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CONVERSION OF POTOMAC RIVER DREDGE SEDIMENTS TO PRODUCTIVE AGRICULTURAL SOILS

机译:波托马克河疏浚沉积物对生产性农业土壤的转换

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River channel and harbor dredging activities in the eastern USA generate hundreds of millions of yards of dredge materials annually with very little used beneficially. The Woodrow Wilson Bridge project across the Potomac River at Washington D.C. generated in excess of 450,000 m3 of silt loam, high pH, low salt dredge materials. The materials were barged to Shirley Plantation on the James River in Charles City Co. Virginia, and placed into an upland utilization area atop a previously reclaimed sand and gravel mine. The strongly reduced inbound sediments were very low in sulfides, pesticides, and other contaminants. The materials were dewatered, treated with varying rates of yardwaste compost and planted to wheat (Triticum vulgare) in the fall of 2001 and corn (Zea mays) in 2002 and 2003. Winter wheat yields in 2001 were similar to local agricultural lands despite animal damage and less than ideal establishment conditions. Average corn yields in 2002 were greater than long-term county prime farmland yields in a severe drought year (2002) and equaled county averages in a wet year (2003). Soil pit and auger observations revealed significant oxidation and formation of a deep Ap-AC-C profiles with coarse prismatic structure within two years after placement. Overall, the chemical and physical properties of these materials are equal or superior to the best topsoils in the region, supporting federal initiatives to utilize suitable dredge materials in upland environments whenever possible.
机译:河道和港口疏浚东部疏浚活动每年都会产生数亿艘疏浚物料,很少有利地使用。 Woodrow Wilson桥梁在华盛顿州的波托马克河上项目。由于超过45万M3的淤泥壤土,高pH,低盐水疏水材料产生。这些材料驳回了Charles City Co. Co.弗吉尼亚州的詹姆斯河上的Shirley种植园,并置于一个先前再生的沙子和砾石矿的高地利用区。硫化物,农药和其他污染物的强烈减少的入侵沉积物非常低。将材料脱水,以5001岁的余量堆肥和种植到小麦(Triticum Vulgare),2002年和2003年的玉米(Zea Mays)种植。尽管动物损害,2001年冬小麦产量与当地的农产品相似而不是理想的建立条件。 2002年的平均玉米产量大于严重干旱年份(2002年)和潮湿年份(2003年)的县平均值的长期县的玉米产量。土壤坑和螺旋钻观察显示在放置后两年内具有粗棱柱结构的深度AP-AC-C型材的显着氧化和形成。总体而言,这些材料的化学和物理性质等于或优于该地区的最佳表土,在尽可能尽可能在高地环境中使用合适的疏浚材料。

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