publishes manuscripts on novel methods used in the study of environmental pollutants, environmental toxicology, environmental biology, novel environmental engineering related to pollution, biodiversity as influenced by pollution, novel environmental biotechnology as applied to pollution (e.g. bioremediation), environmental modelling and biorestoration of polluted environments. Articles should not be submitted that are of local interest only and do not advance international knowledge in environmental pollution and solutions to pollution. Articles that simply replicate known knowledge or techniques while researching a local pollution problem will normally be rejected without review. Submitted articles must have up-to-date references, employ the correct experimental replication and statistical analysis, where needed and contain a significant contribution to new knowledge. The publishing and editorial team sincerely appreciate your cooperation. Water, Air, & Soil Pollution publishes research papers; review articles; mini-reviews; and book reviews.
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