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Using desulfurization slag as the aquacultural amendment for fish pond water quality improvement: Mechanisms and effectiveness studies

机译:使用脱硫矿渣作为水产养殖改良剂改善鱼塘水质:机理和有效性研究

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The objective of this study was to evaluate the potential of applying desulfurization slag (DS) as pavement materials and amendments in the aquacultural industry for water quality improvement. The results of characteristic analyses and a mobile factor calculation show that the bonding patterns of heavy metals in DS were stable and had low bioavailability and mobility. DS can effectively adsorb ammonia and phosphate according to the pseudo second-order kinetics model. The adsorption isotherm for ammonia can be described by the Langmuir model. Both the Langmuir and Freundlich models can be used for phosphate adsorption isotherm evaluation. Ammonia adsorption involved physical adsorption, and the mechanisms for phosphate removal included adsorption and chemical precipitation. The adsorption of ammonia by DS was a non-spontaneous endothermic process, and the adsorption of phosphate was a spontaneous exothermic process. The results from excitation emission fluorescence matrix analysis show that the organic substances in the fish pond with DS addition included a soluble microbial product, protein-like substance, and humic acid-like substance. This indicates that algal growth and biomass accumulation could be enhanced by DS addition because the released trace elements and hydroxide ions from DS are beneficial to algal growth. Using DS as an amendment and construction material for the fish pond would increase the water alkalinity and prevent acidification of pond water. The results indicate that DS can be used in the aquacultural industry as construction material as well as for pH control and algal growth enhancement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估在水产养殖业中应用脱硫矿渣(DS)作为路面材料和改良剂来改善水质的潜力。特性分析和流动因子计算的结果表明,DS中重金属的键合模式稳定且生物利用度和迁移率较低。 DS可以根据伪二级动力学模型有效吸附氨和磷酸盐。氨的吸附等温线可以用Langmuir模型描述。 Langmuir和Freundlich模型均可用于磷酸盐吸附等温线评估。氨吸附涉及物理吸附,而磷酸盐去除的机理包括吸附和化学沉淀。 DS吸附氨是一个非自发的吸热过程,而磷酸盐吸附是一个自发的放热过程。激发发射荧光矩阵分析的结果表明,添加DS的鱼池中的有机物包括可溶性微生物产物,蛋白质样物质和腐殖酸样物质。这表明通过添加DS可以增强藻类的生长和生物量的积累,因为从DS释放的微量元素和氢氧根离子对藻类的生长是有益的。将DS用作鱼池的改良剂和建筑材料将增加水的碱度并防止鱼池水的酸化。结果表明,DS可以在水产养殖业中用作建筑材料以及用于pH值控制和藻类生长增强。 (C)2016 Elsevier Ltd.保留所有权利。

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