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Transport of Trace Elements in Runoff from Unamended and Pond-Ash Amended Feedlot Surfaces

机译:从未修正和池塘灰修正的饲养场表面中的径流中微量元素的运输

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The use of pond ash (fly ash that has been placed in evaporative ponds for storage and subsequently dewatered) for feedlot surfaces provides a drier environment for livestock and furnishes economic benefits. However, pond ash is known to have high concentrations of trace elements, and the runoff water-quality effects offeedlot surfaces amended with pond ash are not well defined. For this study, two experimental units (plots) were established in eight feedlot pens. Four of the pens contained unamendedsoil surfaces, and the remaining four pens had pond-ash amended surfaces. Before each test, unconsolidated surface material was removed from four of the plots for each of the amendment treatments, resulting in eight unamended plots and eight pond-ash amended plots. Concentrations for 23 trace elements were measured in cattle feedlot surface material and in the runoff water from three simulated rainfall events. Trace element concentrations in surface material and runoff did not differ between surface consolidation treatments. Amending the feedlot surface material with pond ash resulted in a significant increase in concentration for 14 of the 17 trace elements. Runoff concentrations for 21 trace elements were affected by pond-ash amendment. Sixteen of 21 trace element concentrations that differed significantly were greater in runoff from unamended soil surfaces. Concentrations in runoff were significantly correlated with concentrations in feedlot surface material for boron, manganese, molybdenum, selenium, and uranium.
机译:在饲养场表面上使用池塘灰(粉煤灰已放置在蒸发池中进行存储,随后进行了脱水)为饲养场表面提供了更干燥的环境,并提供了经济利益。然而,已知池塘灰分中的微量元素含量很高,用池塘灰分修正的育​​肥场表面的径流水质影响尚不明确。对于本研究,在八只育肥场围栏中建立了两个实验单元(图)。其中有四支笔的表面未修饰,其余四支笔的表面为池塘灰。在每次测试之前,对于每种改良剂处理,从四个样地中除去未固结的表面材料,从而形成八个未修改的样地和八个池塘灰校正的样地。在三个模拟降雨事件中,对牛饲养场表层材料和径流水中的23种微量元素进行了测量。表面固结处理之间表面材料和径流中的痕量元素浓度没有差异。用池塘灰分对育肥场表面材料进行修正,导致17种微量元素中的14种的浓度显着增加。池塘灰分的修正影响了21种微量元素的径流浓度。在未修正的土壤表面,径流中21种微量元素的浓度中有十六种显着不同。径流浓度与硼,锰,钼,硒和铀的肥育场表层物质浓度显着相关。

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