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Wineries wastewater treatment by constructed wetlands: a review

机译:人工湿地对酿酒厂废水的处理:综述

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The application of wetland systems for the treatment of wineries wastewater started in the early 1990s in the USA followed a few years later by France, Italy, Germany and Spain. Various studies demonstrated the efficiency of constructed wetlands (CWs) as a low cost, low maintenance and energy-saving technology for the treatment of wineries wastewater. Several of these experiences have also shown lessons to be learnt, such as some limits in the tolerance of the horizontal subsurface flow and vertical subsurface flow classic CWs to the strength of the wineries wastewater, especially in the first stage for the multistage systems. This paper is presenting an overview of all the reported experiences at worldwide level during the last 15 years, giving particular attention and provision of details to those systems that have proven to get reliable and constant performances in the long-term period and that have been designed and realized as optimized solutions for the application of CW technology to this particular kind of wastewater. The organic loading rates (OLRs) applied to the examined 13 CW systems ranged from about 30 up to about 5,000 gCOD/m(2) d (COD: chemical oxygen demand), with the 80th percentile of the reported values being below 297 gCOD/m(2) d and the median at 164 gCOD/m(2) d; the highest OLR values have in all cases been measured during the peak season (vintage) and often have been linked to lower surface removal rates (SRRs) in comparison to the other periods of the year. With such OLRs the SRRs have ranged from a minimum of 15 up to 4,700 gCOD/m(2) d, with the 80th percentile of the reported values being below 308 gCOD/m(2) d and the median at 112 gCOD/m(2) d.
机译:湿地系统用于酿酒厂废水的处理始于1990年代初的美国,几年后法国,意大利,德国和西班牙也开始使用湿地系统。各种研究表明,人工湿地(CW)的效率高,成本低,维护成本低且是节能技术,用于处理酿酒厂废水。这些经验中的一些经验还显示了需要学习的经验,例如水平地下流和垂直地下流经典CW对酿酒厂废水强度的耐受性有一些限制,特别是在多级系统的第一阶段。本文概述了过去15年中在全球范围内所报告的所有经验,并对那些已证明在长期内能够获得可靠和稳定性能的系统进行了特别关注并提供了详细信息。并实现了将CW技术应用于这种特殊废水的优化解决方案。应用于检查的13个连续水系统的有机负载率(OLR)为约30至约5,000 gCOD / m(2)d(COD:化学需氧量),报告值的第80个百分位数低于297 gCOD / m m(2)d,中位数为164 gCOD / m(2)d;在所有情况下,最高的OLR值都是在高峰季节(年份)测得的,并且与一年中其他时间段相比,通常与较低的表面去除率(SRR)相关。使用此类OLR,SRR的范围从最小值15到4,700 gCOD / m(2)d,报告值的80%低于308 gCOD / m(2)d,中位数为112 gCOD / m( 2)d。

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