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首页> 外文期刊>Ambiente e gua - An Interdisciplinary Journal of Applied Science >Sor??o de corante Remazol Black B em solos aluviais da Bacia do Rio Capibaribe Pernambuco, Brasil
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Sor??o de corante Remazol Black B em solos aluviais da Bacia do Rio Capibaribe Pernambuco, Brasil

机译:Remazol Dye Slowion Black B在Capibaribe River河流域Pernambuco,巴西

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摘要

Wastewater from textile industries is loaded with synthetic dyes. These effluents are often not adequately treated, affecting the soil and groundwater quality and leading to environmental contamination. The Agreste mesoregion of the state of Pernambuco is home to one of the largest textile centers in Brazil. This work therefore aims to study the behavior of Remazol Black B (RB5) dye in subsurface mediums in this region. The kinetics and isotherm sorption experiments allowed an evaluation of RB5 retention capacity in two layers of alluvial soil of the dry riverbed of the Capibaribe Basin. The maximum sorption rate was 81.81 mg kg-1 and 21.7 mg kg-1 for the loamy sand and sand layers, respectively. The Pseudo-second order kinetic model described more appropriately the sorption kinetics for both soils. The isotherms behavior was nonlinear, and Freundlich model was the most suitable to describe this process for both soils, presenting KF values of 8.6407 L kg-1 for loamy sand and 0.1868 L kg-1 for sand. The isotherm parameters confirm a more significant interaction of RB5 with the loamy sand layer than with the sand layer, indicating lower leaching in the first layer, which is less mobile for RB5 contamination. Furthermore, the different sorption rates for both soils indicate the importance of studying the soil as a heterogeneous profile.
机译:来自纺织工业的废水装有合成染料。这些污水通常不充分处理,影响土壤和地下水质量并导致环境污染。 Pernambuco国家的Agreste Mesoregion是巴西最大的纺织中心之一的所在地。因此,这项工作旨在研究该地区地下介质中雷达唑黑B(RB5)染料的行为。动力学和等温度吸附实验允许评估浮游生盆地干燥河床的两层冲积土壤RB5保留能力。对于植物砂和砂层,最大吸附速率分别为81.81mg kg-1和21.7mg kg-1。伪二次阶动力学模型更适当地描述了两种土壤的吸附动力学。等温行为是非线性的,并且Freundlich模型最适合描述两种土壤的该方法,呈现8.6407 L KG-1的KF值,用于壤土和0.1868L kg-1用于沙子。等温参数确认RB5与粘稠砂层的更大相互作用而不是用砂层,表明第一层中的较低浸出,这对RB5污染较少。此外,两种土壤的不同吸附率表明将土壤作为异质轮廓研究的重要性。

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