Fisheries College, Ocean University of China, Qingdao 266001, China.
Ifremer, UMR MARBEC (IRD, Ifremer, University of Montpellier, CNRS), Chemin de Maguelone, F-34250 Palavas-les-Flots, France.
Mar Pollut Bull. 2018 Jun;131(Pt A):142-150. doi: 10.1016/j.marpolbul.2018.04.013. Epub 2018 Apr 12.
This study aims to investigate the effects of ammonia nitrogen loading rates and salinity levels on nutrients removal rates and substrate enzyme activities of constructed wetland (CW) microcosms planted with Salicornia bigelovii treating mariculture wastewater. Activities of urease (UA), dehydrogenase (DA), protease (PrA) and phosphatase (PA) were considered. Using principal component analysis (PCA), nutrient removal index (NRI) and enzyme activity index (EAI) were developed to evaluate the effects. The results revealed that increasing ammonia nitrogen loading rates had positive effects on nitrogen removal rates (i.e. NH-N and DIN) and enhanced substrate enzyme activities. Compared with low salinity (i.e. 15 and 22), high salinity levels (i.e. 29 and 36) enhanced nutrients removal rates, DA and UA, but weaken PA and PrA. In conclusion, CW microcosms with Salicornia bigelovii can be used for the removal of nutrients under a range of ammonia nitrogen loadings and high salinity levels.
本研究旨在探讨氨氮负荷率和盐度水平对盐角草(Salicornia bigelovii)人工湿地微系统处理海水养殖废水的养分去除率和基质酶活性的影响。考虑了脲酶(UA)、脱氢酶(DA)、蛋白酶(PrA)和磷酸酶(PA)的活性。采用主成分分析(PCA)、养分去除指数(NRI)和酶活性指数(EAI)进行评价。结果表明,氨氮负荷率的增加对氮去除率(即 NH-N 和 DIN)和基质酶活性有积极影响。与低盐度(即 15 和 22)相比,高盐度水平(即 29 和 36)提高了养分去除率、DA 和 UA,但削弱了 PA 和 PrA。总之,盐角草人工湿地微系统可用于在一定氨氮负荷率和高盐度水平下去除养分。