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OPTIMIZATION OF PHOSPHORUS PARTITIONING IN DAIRY MANURE USING CHEMICAL ADDITIVES WITH A MECHANICAL SOLIDS SEPARATOR

机译:带有机械固粒分离器的化学添加剂优化乳品中磷的分配

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摘要

The use of liquid aluminum sulfate (alum) and a cationic polymer to precipitate soluble phosphorus, measured as dissolved reactive phosphorus (DRP), from dairy manure was investigated in conjunction with a mechanical screw press solids separator. The ability to partition phosphorus (P) into the recovered solids would increase the feasibility of transporting P off the farm. Initial settling studies were conducted using Imhoff cones to determine the effectiveness of aluminum (Al) to P molar ratios of 2.5:1, 5:1, and 7.5:1. In the Imhoff cone tests, the DRP concentration in the treated bulk liquid was 68%, 95%, and 98% less than the control, respectively. For the mechanical separator tests, alum was added at a molar ratio of Al to P (measured as DRP, but converted to an elemental P equivalency for the ratio calculations) of 5.5:1, and alum plus a cationic polymer was tested with the alum added at an Al to P molar ratio of 7.5:1. The DRP concentrations in the manure after alum amendment at the 5.5:1 Al:P ratio (and prior to processing in the separator) and in the press liquor were 52% less than prior to alum amendment. The total phosphorus (TP) in the press liquor was not affected by alum addition because the aluminum phosphate floc remained with the press liquor when alum alone was added. With the addition of alum at a 7.5:1 Al:P ratio in conjunction with cationic polymer at a rate of 55.5 mg L -1 , the DRP concentration in the press liquor was reduced by 96%. When compared to the control, waste amended with alum and polymer had 82% less TP in the press liquor, which indicates that P was partitioned into the press cake. This combined alum/polymer treatment also resulted in a 36% reduction in TS and a 71% reduction in chemical oxygen demand (COD) in the press liquor when compared to the control. Polymer addition also increased the dry mass capture efficiency of the solid separator to 81.8% compared to 65.5% in the control, but the press liquor flow rate was reduced by 81%. The combined retail cost for alum and polymer addition at the above rates is estimated to be $2.63 per 1000 L of treated manure slurry. The results indicate that a cationic polymer used in conjunction with alum amendment can effectively partition P into the press cake during mechanical solids separation
机译:结合机械螺旋压榨固体分离器,研究了使用液态硫酸铝(铝)和阳离子聚合物从奶牛粪便中沉淀出可溶性磷(以可溶性反应性磷(DRP)的形式测量)。将磷(P)分配到回收的固体中的能力将增加将P运出农场的可行性。使用Imhoff锥体进行初步沉降研究,以确定铝(Al)与P摩尔比为2.5:1、5:1和7.5:1的有效性。在伊姆霍夫锥试验中,处理后的大块液体中的DRP浓度分别比对照低68%,95%和98%。对于机械分离器测试,以5.5:1的Al与P的摩尔比(测量为DRP,但换算为元素P当量进行换算)添加明矾,并用明矾测试明矾和阳离子聚合物铝和磷的摩尔比为7.5:1。在明矾改良后(以及在分离器中进行处理之前)和压榨液中,明矾改良后粪肥中的DRP浓度比明矾改良之前低52%。压榨液中的总磷(TP)不受明矾添加的影响,因为当仅添加明矾时,磷酸铝絮凝物仍与压榨液一起保留。通过以7.5:1 Al:P的比例添加明矾与阳离子聚合物以55.5 mg L 的比例添加,压榨液中的DRP浓度降低了96%。与对照相比,用明矾和聚合物改性的废料在压榨液中的TP降低了82%,这表明P被分配到了压滤饼中。与对照相比,这种组合的明矾/聚合物处理还使压榨液中的TS降低了36%,化学需氧量(COD)降低了71%。与对照中的65.5%相比,添加聚合物还使固体分离器的干物质捕集效率提高到81.8%,但压榨液流速降低了81%。以上述速率添加明矾和聚合物的零售总成本估计为每1000 L处理粪肥2.63美元。结果表明,与明矾改良剂配合使用的阳离子聚合物可以在机械固相分离过程中将P有效地分配到压滤饼中

著录项

  • 来源
    《Transactions of the ASAE》 |2005年第3期|p.1235-1240|共6页
  • 作者单位

    Inhwan Oh, Professor, Department of Agricultural and Biosystems Engineering, Konkuk University, Chungju, South Korea;

    Robert T. Burns, ASAE Member Engineer, Associate Professor, and Lara B. Moody, ASAE Member Engineer, Extension Program Specialist, Department of Agricultural and Biosystems Engineering, Iowa State University, Ames, Iowa;

    and Jaehoon Lee, Assistant Professor, Department of Biosystems Engineering and Environmental Science, The University of Tennessee, Knoxville, Tennessee. Corresponding author: Robert Burns, Department of Agricultural and Biosystems Engineering, Iowa State University, 3224 NSRIC, Ames, IA 50011;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aluminum sulfate; Dairy manure; Dissolved reactive phosphorus; Imhoff cone; Polymer; Screw press; Soluble phosphorus;

    机译:硫酸铝;乳牛粪;溶解的活性磷;伊姆霍夫锥聚合物;螺旋压力机可溶性磷;

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