The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance

Previous studies on the water quality of surface runoff often focused on the chemical oxygen demand (COD), nitrogen, phosphorus, and total suspended solid (TSS), but little is known in terms of the inorganic suspended solids (ISS). This research investigated the effects of ISS carried by surface run...

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Main Authors: Li He, Tao Tan, Zhixi Gao, Leilei Fan
Format: Article
Language:English
Published: MDPI AG 2019-02-01
Series:International Journal of Environmental Research and Public Health
Subjects:
Online Access:https://www.mdpi.com/1660-4601/16/3/453
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spelling doaj-7c5df7b0640745dbb61faa3493b6a24e2020-11-24T20:45:18ZengMDPI AGInternational Journal of Environmental Research and Public Health1660-46012019-02-0116345310.3390/ijerph16030453ijerph16030453The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant PerformanceLi He0Tao Tan1Zhixi Gao2Leilei Fan3College of Resources and Environment, Zunyi Normal University, Zunyi 563006, ChinaChongqing Architectural Design Institute of China, Chongqing 400015, ChinaCollege of Resources and Environment, Zunyi Normal University, Zunyi 563006, ChinaCollege of Resources and Environment, Zunyi Normal University, Zunyi 563006, ChinaPrevious studies on the water quality of surface runoff often focused on the chemical oxygen demand (COD), nitrogen, phosphorus, and total suspended solid (TSS), but little is known in terms of the inorganic suspended solids (ISS). This research investigated the effects of ISS carried by surface runoff on the treatment efficiency of the pretreatment facilities and the ratio of mixed liquor volatile suspended solid to mixed liquor suspended solid (MLVSS/MLSS) of the activated sludge in a wastewater treatment plant (WWTP) with the anaerobic-anoxic-oxic (AAO) process in Chongqing city, China. The results showed that the surface runoff had a long-lasting impact on the grit removal capacity of the grit chamber, affecting the normal operation after the rainfall. In contrast, the primary sedimentation tank showed strong impact resistance with higher removal rates of COD, TSS, and ISS. Nonetheless, the primary settling tank aggravates the removal of organic carbon in sewage during rainfall, having a negative impact on subsequent biological treatment. The ISS in the surface runoff could increase the sludge concentration and decrease the MLVSS/MLSS ratio. After repeated surface runoff impact, the MLVSS/MLSS ratio in the activated sludge would drop below even 0.3, interrupting the normal operation of WWTP.https://www.mdpi.com/1660-4601/16/3/453surface runoffinorganic solidswastewater treatmentMLVSS/MLSS
collection DOAJ
language English
format Article
sources DOAJ
author Li He
Tao Tan
Zhixi Gao
Leilei Fan
spellingShingle Li He
Tao Tan
Zhixi Gao
Leilei Fan
The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
International Journal of Environmental Research and Public Health
surface runoff
inorganic solids
wastewater treatment
MLVSS/MLSS
author_facet Li He
Tao Tan
Zhixi Gao
Leilei Fan
author_sort Li He
title The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
title_short The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
title_full The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
title_fullStr The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
title_full_unstemmed The Shock Effect of Inorganic Suspended Solids in Surface Runoff on Wastewater Treatment Plant Performance
title_sort shock effect of inorganic suspended solids in surface runoff on wastewater treatment plant performance
publisher MDPI AG
series International Journal of Environmental Research and Public Health
issn 1660-4601
publishDate 2019-02-01
description Previous studies on the water quality of surface runoff often focused on the chemical oxygen demand (COD), nitrogen, phosphorus, and total suspended solid (TSS), but little is known in terms of the inorganic suspended solids (ISS). This research investigated the effects of ISS carried by surface runoff on the treatment efficiency of the pretreatment facilities and the ratio of mixed liquor volatile suspended solid to mixed liquor suspended solid (MLVSS/MLSS) of the activated sludge in a wastewater treatment plant (WWTP) with the anaerobic-anoxic-oxic (AAO) process in Chongqing city, China. The results showed that the surface runoff had a long-lasting impact on the grit removal capacity of the grit chamber, affecting the normal operation after the rainfall. In contrast, the primary sedimentation tank showed strong impact resistance with higher removal rates of COD, TSS, and ISS. Nonetheless, the primary settling tank aggravates the removal of organic carbon in sewage during rainfall, having a negative impact on subsequent biological treatment. The ISS in the surface runoff could increase the sludge concentration and decrease the MLVSS/MLSS ratio. After repeated surface runoff impact, the MLVSS/MLSS ratio in the activated sludge would drop below even 0.3, interrupting the normal operation of WWTP.
topic surface runoff
inorganic solids
wastewater treatment
MLVSS/MLSS
url https://www.mdpi.com/1660-4601/16/3/453
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