Replenishment of landscape water with reclaimed water: threshold of hydraulic retention time employing transparency as a control indicator

Author:

Song Keying1,Liu Qinghua1,Wang Qian1,Wu Yinhu23,Chen Zhuo23,Lu Yun23,Hu Hong-Ying234

Affiliation:

1. a Beijing Information Technology College, Beijing 100015, China

2. b Environmental Simulation and Pollution Control State Key Joint Laboratory, State Environmental Protection Key Laboratory of Microorganism Application and Risk Control (SMARC), School of Environment, Tsinghua University, Beijing 100084, China

3. c Beijing Laboratory for Environmental Frontier Technologies, Beijing 100084, China

4. d Shenzhen Environmental Science and New Energy Technology Engineering Laboratory, Tsinghua-Berkeley Shenzhen Institute, Shenzhen 518055, China

Abstract

ABSTRACT There exists a significant risk of water blooms during the utilization of recycled water in landscape environments. The nitrogen and phosphorus discharge standards of sewage treatment plants are very low. Controlling hydraulic retention time (HRT) is currently the most effective means to control water bloom. This article proposes a new method for determining the HRT threshold based on water transparency as a control indicator. The following results were obtained: (1) with the nitrogen and phosphorus concentrations of 15 and 0.5 mg/L, respectively, the threshold for HRT under high temperature and strong light is 4.6 days, while the threshold under low temperature and low light is 11.5 days. (2) With the nitrogen and phosphorus concentrations of 10 and 0.3 mg/L, respectively, the threshold for HRT under high temperature and strong light is 5 days, while the threshold under low temperature and low light conditions is 12.3 days. (3) The HRT threshold obtained under high temperature and strong light is lower than that obtained under low temperature and low light conditions. (4) The higher the concentrations of nitrogen and phosphorus, the smaller the HRT threshold obtained. (5) Blue algae have stronger adaptability than green algae and diatoms.

Funder

Major Program of National Natural Science Foundation of China

Major Program of National Natural Science Foundation of China

Publisher

IWA Publishing

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