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Biologically Induced Deposition of Fine Suspended Particles by Filter-Feeding Bivalves in Land-Based Industrial Marine Aquaculture Wastewater

机译:陆基工业海洋水产养殖废水中滤食性双壁生物对悬浮颗粒的生物诱导沉积

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摘要

Industrial aquaculture wastewater contains large quantities of suspended particles that can be easily broken down physically. Introduction of macro-bio-filters, such as bivalve filter feeders, may offer the potential for treatment of fine suspended matter in industrial aquaculture wastewater. In this study, we employed two kinds of bivalve filter feeders, the Pacific oyster Crassostrea gigas and the blue mussel Mytilus galloprovincialis, to deposit suspended solids from marine fish aquaculture wastewater in flow-through systems. Results showed that the biodeposition rate of suspended particles by C. gigas (shell height: 8.67±0.99 cm) and M. galloprovincialis (shell height: 4.43±0.98 cm) was 77.84±7.77 and 6.37±0.67 mg ind−1•d−1, respectively. The total solid suspension (TSS) deposition rates of oyster and mussel treatments were 3.73±0.27 and 2.76±0.20 times higher than that of the control treatment without bivalves, respectively. The TSS deposition rates of bivalve treatments were significantly higher than the natural sedimentation rate of the control treatment (P<0.001). Furthermore, organic matter and C, N in the sediments of bivalve treatments were significantly lower than those in the sediments of the control (P<0.05). It was suggested that the filter feeders C. gigas and M. galloprovincialis had considerable potential to filter and accelerate the deposition of suspended particles from industrial aquaculture wastewater, and simultaneously yield value-added biological products.
机译:工业水产养殖废水中含有大量的悬浮颗粒,很容易被物理分解。引入大型生物过滤器(例如双瓣式过滤器进料器)可能为处理工业水产养殖废水中的细悬浮物提供潜力。在这项研究中,我们采用了两种双壳过滤器进料器,即太平洋牡蛎Crassostrea gigas和蓝贻贝Mytilus galloprovincialis,将海水鱼类养殖废水中的悬浮固体沉积在流通系统中。结果表明,C。gigas(壳高:8.67±0.99 cm)和gal.provoprovincialis(壳高:4.43±0.98 cm)悬浮颗粒的生物沉积速率分别为77.84±7.77和6.37±0.67 mg ind -1 •d -1 。牡蛎和贻贝处理的总固体悬浮物(TSS)沉积速率分别比没有双壳类的对照处理高3.73±0.27和2.76±0.20倍。双瓣处理的TSS沉积速率显着高于对照处理的自然沉积速率(P <0.001)。此外,双壳类处理沉积物中的有机质和碳,氮均显着低于对照沉积物中的有机质和磷(P <0.05)。有人提出,滤嘴饲喂者C. gigas和M. galloprovincialis具有很大的潜力,可以过滤和加速工业水产养殖废水中悬浮颗粒的沉积,并同时产生高附加值的生物产品。

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