首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pyrrhotite-sulfur autotrophic denitrification for deep and efficient nitrate and phosphate removal: Synergistic effects, secondary minerals and microbial community shifts
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Pyrrhotite-sulfur autotrophic denitrification for deep and efficient nitrate and phosphate removal: Synergistic effects, secondary minerals and microbial community shifts

机译:用于深度和高效的硝酸盐和磷酸盐去除的烟草酸酯 - 硫磺脱氮:协同效应,次生矿物和微生物群落变化

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摘要

Pyrrhotite-sulfur autotrophic denitrification (PSAD) system, using mixture of pyrrhotite and sulfur particle as electron donor, was studied through batch, column and pilot experiments. Treating synthetic secondary effluent at HRT 3 h, the PSAD system obtained the effluent with NO3--N 0.28 +/- 0.14 mg.L-1 and without PO43--P to be detected. Thiobacillus was the most abundant autotrophic denitrification bacteria; autotrophic, heterotrophic and sulfate-reducing bacteria coexisted in the PSAD system; phosphate was mainly removed in forms of graftonite, dufrenite, ardealite. The H+ produced in the SAD could accelerate the PAD through promoting pyrrhotite dissolution, and iron ions produced in the PAD could accelerate the SAD through Fe3+/Fe2+ shuffle. Because of the synergistic effects between the pyrrhotite and sulfur, the PSAD system removed nitrate and phosphate deeply and efficiently. It is a promising way to meet the stringent nitrogen and phosphorus discharge standards and to recover phosphorus resources from wastewater.
机译:通过批量,柱和先导实验研究了使用Pyrlothite和硫颗粒的混合物的烟道钛 - 硫磺脱氮(PSAD)系统。在HRT 3 H处处理合成二级流出物,PSAD系统获得NO3 - N 0.28 +/- 0.14mg.L-1的流出物,没有PO43-P。 Thiobacillus是最丰富的自养脱氮细菌;在PSAD系统中共同的自养,异养和硫酸盐还原细菌;磷酸盐主要以Graft onite,Dufrenite,Ardealite的形式除去。在悲伤中产生的H +可以通过促进Pyrrhotite溶解来加速垫,并且垫中产生的铁离子可以加速悲伤的通过Fe3 + / Fe2 +洗牌。由于Pyrlotite和硫之间的协同效应,PSAD系统深入和有效地除去硝酸盐和磷酸盐。这是满足严格氮和磷排放标准的有希望的方法,并从废水中回收磷资源。

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