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单级和旁路多级多土层系统处理低(C/N)比污染河水的性能。

Performance of single-pass and by-pass multi-step multi-soil-layering systems for low-(C/N)-ratio polluted river water treatment.

机构信息

Department of Environmental Science, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, PR China; State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing 100084, China.

Department of Environmental Science, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, PR China.

出版信息

Chemosphere. 2018 Sep;206:579-586. doi: 10.1016/j.chemosphere.2018.05.035. Epub 2018 May 7.

Abstract

Two kinds of hybrid two-step multi-soil-layering (MSL) systems loaded with different filter medias (zeolite-ceramsite MSL-1 and ceramsite-red clay MSL-2) were set-up for the low-(C/N)-ratio polluted river water treatment. A long-term pollutant removal performance of these two kinds of MSL systems was evaluated for 214 days. By-pass was employed in MSL systems to evaluate its effect on nitrogen removal enhancement. Zeolite-ceramsite single-pass MSL-1 system owns outstanding ammonia removal capability (24 g NH-Nmd), 3 times higher than MSL-2 without zeolite under low aeration rate condition (0.8 × 10 L m.h). Aeration rate up to 1.6 × 10 L m.h well satisfied the requirement of complete nitrification in first unit of both two MSLs. However, weak denitrification in second unit was commonly observed. By-pass of 50% influent into second unit can improve about 20% TN removal rate for both MSL-1 and MSL-2. Complete nitrification and denitrification was achieved in by-pass MSL systems after addition of carbon source with the resulting C/N ratio up to 2.5. The characters of biofilms distributed in different sections inside MSL-1 system well illustrated the nitrogen removal mechanism inside MSL systems. Two kinds of MSLs are both promising as an appealing nitrifying biofilm reactor. Recirculation can be considered further for by-pass MSL-2 system to ensure a complete ammonia removal.

摘要

两种混合两步多土壤分层(MSL)系统分别装填不同的过滤介质(沸石-陶粒 MSL-1 和陶粒-红土 MSL-2),用于处理低(C/N)比污染河水。评估了这两种 MSL 系统 214 天的长期污染物去除性能。MSL 系统采用旁路来评估其对强化脱氮的效果。在低通气率条件下(0.8×10 L m.h),沸石-陶粒单通 MSL-1 系统具有出色的氨氮去除能力(24 g NH-Nmd),比没有沸石的 MSL-2 高 3 倍。通气率高达 1.6×10 L m.h 满足了两个 MSL 系统第一个单元完全硝化的要求。然而,第二个单元普遍存在弱反硝化现象。将 50%的进水旁路进入第二个单元可将两个 MSL 的 TN 去除率分别提高约 20%。在添加碳源后,C/N 比高达 2.5,旁路 MSL 系统可实现完全硝化和反硝化。MSL-1 系统不同部位生物膜的特性很好地说明了 MSL 系统内部的脱氮机制。两种 MSL 都有望成为有吸引力的硝化生物膜反应器。对于旁路 MSL-2 系统,可以考虑进一步循环,以确保完全去除氨氮。

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