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Impact of pig slurry amendments on phosphorus, suspended sediment and metal losses in laboratory runoff boxes under simulated rainfall

机译:模拟降雨条件下猪粪改良对实验室径流库中磷,悬浮泥沙和金属损失的影响

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摘要

Losses of phosphorus (P) when pig slurry applications to land are followed by a rainfall event or losses from soils with high P contents can contribute to eutrophication of receiving waters. The addition of amendments to pig slurry spread on high P Index soils may reduce P and suspended sediment (SS) losses. This hypothesis was tested at laboratory-scale using runoff boxes under simulated rainfall conditions. Intact grassed soil samples, 100 cm-long, 22.5 cm-wide and 5 cm-deep, were placed in runoff boxes and pig slurry or amended pig slurry was applied to the soil surface. The amendments examined were: (1) commercial grade liquid alum (8% Al2O3) applied at a rate of 0.88:1 [Al:total phosphorus (TP)] (2) commercial-grade liquid ferric chloride (38% FeCl3) applied at a rate of 0.89:1 [Fe:TP] and (3) commercial-grade liquid poly-aluminium chloride (PAC) (10% Al2O3) applied at a rate of 0.72:1 [Al:TP]. The grassed soil was then subjected to three rainfall events (10.3 ± 0.15 mm h−1) at time intervals of 48, 72, and 96 h following slurry application. Each sod received rainfall on 3 occasions. Results across three rainfall events showed that for the control treatment, the average flow weighted mean concentration (FWMC) of TP was 0.61 mg L−1, of which 31% was particulate phosphorus (PP), and the average FWMC of SS was 38.1 mg L−1. For the slurry treatment, there was an average FWMC of 2.2 mg TP L−1, 47% of which was PP, and the average FWMC of SS was 71.5 mg L−1. Ranked in order of effectiveness from best to worst, PAC reduced the average FWMC of TP to 0.64 mg L−1 (42% PP), FeCl3 reduced TP to 0.91 mg L−1 (52% PP) and alum reduced TP to 1.08 mg L−1 (56% PP). The amendments were in the same order when ranked for effectiveness at reducing SS: PAC (74%), FeCl3 (66%) and alum (39%). Total phosphorus levels in runoff plots receiving amended slurry remained above those from soil only, indicating that, although incidental losses could be mitigated by chemical amendment, chronic losses from the high P index soil in the current study could not be reduced.
机译:当猪粪在土地上施用后,降雨时磷(P)的损失或磷含量高的土壤的损失会导致接收水的富营养化。在高P指数土壤上扩散的猪粪便中添加修正剂可以减少磷和悬浮沉积物(SS)的损失。该假设在模拟降雨条件下使用径流箱在实验室规模进行了测试。将完整的长满草的土壤样品(长100厘米,宽22.5厘米,深5厘米)放置在径流箱中,将猪粪或改良猪粪施于土壤表面。审查的修正案包括:(1)以0.88:1 [Al:总磷(TP)]的比例施用商业级液态明矾(8%Al2O3)(2)在以下温度下施用商业级液态氯化铁(38%FeCl3)以0.89:1 [Fe:TP]的比率和(3)以0.72:1 [Al:TP]的比率施用的工业级液态聚氯化铝(PAC)(10%Al2O3)。然后在施用泥浆后的48、72和96 h的时间间隔内,使草皮土壤经受三次降雨事件(10.3±0.15 mm h-1)。每个草皮都有3次降雨。三种降雨事件的结果表明,对于对照处理,TP的平均流量加权平均浓度(FWMC)为0.61 mg L-1,其中31%为颗粒磷(PP),SS的平均FWMC为38.1 mg L-1。对于浆料处理,平均FWMC为2.2 mg TP L-1,其中47%为PP,SS的平均FWMC为71.5 mg L-1。从有效性的高低到低进行排序,PAC将TP的平均FWMC降低至0.64 mg L-1(42%PP),FeCl3将TP降低至0.91 mg L-1(52%PP),明矾将TP降低至1.08 mg L-1(56%PP)。当对降低SS的效果进行排名时,这些修正的顺序相同:PAC(74%),FeCl3(66%)和明矾(39%)。接受修正泥浆的径流小区的总磷水平仍然仅高于土壤中的磷水平,这表明,尽管可以通过化学改良来减轻偶然损失,但当前研究中高磷指数土壤的长期损失无法减少。

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