Phosphorous recovery through struvite precipitation from municipal wastewater

With the increase in stringency in the environmental limits for phosphates in treated effluent from wastewater treatment facilities, more phosphates are expected to be accumulated in wastewater treatment plants. These facilities are therefore opportune locations for recovering phosphorus bound in ph...

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Main Author: Lopez, Maristela Ann F.
Format: text
Language:English
Published: Animo Repository 2021
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Online Access:https://animorepository.dlsu.edu.ph/etdm_chemeng/6
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1005&context=etdm_chemeng
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spelling oai:animorepository.dlsu.edu.ph:etdm_chemeng-10052021-10-19T07:24:13Z Phosphorous recovery through struvite precipitation from municipal wastewater Lopez, Maristela Ann F. With the increase in stringency in the environmental limits for phosphates in treated effluent from wastewater treatment facilities, more phosphates are expected to be accumulated in wastewater treatment plants. These facilities are therefore opportune locations for recovering phosphorus bound in phosphates (PO4-P), as it is an essential nutrient in fertilizers. Struvite precipitation is then a simple nutrient recovery process which forms an insoluble compound with phosphates and ammonium dissolved in wastewaters. In this study, the operation of struvite precipitation in a wastewater treatment plant was modelled using process graph or P-graph methodology. The process network considered process alternatives for pH adjustment and seed material and was systematically optimized to minimize the net operating cost. The PO4-P recovery efficiency was then evaluated according to the amount of struvite produced. Untreated wastewaters were initially considered as the source for PO4-P recovery, and laboratory experiments were conducted to obtain data for the PO4-P recovery potential using these sources. Chemical hydrolysis pre-treatment using acid and alkali reagents were first performed to increase the solubilized PO4-P in the sewage and septage. The results showed that raw sludge contained mostly calcium phosphates, which are known to solubilize under acidic conditions. Modifications for the methodology of this pre-treatment were further needed, however, to be able to minimize the reactions forming insoluble compounds with the existing dissolved phosphates in the raw wastewater while the solubilization with the sludge solids is carried out, which was observed during alkali hydrolsis. Thus, an alternative source stream of sludge liquors was explored for struvite precipitation in the P-graph model instead. Three cases varying the PO4-P available for recovery in the treatment network were considered: treating sewage alone, co-treatment of sewage and septage, and treating septage alone. For an unseeded operation across all scenarios, the optimal solution networks used NaOH for the pH adjustment step in the precipitation process, while using sand as the seed material was shown to have the highest PO4-P recovery through the struvite produced, following either NaOH or aeration in the pH step. 2021-09-01T07:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/etdm_chemeng/6 https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1005&context=etdm_chemeng Chemical Engineering Master's Theses English Animo Repository Sewage—Purification—Precipitation Sewage sludge precipitants—Recycling Water—Phosphorus content Chemical Engineering
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Sewage—Purification—Precipitation
Sewage sludge precipitants—Recycling
Water—Phosphorus content
Chemical Engineering
spellingShingle Sewage—Purification—Precipitation
Sewage sludge precipitants—Recycling
Water—Phosphorus content
Chemical Engineering
Lopez, Maristela Ann F.
Phosphorous recovery through struvite precipitation from municipal wastewater
description With the increase in stringency in the environmental limits for phosphates in treated effluent from wastewater treatment facilities, more phosphates are expected to be accumulated in wastewater treatment plants. These facilities are therefore opportune locations for recovering phosphorus bound in phosphates (PO4-P), as it is an essential nutrient in fertilizers. Struvite precipitation is then a simple nutrient recovery process which forms an insoluble compound with phosphates and ammonium dissolved in wastewaters. In this study, the operation of struvite precipitation in a wastewater treatment plant was modelled using process graph or P-graph methodology. The process network considered process alternatives for pH adjustment and seed material and was systematically optimized to minimize the net operating cost. The PO4-P recovery efficiency was then evaluated according to the amount of struvite produced. Untreated wastewaters were initially considered as the source for PO4-P recovery, and laboratory experiments were conducted to obtain data for the PO4-P recovery potential using these sources. Chemical hydrolysis pre-treatment using acid and alkali reagents were first performed to increase the solubilized PO4-P in the sewage and septage. The results showed that raw sludge contained mostly calcium phosphates, which are known to solubilize under acidic conditions. Modifications for the methodology of this pre-treatment were further needed, however, to be able to minimize the reactions forming insoluble compounds with the existing dissolved phosphates in the raw wastewater while the solubilization with the sludge solids is carried out, which was observed during alkali hydrolsis. Thus, an alternative source stream of sludge liquors was explored for struvite precipitation in the P-graph model instead. Three cases varying the PO4-P available for recovery in the treatment network were considered: treating sewage alone, co-treatment of sewage and septage, and treating septage alone. For an unseeded operation across all scenarios, the optimal solution networks used NaOH for the pH adjustment step in the precipitation process, while using sand as the seed material was shown to have the highest PO4-P recovery through the struvite produced, following either NaOH or aeration in the pH step.
format text
author Lopez, Maristela Ann F.
author_facet Lopez, Maristela Ann F.
author_sort Lopez, Maristela Ann F.
title Phosphorous recovery through struvite precipitation from municipal wastewater
title_short Phosphorous recovery through struvite precipitation from municipal wastewater
title_full Phosphorous recovery through struvite precipitation from municipal wastewater
title_fullStr Phosphorous recovery through struvite precipitation from municipal wastewater
title_full_unstemmed Phosphorous recovery through struvite precipitation from municipal wastewater
title_sort phosphorous recovery through struvite precipitation from municipal wastewater
publisher Animo Repository
publishDate 2021
url https://animorepository.dlsu.edu.ph/etdm_chemeng/6
https://animorepository.dlsu.edu.ph/cgi/viewcontent.cgi?article=1005&context=etdm_chemeng
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