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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Fertirrigation with sugarcane vinasse: Foreseeing potential impacts on soil and water resources through vinasse characterization
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Fertirrigation with sugarcane vinasse: Foreseeing potential impacts on soil and water resources through vinasse characterization

机译:用甘蔗酒酿造肥料:通过酒糟表征预测对土壤和水资源的潜在影响

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摘要

This paper reports the characterization of the polluting potential of sugarcane vinasse, the main wastewater from ethanol production. Compositional data from vinasse samples collected from sugarcane biorefineries were used to predict negative effects on the soil, water resources and crops potentially associated with fertirrigation, the primary final destination of vinasse in Brazil. High risks of soil salinization were associated with the land disposal of vinasse, as evidenced by the high levels of total dissolved solids (TDS; >4,000mg L-1) and electrical conductivity (>6.7 dS m(-1)). The high TDS levels coupled with the high biodegradable organic content of vinasse (>14g L-1) also favor organic overloading events, leading to local anaerobiosis conditions. Conversely, soil sodification should not be observed in areas fertirrigated with sugarcane vinasse, given the low Na concentrations (<66mg L-1) relative to Mg (>145.1mg L-1) and Ca (>458.4mg L-1) levels. Priority pollutants (Cu, Cr, Ni, Pb and Zn) and phytotoxic elements (Al and Fe) were also found in the analyzed samples; however, relevant environmental impacts should not be associated with these particular constituents. Overall, the relatively simple methodology used herein could efficiently replace massive field data collection to provide a basic understanding of the fate of vinasse in the environment in order to highlight the priority points to be considered in the management of this effluent. In summary, the prompt implementation of treatment plants in distilleries, in addition to a continuous and broad compositional characterization of vinasse, is essential to guarantee its adequate reuse.
机译:本文报道了甘蔗酒糟(乙醇生产的主要废水)的潜在污染特征。来自甘蔗生物精炼厂的酒糟样本的成分数据被用来预测对土壤,水资源和可能与灌溉相关的不利影响,而灌溉是巴西酒糟的主要最终目的地。高总溶解固体含量(TDS;> 4,000mg L-1)和电导率(> 6.7 dS m(-1))证明了土壤盐碱化的高风险与酒糟的土地处置有关。 TDS含量高,加上酒糟的可生物降解的有机物含量高(> 14g L-1),也有利于有机物超负荷,导致局部厌氧菌病。相反,鉴于Na浓度(<66mg L-1)相对于Mg(> 145.1mg L-1)和Ca(> 458.4mg L-1)水平较低,在用甘蔗酒酿造的地区不应观察到土壤干燥。在分析样品中还发现了优先污染物(铜,铬,镍,铅和锌)和植物毒性元素(铝和铁)。但是,相关的环境影响不应与这些特定的成分相关联。总体而言,本文中使用的相对简单的方法可以有效地代替大量现场数据收集,以提供对环境中酒糟命运的基本了解,从而突出显示在处理该废水时要考虑的优先事项。总而言之,除了对酒糟进行连续和广泛的成分表征之外,在酿酒厂中迅速实施处理厂对于保证其充分的再利用至关重要。

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