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首页> 外文期刊>Soil & Tillage Research >Boardmill sludge reduces phosphorus losses from conservation-tilled clay soil
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Boardmill sludge reduces phosphorus losses from conservation-tilled clay soil

机译:木板厂污泥减少了养护倾斜的粘土土壤中的磷损失

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摘要

Conservation tillage has proved to be an effective option to reduce erosion and particulate phosphorus (PP) losses from fields to watercourses. However, it usually leads to the higher losses of P in dissolved reactive (DRP) form if P accumulates into the uppermost soil layer. In this study we investigated the influence of CaCO sub(3)-rich boardmill sludge (BMS, applied 7 years ago) on soil properties and percolate quality with soil samples as well as undisturbed soil columns taken from a long-term conservation-tilled clay field experiment. A short-term laboratory experiment was undertaken to evaluate whether newly added BMS (FS) can be used to improve the quality of percolate waters by reducing turbidity, PP and DRP. The hypothesis was that BMS reduces the risk of dissolved reactive phosphorus (DRP) leaching from conservation- tilled soil. BMS served as a liming agent and counteracted the no-till-induced acidification and accumulation of DRP in the surface soil layer. Surface soil pH was on average 0.3 units higher and soil Ca 500 mg kg super(-1) higher in the BMS-treated plots than in the plots without BMS. The ability of BMS to enhance the availability of P for plants may prevent the surface accumulation of P in NT cultivation. At the same time, BMS-induced increase in Ca and EC of the surface soil suppress the diffuse double layer by reducing P desorption and leaching risk. In the laboratory experiment, FS reduced percolate turbidity by 80% and PP and DRP concentrations by 62% and 50%, respectively. FS probably improved stability of soil aggregates in the laboratory experiment, obviously through enhanced microbial activity. The covering effect and infiltration of water through the 0-5 cm soil layer seemed to be crucial factors in reducing P losses. BMS proved to be a promising material for the applications to the conservation-tilled fields. The effect of BMS on microbes and immobilization of nutrients, should, however, be studied further in fields under a wider diversity of conditions.
机译:保护性耕作已被证明是减少从田间到水道的侵蚀和磷(PP)损失的有效选择。但是,如果P积累到最上层的土壤层中,通常会导致P以溶解的反应性(DRP)形式损失更高。在这项研究中,我们调查了富含CaCO 3(3)的板磨机污泥(BMS,7年前应用)对土壤特性和渗透质的影响,其中包括从长期保存的黏土中采集的土壤样品以及未扰动的土壤柱现场实验。进行了一项短期实验室实验,以评估新添加的BMS(FS)是否可用于通过降低浊度,PP和DRP来提高渗滤水的质量。假设是,BMS可以降低保护性土壤中溶解的反应性磷(DRP)浸出的风险。 BMS用作助石灰,并抵消了免耕引起的酸化和DRP在表层土壤层中的积累。与没有BMS的样地相比,BMS处理的样地的土壤平均表面pH值平均高0.3个单位,土壤Ca 500 mg kg super(-1)高。 BMS增强植物中P有效性的能力可能会阻止NT培养中P的表面积累。同时,BMS引起的表层土壤Ca和EC的增加通过降低P的解吸和浸出风险来抑制双层扩散。在实验室实验中,FS分别降低了渗滤液浊度80%和PP和DRP浓度62%和50%。在实验室实验中,FS可能通过提高微生物活性来改善土壤团聚体的稳定性。覆盖效应和水通过0-5 cm土层的渗透似乎是减少P损失的关键因素。 BMS被证明是用于有保护意义的领域的有前途的材料。然而,BMS对微生物和养分的固定化的影响,应该在更广泛条件下的田野中进一步研究。

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