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The use of marine aquaculture solid waste for nursery production of the salt marsh plants Spartina alterniflora and Juncus roemerianus

机译:利用海水养殖固体废物苗圃生产盐沼植物互花米草和罗汉松

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Recent technological advances in marine shrimp and finfish aquaculture alleviate many of the environmental risks associated with traditional aquaculture, but challenges remain in cost-effective waste management. Liquid effluent from freshwater aquaculture systems has been shown to be effective in agricultural crop production (i.e., aquaponics), but few studies have explored the potential for reuse of marine aquaculture effluent, particularly the solid fraction. The purpose of this study was to investigate the use of marine aquaculture solid waste as a nutrient source for the nursery production of two salt tolerant plants commonly used in coastal salt marsh restoration, Spartina alterniflora (smooth cordgrass) and Juncus roemerianus (black needlerush). Specifically, measurements of plant biomass and tissue nitrogen and phosphorus allocation were compared between plants fertilized with dried shrimp biofloc solids and unfertilized controls, as well as between plants fertilized with dried fish solids and unfertilized controls. In both experiments, S. alterniflora plants fertilized with marine aquaculture solids showed few significant differences from unfertilized controls, whereas fertilized J. roemerianus plants had significantly greater biomass and absorbed and incorporated more nutrients in plant tissue compared to unfertilized controls. These results suggest that J. roemerianus may be a suitable plant species for the remediation of marine aquaculture solid waste.
机译:海洋虾和有鳍鱼类养殖的最新技术进步减轻了与传统养殖有关的许多环境风险,但在具有成本效益的废物管理方面仍然存在挑战。淡水水产养殖系统产生的液体废水已被证明对农作物生产有效(即,水培植物),但很少有研究探索海水水产养殖废水,特别是固体部分的再利用潜力。这项研究的目的是调查使用海水养殖固体废物作为养料来源,用于育苗生产两种常用于沿海盐沼恢复的耐盐植物,即互花米草(Spartina alterniflora)(光滑的草皮草)和Jun草(Juncus roemerianus)(黑针刺)。具体而言,比较了用干虾生物絮凝物固形物施肥的植物和未施肥的对照植物之间以及用干鱼固体固形物施肥的植物之间的植物生物量以及组织氮和磷的分布。在这两个实验中,用海洋水产养殖固体肥料施肥的互花米草植物与未施肥的对照相比几乎没有显着差异,而与未施肥的对照相比,施肥的罗姆氏沼虾植物具有显着更大的生物量,吸收并吸收了植物组织中的更多养分。这些结果表明,roemerianus可能是修复海水养殖固体废物的合适植物。

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