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71.
The objective of this study was to compare the effects of repeated field applications of three urban compost amendments and one farmyard manure amendment over a 9-year period on aggregate stability in a silty loam soil initially characterized by low clay and initial organic matter contents and poor aggregate stability. Three different aggregate stability tests with increasing disruptive intensities (fast wetting > mechanical breakdown > slow wetting tests) and different disaggregation mechanisms, were used. All of the amendments, which were applied at approximately 4 Mg C ha−1 every other year, increased the organic carbon content and improved the stability of the aggregates against the disruptive action of water, as determined by each of the stability tests. However, the year-to-year variations in the aggregate stability that related to factors other than the organic inputs were greater than the cumulative increase in aggregate stability relative to the control. The positive effects of the tested amendments on aggregate stability were linked to their contribution to soil organic C contents (r = 0.54 for the fast wetting test and r = 0.41-0.42 for the mechanical breakdown and slow wetting tests; p < 0.05). The addition of urban composts had a larger positive effect on aggregate stability than farmyard manure at the majority of sampling dates. The addition of biodegradable immature compost, such as municipal solid waste (MSW), improved the aggregate stability through an enhanced resistance to slaking. The addition of mature composts, such as the co-compost of sewage sludge and green wastes (GWS) or biowaste compost (BW), improved the aggregate stability by increasing interparticular cohesion. The MSW compost was the most efficient in improving aggregate stability during the first 6 years of the experiment (average improvements of +22%, +5% and +28% in the fast wetting, mechanical breakdown and slow wetting tests, respectively, compared to the control treatment); this result was likely due to the larger labile organic pool of the MSW compost that was highly effective at stimulating soil microbial activity. After the first 6 years, the two other composts, GWS and BW, became more efficient (average improvements of +25%, +61% and +33% in the fast wetting, mechanical breakdown and slow wetting tests, respectively, compared to the control treatment), which was probably linked to the greater increase in soil organic C contents. Therefore, the application of urban compost to silty soil that is susceptible to water erosion was effective at improving aggregate stability and thus could be used to enhance the resistance of soil to water erosion. 相似文献
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为了了解过氧化氢与三维电极的协同作用,以罗丹明B模拟废水进行了实验研究,探索了填料配比、外加电压、过氧化氢投加量、初始废水pH值、染料初始浓度等单因子对降解罗丹明B的影响,并通过正交试验研究各因素对该法处理罗丹明B模拟废水的效应.结果表明,过氧化氢与三维电极在处理罗丹明B模拟废水时具有明显的协同作用;外加电压=20v,... 相似文献
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试验采用氟化铵与石灰石粉、石灰乳反应制取氟化钙,研究了反应温度、物料浓度、物料过量系数等各主要参数变化对氟化钙结晶、过滤速度、氟收率及其含量的影响,摸索出最优反应条件。 相似文献
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农田排水沟渠水体-底泥中溶质氮分布特征试验研究 总被引:1,自引:1,他引:0
沟渠系统"过程拦截"是现阶段农业非点源污染控制和管理的重要手段.针对当前农田排水沟渠水体-底泥-植物系统内各介质间非点源溶质迁移转化机制不清的现状,本研究以天然沟渠为对象,以非点源溶质氮为例,通过2014年3月~2015年2月现场监测试验,分析了农田排水沟渠水体及底泥中非点源溶质氮的分布特征.结果表明,沿沟渠纵向,试验沟渠水体中总氮质量浓度、底泥中总氮含量均呈现一定程度递减趋势,表现出沟渠系统对非点源溶质的净化作用;水体中总氮质量浓度、底泥中总氮含量在沟渠横断面分布存在较大不均匀性,其分布特征与断面形态、流量变化过程、流速分布等因素有关,其中水体中总氮质量浓度均衡度为76.89%,底泥中总氮含量均衡度为57.04%;试验期内,水体中总氮质量浓度呈"凹"形变化、底泥中总氮含量呈"凸"形变化,二者表现出相逆的变化趋势. 相似文献