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Integrated life cycle assessment of improving saline-sodic soil with flue gas desulfurization gypsum

机译:烟气脱硫石膏改良盐碱土的生命周期综合评价

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A large quantity of flue gas desulfurization gypsum (FGDG), a by-product of removing sulfur from combustion gases in coal-fired power generation plants, was produced in the world. Improving saline-sodic soils with FGDG is one of the effective ways to utilize FGDG. However, the use of FGDG has severe impacts on the environment. With growing application of FGDG for improving soils, there is an increasing necessity to analyze the environmental impact on the entire agricultural application process. Life cycle assessment (LCA) is useful for comparing the potential risks of different environmental impact categories and stages. Traditional LCA methods have some limits in comparing various schemes, while the Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS) has its unique advantages in multi-objective decision-making. Therefore, this study identified and compared the environmental impacts of four alternative schemes in three stages using LCA combined with TOPSIS. In this study, the environmental impact of improving 1 ha saline-sodic soil was assessed, and a sensitivity analysis was conducted to analyze the effects of the changes in heavy metals in FGDG and in irrigation. The highest impact category was water consumption, with a weighted environmental impact value of 2.20 x 10(-1) and a contribution rate of 42.216%. The second-highest environmental impact category was soil toxicity, with a weighted environmental impact potential value of 8.04 x 10(-2) and a contribution rate of 15.429%. The soil toxicity was mostly from the application stage, while the water and energy consumption were mainly from the irrigation of planting stage. Acidification and eutrophication were mainly from fertilizer applications. Effective measures, including scientific use of fertilizers and pesticide, reasonable irrigation and strict control of heavy metals in FGDG should be employed to mitigate environmental risks during the agricultural application of FGDG. This study constructed a framework for the environmental impacts of improving saline-sodic soils with FGDG integrated with TOPSIS, and can be considered as an effort to advance the application of LCA. (C) 2018 Elsevier Ltd. All rights reserved.
机译:世界上生产了大量的烟气脱硫石膏(FGDG),这是从燃煤发电厂的燃烧气体中去除硫的副产品。用FGDG改良盐碱土壤是利用FGDG的有效方法之一。但是,使用FGDG对环境有严重影响。随着FGDG在改良土壤中的应用越来越广泛,越来越有必要分析环境对整个农业应用过程的影响。生命周期评估(LCA)可用于比较不同环境影响类别和阶段的潜在风险。传统的LCA方法在比较各种方案时有一定的局限性,而类似于理想解决方案的顺序偏好技术(TOPSIS)在多目标决策中具有其独特的优势。因此,本研究使用LCA和TOPSIS在三个阶段中确定并比较了四个替代方案对环境的影响。在这项研究中,评估了改良1 ha盐碱土壤对环境的影响,并进行了敏感性分析,以分析FGDG和灌溉中重金属变化的影响。影响最大的类别是水消耗,加权环境影响值为2.20 x 10(-1),贡献率为42.216%。第二高的环境影响类别是土壤毒性,加权的环境影响潜在值为8.04 x 10(-2),贡献率为15.429%。土壤毒性主要来自施用阶段,而水和能源消耗主要来自种植阶段的灌溉。酸化和富营养化主要来自肥料应用。在烟气脱硫剂的农业应用过程中,应采取有效措施,包括科学地使用化肥和农药,合理灌溉和严格控制烟气脱硫剂中的重金属,以减轻环境风险。这项研究构建了一个框架,用于结合TOPSIS的FGDG改良盐碱土壤的环境影响,并且可以被认为是推进LCA应用的一项努力。 (C)2018 Elsevier Ltd.保留所有权利。

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