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首页> 外文期刊>Environmental Science and Pollution Research >Impact of carrier on ammonia and organics removal from zero-discharge marine recirculating aquaculture system with sequencing batch biofilm reactor (SBBR)
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Impact of carrier on ammonia and organics removal from zero-discharge marine recirculating aquaculture system with sequencing batch biofilm reactor (SBBR)

机译:载体对零放电船舶再循环水产养殖系统对氨和有机物去除的影响Biofilm反应器(SBBR)

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摘要

Marine recirculating aquaculture system (MRAS) is an effective technology that provides sustainable farming of food fish globally. However, dissolved organics material (chemical oxygen demand, COD) and especially ammonia are produced from uneaten feed and metabolic wastes of fish. To purify the MRAS water, this study adopted a sequencing biofilm batch reactor (SBBR) and comparatively investigated the performances of four different carriers on ammonia and COD removal. Results indicated that the NH4+-N removal rates were 0.045 +/- 0.05, 0.065 +/- 0.008, 0.089 +/- 0.005, and 0.093 +/- 0.003 kg/(m(3)center dot d), and the COD removal rates were 0.019 +/- 0.010, 0.213 +/- 0.010, 0.255 +/- 0.015, and 0.322 +/- 0.010 kg/(m(3)center dot d) in the SBBRs packed with porous plastic, bamboo ring, maifan stone, and ceramsite carriers, respectively. Among the four carriers, ceramsite exhibited the best performance for both NH4+-N (80%) and COD (33%) removal after the SBBR reached the steady-state operation conditions. For all carriers studied, the NH4+-N removal kinetics could be well simulated by the first-order model, and the NH4+-N and COD removal rates were logarithmically correlated with the carrier's specific surface area. Due to its high ammonia removal, stable performance and easy operation, the ceramsite-packed SBBR is feasible for MRAS water treatment.
机译:海洋再循环水产养殖系统(MRAS)是一种有效的技术,可在全球范围内提供可持续的食物养殖。然而,溶解的有机物(化学需氧,鳕鱼)和尤其是氨的含量来自未吃的饲料和鱼类代谢废物。为了净化MRAS水,本研究采用测序生物膜批量反应器(SBBR),并相对调查了四种不同载体对氨和COD去除的性能。结果表明,NH4 + -N去除率为0.045 +/- 0.05,0.065 +/- 0.008,0.089 +/- 0.005和0.093 +/- 0.003 kg /(m(3)中心点D)和鳕鱼拆卸速率为0.019 +/- 0.010,0.213 +/- 0.010,0.255 +/- 0.015和0.322 +/- 0.010公斤/(M(3)中心点D),用多孔塑料,竹环,Maifan Stone包装和陶瓷铁路携带者分别。在四个载体中,Ceramsite在SBBR达到稳态运行条件后,展示了NH4 + -NN(80%)和COD(33%)的最佳性能。对于所研究的所有载体,通过一阶模型可以很好地模拟NH4 + -N去除动力学,NH4 + -N和COD去除率与载体的比表面积对数相关。由于其高氨拆除,稳定的性能和操作,陶瓷填充的SBBR可用于水处理。

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