The Influence of Fertilizer Regimen on Water Chemistry and Filamentous Green Algae in Earthen-Substrate Ponds

M. Ward
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Abstract

Water chemistry patterns can be indicative of production potential during pond culture of walleye (Sander vitreus, ≈30 mm total length). However, achieving desired water chemistry patterns that reflect an increase in zooplankton, a reduction in phytoplankton, and a lack of nuisance filamentous green algae in large, earthen-substrate ponds can be challenging. During 2020, water chemistry variables and the occurrence of filamentous green algae were compared in fishless, earthen-substrate ponds (0.72 ha) that received either alfalfa meal (AFM, n=2) or alfalfa meal combined with inorganic nitrogen (AFM+28:0:0, n=2) over an approximate 30-day period. Alfalfa meal use was standard across all ponds (476 kg), while the concentration of inorganic nitrogen (ammonia-N + nitrate-N) was initially raised to 1.25 mg/L with subsequent applications, at three to five-day intervals, having a target concentration of 0.64 mg/L. Initial pH and dissolved oxygen were significantly higher, but pH became significantly lower over time in the AFM+28:0:0 treatment. Ammonia-nitrogen began similarly low (<0.1 mg/L) in both treatments but became and remained significantly higher (peaked 0.44 mg/L on June 9) with 28:0:0 supplementation. Nuisance, filamentous green algae were not observed with 28:0:0 supplementation but were present on the substrate of both ponds in the AFM treatment. Supplementing an alfalfa meal regimen with inorganic nitrogen every three to five days in earthen-substrate ponds deterred filamentous green algae and promoted water chemistry indicative of enhanced walleye fingerling production in previous trials.
施肥方案对土基质池塘水化学及丝状绿藻的影响
水化学模式可以指示池塘养殖期间的生产潜力(Sander玻璃体,总长度≈30 mm)。然而,在大型的土基池塘中,要实现反映浮游动物增加、浮游植物减少和缺乏讨厌的丝状绿藻的理想的水化学模式可能是具有挑战性的。2020年,在无鱼的土基质池塘(0.72 ha)中,在大约30天的时间里,比较了施用苜蓿草粉(AFM, n=2)或苜蓿草粉与无机氮(AFM+28:0:0, n=2)的水化学变量和丝状绿藻的发生情况。紫花苜蓿粉是所有池塘(476公斤)的标准使用,而无机氮(氨氮+硝酸盐氮)的浓度最初提高到1.25 mg/L,随后每隔3至5天施用一次,目标浓度为0.64 mg/L。AFM+28:0:0处理的初始pH值和溶解氧值显著升高,但随着时间的推移,pH值显著降低。两种处理的氨氮浓度在开始时都很低(<0.1 mg/L),但在28:0:0的处理下,氨氮浓度逐渐升高,并在6月9日达到峰值0.44 mg/L。令人讨厌的是,在28:0:0的添加条件下,没有观察到丝状绿藻,但在AFM处理的两个池塘的基质上都存在。在以前的试验中,每隔3至5天在土基质池塘中添加无机氮的苜蓿草粉方案可以抑制丝状绿藻,并促进水化学反应,表明孔雀鱼鱼种产量增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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