Abstract

Nitrogen removal from the rural domestic sewage with low pollutant concentration and low chemical oxygen demand (COD) to total nitrogen (TN) ratio (C/N) by biological process is quite difficult. Raw broken Arundo donax (A. donax) pieces were supplied as anoxic column filter media and carbon source in the anoxic/oxic biofilter (hereinafter referred to as A.-A/O-BF) for the nitrogen removal from rural domestic sewage, while gravel was served as the anoxic column filter media in the control A/O biofilter (hereinafter referred to as G-A/O-BF). Under the condition of 3.34 m/d (anoxic column) and 1.35 m/d (oxic column) filtration rate, 4:1 air/water ratio (oxic column) and 150 % nitrate recycling ratio, the average NH4+-N and TN removal efficiency of A.-A/O-BF were 99.0 % and 68.8 %, which were much higher than those (91.4 % and 39.8 %) of G-A/O-BF. The class Nitrospira affiliated with the phylum Nitrospirae were the most widely distributed nitrifying bacteria in the oxic column of A.-A/O-BF, which rarely existed in the oxic column of G-A/O-BF. Dechloromonas and Chlorobium genera were the main denitrificans in the anoxic column of A.-A/O-BF, while SM1A02 and Denitratisoma were dominant in the anoxic column of G-A/O-BF. The abundance of the main nitrification functional genes (amoA and Nitrospira 16S rDNA) in the oxic column of A.-A/O-BF was two orders of magnitude higher than that of G-A/O-BF, and the denitrification functional genes (narG, nosZ, nirS, and nirK) and anaerobic ammonium oxidation functional gene (Anammox) in the anoxic column of A.-A/O-BF were also remarkably higher than those of G-A/O-BF.

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