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Runoff water quality from constructed roadside soils receiving large volume-based compost applications.

机译:接受大量堆肥处理的路边土壤的径流水质。

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Rapid soil stabilization after construction in highway right-of-ways is important to limit erosion. The Texas Department of Transportation (TxDOT) in Texas, USA developed methods for stabilizing constructed soils utilizing compost. Three of the methods are: compost manufactured topsoil (CMT), general-use compost (GUC), and erosion control compost (ECC). Volume- or depth-based compost amendments may promote stabilization by revegetation and thereby reduce runoff and sediment losses. The quantity of compost associated with the application rates may be a potential nonpoint source of dissolved and particulate nutrients. Runoff losses of dissolved and particulate-bound nutrients and particulate matter were observed during eight natural runoff events from soils on an 8.5% slope amended according to TxDOT specifications for CMT, GUC, and ECC. Composted dairy manure (CDM) was used to meet the specifications for the soil amendments. The addition of CDM increased soil test phosphorus (STP) and NO3-N concentrations above the critical nutrient level for Princess bermudagrass (Cynodon dactylon). Although the STP and NO3-N concentration in soil was greatest in the ECC, the ECC was most effective at reducing both runoff and particulate mass loss. The reduced runoff volume from ECC kept total mass loses similar among ECC and CMT and GUC. The benefit of using the ECC was a reduction in runoff depth and particulate loss without greater overall nutrient losses, even though the ECC utilized 262 and 584% more CDM than the CMT and GUC amendments, respectively.
机译:高速公路通行后的快速土壤稳定对于限制侵蚀非常重要。美国德克萨斯州的德克萨斯州交通运输部(TxDOT)开发了利用堆肥稳定建筑土壤的方法。其中三种方法是:堆肥制造的表土(CMT),通用堆肥(GUC)和侵蚀控制堆肥(ECC)。基于体积或深度的堆肥改良剂可通过植被恢复来促进稳定,从而减少径流和沉积物损失。与施用量相关的堆肥量可能是溶解的和颗粒状养分的潜在面源。根据针对CMT,GUC和ECC的TxDOT规范对8.5%坡度的土壤进行了八次自然径流事件期间,观察到了溶解和与颗粒结合的养分和颗粒物的径流损失。堆肥的奶牛粪(CDM)用于满足土壤改良剂的规格。 CDM的添加使土壤测试磷(STP)和NO 3 -N的浓度超过了百慕大百慕大公主(Cynodon dactylon )的关键营养水平。尽管ECC中土壤中的STP和NO 3 -N浓度最高,但ECC在减少径流和颗粒质量损失方面最有效。 ECC减少了径流量,使总质量损失与ECC,CMT和GUC相似。使用ECC的好处是减少了径流深度和颗粒物流失,而没有更大的总体养分流失,即使ECC比CMT和GUC修正案分别多了262和584%的CDM。

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