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Characterization of Winery Wastewater for Reuse in California

机译:加州酿酒厂废水回用特性

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摘要

More than thirty percent of the United States is currently in a drought that is expected to have profound social, economic, and environmental impacts. The intensification of drought conditions in southern and western regions of the country has spurred interest in wastewater reuse in agriculture, including in wine production. Presented here is the first data set of its kind to support California growers and vintners in the reuse of treated winery wastewater (WWW). The data provide a detailed description of California WWW, with particular emphasis on salinity, to enable the benefits and risks of land application to be assessed. Monthly samples were obtained over a 20-month period from 18 wineries in Ukiah, Napa, Lodi, King City, and Paso Robles. Samples collected before and after physicochemical and biological treatment were analyzed for pH, electrical conductivity (EC), cation and anion concentrations, specific ultraviolet absorbance (SUVA_(254)), dissolved organic carbon (DOC), and biological oxygen demand (BOD_5). The pH of the WWW varied widely (from 3 to 12). Organic parameters (SUVA_(254), DOC, and BOD_5) showed that treatment effectively decreased organic carbon to levels that would not have negative effects on plant growth or soil. Cation concentrations (Na~+, K~+, Ca~(2+), Mg~(2+)) in WWW were not reduced by treatment. These baseline data confirm that dissolved salts pose a challenge to the reuse of WWW. However, total salinity of the WWW was moderate (mean EC of 1.0 dS/m) and usually below risk thresholds for common winegrape rootstocks and soil salinity hazards. The conditions under which WWW could be recommended as a water management option in California are described.
机译:目前,美国有30%以上的干旱正在对社会,经济和环境产生深远的影响。该国南部和西部地区干旱的加剧加剧了人们对农业废水回用的兴趣,包括葡萄酒生产。这里提供的是第一个此类数据集,可支持加利福尼亚种植者和葡萄酒商人对经处理的酿酒厂废水(WWW)进行再利用。数据提供了对加利福尼亚WWW的详细描述,特别是盐度,以便能够评估土地申请的收益和风险。在20个月的时间内,每月从Ukiah,Napa,Lodi,King City和Paso Robles的18个酒厂获得样品。理化和生物处理前后收集的样品的pH,电导率(EC),阳离子和阴离子浓度,比紫外线吸收率(SUVA_(254)),溶解有机碳(DOC)和生物需氧量(BOD_5)进行了分析。万维网的pH值变化很大(从3到12)。有机参数(SUVA_(254),DOC和BOD_5)显示,处理有效地将有机碳降低到不会对植物生长或土壤产生负面影响的水平。处理不会降低WWW中的阳离子浓度(Na〜+,K〜+,Ca〜(2 +),Mg〜(2+))。这些基线数据证实溶解的盐对WWW的再利用构成了挑战。然而,WWW的总盐度是中等的(平均EC为1.0 dS / m),通常低于常见的葡萄柚砧木和土壤盐分危害的风险阈值。描述了在加利福尼亚可以推荐WWW作为水管理选项的条件。

著录项

  • 来源
    《American journal of enology & viticulture》 |2015年第3期|302-310|共9页
  • 作者单位

    Department of Land, Air and Water Resources, One Shields Ave., University of California Davis, Davis, CA 95616;

    USDA/ARS Crops Pathology and Genetics Research Unit, c/o Department of Viticulture and Enology, RMI North, 595 Hilgard Ln., Davis, CA 95616;

    Department of Land, Air and Water Resources, One Shields Ave., University of California Davis, Davis, CA 95616;

    Department of Land, Air and Water Resources, One Shields Ave., University of California Davis, Davis, CA 95616;

  • 收录信息 美国《科学引文索引》(SCI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    sodium; potassium; salinity; drought; reuse; BOD; greywater;

    机译:钠;钾盐度;干旱;再利用董事会灰水;

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