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Carbon sources derived from maize cobs enhanced nitrogen removal in saline constructed wetland microcosms treating mariculture effluents under greenhouse condition

机译:来自玉米COB的碳源增强了盐水构建的湿地微观物体在温室条件下治疗水苗污水的氮去除

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This study investigated an alternative carbon source derived from maize cobs (MCs) to enhance nitrogen removal in saline constructed wetlands (SCWs). The main objectives were to select the proper pretreatment method of MCs for rapid carbon release; and to investigate the effects of maize cob pieces (i.e. MCP) and three addition levels of maize cob lixiviums (i.e. L-MCL, M-MCL and H-MCL) on nitrogen purification performance and microbial characteristics of SCWs. Results showed NaOH pretreatment enhanced carbon release of MCs in seawater (from 7.5 +/- 0.4 mg(COD) g(-1) to 16.4 +/- 0.2 mg(CO)(D) g(-1)). The 80-d trial showed SCWs with M-MCL addition performed well on nitrogen removal: NO3-N, 88.8 +/- 11.6%; NO2-N, 91.1 +/- 3.5%; TAN, 96.5 +/- 1.6%; TIN, 89.8 +/- 10.4%; with 2 mg L-1 effluent COD. Denitrification parameters confirmed MCL to be a high quality carbon source: denitrification potential (P-DN) = 0.16 g(N) g(COD)(-1); heterotrophy anoxic yield coefficient (Y-H) = 0.54 g(COD) g(COD)(-1).The MCP and H-MCL treatments improved substrate dehydrogenase activity, indicating a higher microbial activity in these SCWs. Sequencing analysis revealed that, regardless of addition manners, carbon sources from MCs changed the rhizosphere microbial community. At genus level, Anaerophaga (10.1%), Granulosicoccus (8.2%) and Sulfurimonas (6.6%) dominated in SCWs under MCP treatment. Increased MCL addition levels improved the relative abundance of Vi brio, Malonomonas and Caldithrix, suggesting the enhancement of denitrification. Relative high proportions of Desulfotignum and Desulfovibrio, and Sulfurimonas were observed in MCP and H-MCL SCWs, implying that sulfate reduction occurred in SCWs with excess carbon sources. (C) 2019 Published by Elsevier Ltd.
机译:该研究研究了衍生自玉米COB(MCS)的替代碳源,以增强盐水构造的湿地(SCWS)中的氮去除。主要目标是选择MCS的适当预处理方法,用于快速碳释放;并探讨玉米COB碎片(即MCP)和三种添加水平的玉米COB Lixiviums(即L-MCL,M-MCL和H-MCL)对SCWS的微生物特性的影响。结果显示NaoH预处理的预处理增强了海水中MCS的碳释放(从7.5 +/- 0.4mg(COD)G(-1)至16.4 +/- 0.2mg(CO)(D)G(-1))。 80-D试验显示使用M-MCL添加的SCWS在氮气中进行良好的去除:NO3-N,88.8 +/- 11.6%; no2-n,91.1 +/- 3.5%;棕褐色,96.5 +/- 1.6%;锡,89.8 +/- 10.4%;用2mg L-1流出鳕鱼。脱氮参数证实MCL是高质量的碳源:脱氮电位(P-DN)= 0.16g(n)g(COD)( - 1);异术缺氧产量系数(Y-H)= 0.54g(COD)G(COD)( - 1)。MCP和H-MCL治疗改善了基质脱氢酶活性,表明这些SCWS中的更高的微生物活性。测序分析显示,无论加法方式如何,来自MCS的碳源改变了根际微生物群落。在MCP治疗下,在Genus水平,AneRophaga(10.1%),颗粒体(8.2%)和硫蛋白酶(6.6%)在SCW中占主导地位。增加的MCL添加水平改善了VI溴(Malonomonas和Caldithrix)的相对丰度,表明脱氮的增强。在MCP和H-MCL SCW中观察到脱硫和脱硫和脱硫和脱硫和硫铵的相对高比例,这意味着在具有过量碳源的SCWS中发生硫酸盐还原。 (c)2019年由elestvier有限公司发布

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