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Biological denitrification in high salinity wastewater using semen litchi as a carbon source

机译:以荔枝精作为碳源的高盐度废水生物脱氮

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摘要

A new agricultural waste semen litchi was used as the sole carbon source to remove nitrate from high salinity wastewater in laboratory reactors. The main nutrient components, the content of heavy metals and the morphology of semen litchi were first studied. The results showed that semen litchi contained about 60% organic carbon and low levels of heavy metals. The milled semen litchi had lots of gap structures and abundant starch granules. Then the release velocity of the carbon source and the denitrification rate in high salinity wastewater were investigated. It was found that semen litchi could supply continuous organic carbon for denitrification. And the maximum TOC concentration could reach 137.29 mg l(-1) on the 46th day. The nitrate removal rate and denitrification rate could reach 98.8-99.5% and 192 mg N (l(-1) d(-1)), respectively. During the whole denitrification reaction, the nitrite concentration was lower than 0.01 mg l(-1). A microbial community profile by Polymerase Chain Reaction-Denaturing Gradient Gel Electrophoresis (PCR-DGGE) indicated that the denitrifying bacteria (Sphingomonas family and Rhodospirillum family) became enriched in the semen litchi sludge. Furthermore, salinity didn't have a negative effect on denitrification. Semen litchi could be used as an economical and effective carbon source for denitrification in high salinity wastewater.
机译:一种新型的农业废精液荔枝被用作唯一的碳源,以去除实验室反应器中高盐度废水中的硝酸盐。首先研究了荔枝的主要营养成分,重金属含量和形态。结果表明,荔枝精液中有机碳含量约为60%,重金属含量较低。磨碎的精子荔枝具有许多间隙结构和丰富的淀粉颗粒。然后研究了高盐度废水中碳源的释放速度和反硝化率。发现荔枝精液可以提供连续的有机碳用于反硝化作用。第46天TOC最大浓度可达137.29 mg l(-1)。硝酸盐去除率和反硝化率分别达到98.8-99.5%和192 mg N(l(-1)d(-1))。在整个反硝化反应过程中,亚硝酸盐浓度低于0.01 mg l(-1)。通过聚合酶链反应-变性梯度凝胶电泳(PCR-DGGE)进行的微生物群落分析表明,反硝化细菌(鞘氨醇单胞菌属和红螺螺旋菌属)富集了荔枝精液污泥。此外,盐度对反硝化没有负面影响。荔枝精可以用作高盐度废水中反硝化的经济有效碳源。

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