Aquaculture solids management using a combination of sand/gravel or unwoven fabric bed with Lolium perenne Lam as a plant biofilter.

André Nduwimana, Xiang-Long Yang, Li-Ren Wang
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Abstract

Objective: This work is an evaluation of the efficiency of a sand-gravel or unwoven fabric bed system and Lolium perenne Lam as plant biofilter in the reduction of solids and nutrients removal from aquaculture discharge water.

Methods: The first step consisted of the collection of wastewater in the tank and the distribution at three different hydraulic loading regimes (0.5, 1, 1.5 L/hour) to the different experimental systems. The second step was to evaluate the performance of the different systems. The first system consisted of a bucket filled with a substrate of sand/gravel (20 cm in depth), on the bottom of which was a 80 mesh/inch2 of nylon (S1); the second was similar, but was planted with Lolium perenne lam (S2); the third was planted with a grass plate consisting of 7 layers of unwoven fabric planted with L perenne (S3).

Results: The second system showed the best performance in reducing solids as well as in nutrients (TN, TP, and COD) reduction. The removal rates for TS, TN, and TP were negatively correlated with the loading regimes, with 0.5 L/hour being the most efficient and thus taken as the reference.

Conclusions: Solids management using a sand/gravel substrate as bed culture and Lolium perenne L. as plant biofilter has proved to be an efficient technique for solids reduction with low operating cost. This grass plays an important role in wastewater eco-treatment by absorbing dissolved pollutants (TAN) as nutrients for its growth.

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水产养殖固体管理采用砂/砾石或无纺布床与黑麦草作为植物生物过滤器的组合。
目的:评价砂砾或无纺布床系统和黑麦草作为植物生物过滤器对水产养殖排放水中固体和营养物质去除的效果。方法:第一步是在水箱中收集废水,并在三种不同的水力负荷下(0.5、1、1.5 L/h)将废水分配到不同的实验系统。第二步是评估不同系统的性能。第一个系统包括一个装满沙子/砾石的桶(深度为20厘米),底部是80目/英寸的尼龙(S1);第二种与之相似,但种植了黑麦草(S2);第三个种植了由7层无纺布组成的草板,种植了L perenne (S3)。结果:第二种系统在减少固体和营养物质(TN、TP和COD)方面表现最好。TS、TN和TP的去除率与加载方式呈负相关,以0.5 L/h为最有效,可作为参考。结论:采用砂/砾石基质作为床层培养,并将黑麦草(Lolium perenne L.)作为植物生物过滤器的固体管理已被证明是一种有效的固体减少技术,且运行成本低。这种草通过吸收溶解污染物(TAN)作为其生长的营养物质,在废水生态处理中起着重要作用。
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