Grismer Mark E, Carr Melanie A, Shepherd Heather L
University of California, Davis 95616, USA.
Water Environ Res. 2003 Sep-Oct;75(5):412-21. doi: 10.2175/106143003x141213.
Rapid expansion of wineries in rural California during the past three decades has created contamination problems related to winery wastewater treatment and disposal; however, little information is available about performance of on-site treatment systems. Here, the project objective was to determine full-scale, subsurface-flow constructed wetland retention times and treatment performance through assessment of water quality by daily sampling of total dissolved solids, pH, total suspended solids, chemical oxygen demand (COD), tannins, nitrate, ammonium, total Kjeldahl nitrogen, phosphate, sulfate, and sulfide across operating systems for winery wastewater treatment. Measurements were conducted during both the fall crush season of heavy loading and the spring following bottling and racking operations at the winery. Simple decay model coefficients for these constituents as well as COD and tannin removal efficiencies from winery wastewater in bench-scale reactors are also determined. The bench-scale study used upward-flow, inoculated attached-growth (pea-gravel substrate) reactors fed synthetic winery wastewater. Inlet and outlet tracer studies for determination of actual retention times were essential to analyses of treatment performance from an operational subsurface-flow constructed wetland that had been overloaded due to failure to install a pretreatment system for suspended solids removal. Less intensive sampling conducted at a smaller operational winery wastewater constructed wetland that had used pretreatment suspended solids removal and aeration indicated that the constructed wetlands were capable of complete organic load removal from the winery wastewater.
在过去三十年中,加利福尼亚州农村地区酒庄的迅速扩张带来了与酒庄废水处理和处置相关的污染问题;然而,关于现场处理系统性能的信息却很少。在此,该项目的目标是通过对用于酒庄废水处理的运行系统中的总溶解固体、pH值、总悬浮固体、化学需氧量(COD)、单宁、硝酸盐、铵、凯氏氮总量、磷酸盐、硫酸盐和硫化物进行每日采样来评估水质,从而确定全尺寸的地下流人工湿地的保留时间和处理性能。测量在秋季重负荷压榨季节以及酒庄装瓶和 racking 操作后的春季进行。还确定了这些成分的简单衰减模型系数以及实验室规模反应器中酒庄废水中COD和单宁的去除效率。实验室规模的研究使用向上流动、接种附着生长(豌豆砾石基质)的反应器,向其中加入合成酒庄废水。对于一个因未安装去除悬浮固体的预处理系统而超载的运行中的地下流人工湿地,进行进水和出水示踪剂研究以确定实际保留时间对于分析其处理性能至关重要。在一个使用了预处理悬浮固体去除和曝气的较小的运行中的酒庄废水人工湿地进行的强度较低的采样表明,人工湿地能够完全去除酒庄废水中的有机负荷。