Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar

Large amount sewage sludge (SS) is produced from the wastewater-treatment system, which contains many microorganisms, organic pollutants and a variety of heavy metals. In addition, it also enriches nitrogen, phosphorus, potassium and other nutrients. The safe and reasonable disposal of SS without se...

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Published in:能源环境保护
Main Authors: LI Jingshu, ZHANG Yuanyuan, WANG Lanhui, LI Yanlong, LI Rundong*
Format: Article
Language:Chinese
Published: Editorial Office of Energy Environmental Protection 2023-04-01
Subjects:
Online Access:https://eep1987.com/en/article/4318
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author LI Jingshu
ZHANG Yuanyuan
WANG Lanhui
LI Yanlong
LI Rundong*
author_facet LI Jingshu
ZHANG Yuanyuan
WANG Lanhui
LI Yanlong
LI Rundong*
author_sort LI Jingshu
collection DOAJ
container_title 能源环境保护
description Large amount sewage sludge (SS) is produced from the wastewater-treatment system, which contains many microorganisms, organic pollutants and a variety of heavy metals. In addition, it also enriches nitrogen, phosphorus, potassium and other nutrients. The safe and reasonable disposal of SS without secondary pollution has become a hot issue of current research. Traditional treatment and disposal methods of SS include landfill, incineration, land utilization, etc. SS pyrolysis is expected to become an efficient and clean treatment and disposal method in the future. It has attracted extensive attention of researchers. The basic physical and chemical properties of biochar, the migration and transformation of heavy metals and phosphorus and the influence of additives on the SS-pyrolysis biochar are reviewed. It is found that the additives have the effects of optimizing the basic properties of sludge biochar, fixing/removing heavy metals in biochar, improving the bioavailability of phosphorus. On this basis, the research direction of further study is prospected. It is of great importance to using model compounds to study the co-deposition mechanism of phosphorus and heavy metals during sludge pyrolysis, and provide theoretical support for the wider application of SS-derived biochar in soil amendments, adsorbents, electrochemical materials and other fields.
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spelling doaj-art-9a5c028da36a412cb5cecaed4e3f48cd2025-08-19T23:34:50ZzhoEditorial Office of Energy Environmental Protection能源环境保护2097-41832023-04-01372303810.20078/j.eep.20230307Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biocharLI Jingshu 0ZHANG Yuanyuan1WANG Lanhui2LI Yanlong3LI Rundong*4Key Laboratory of Clean Energy, Liaoning Province, College of Energy and Environment, Shenyang Aerospace UniversityKey Laboratory of Clean Energy, Liaoning Province, College of Energy and Environment, Shenyang Aerospace UniversityKey Laboratory of Clean Energy, Liaoning Province, College of Energy and Environment, Shenyang Aerospace UniversityKey Laboratory of Clean Energy, Liaoning Province, College of Energy and Environment, Shenyang Aerospace UniversityKey Laboratory of Clean Energy, Liaoning Province, College of Energy and Environment, Shenyang Aerospace UniversityLarge amount sewage sludge (SS) is produced from the wastewater-treatment system, which contains many microorganisms, organic pollutants and a variety of heavy metals. In addition, it also enriches nitrogen, phosphorus, potassium and other nutrients. The safe and reasonable disposal of SS without secondary pollution has become a hot issue of current research. Traditional treatment and disposal methods of SS include landfill, incineration, land utilization, etc. SS pyrolysis is expected to become an efficient and clean treatment and disposal method in the future. It has attracted extensive attention of researchers. The basic physical and chemical properties of biochar, the migration and transformation of heavy metals and phosphorus and the influence of additives on the SS-pyrolysis biochar are reviewed. It is found that the additives have the effects of optimizing the basic properties of sludge biochar, fixing/removing heavy metals in biochar, improving the bioavailability of phosphorus. On this basis, the research direction of further study is prospected. It is of great importance to using model compounds to study the co-deposition mechanism of phosphorus and heavy metals during sludge pyrolysis, and provide theoretical support for the wider application of SS-derived biochar in soil amendments, adsorbents, electrochemical materials and other fields.https://eep1987.com/en/article/4318sewage sludgepyrolysisbiocharheavy metalsphosphorus
spellingShingle LI Jingshu
ZHANG Yuanyuan
WANG Lanhui
LI Yanlong
LI Rundong*
Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
sewage sludge
pyrolysis
biochar
heavy metals
phosphorus
title Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
title_full Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
title_fullStr Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
title_full_unstemmed Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
title_short Review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
title_sort review on transformation behavior of heavy metals and phosphorus in sewage sludge pyrolysis biochar
topic sewage sludge
pyrolysis
biochar
heavy metals
phosphorus
url https://eep1987.com/en/article/4318
work_keys_str_mv AT lijingshu reviewontransformationbehaviorofheavymetalsandphosphorusinsewagesludgepyrolysisbiochar
AT zhangyuanyuan reviewontransformationbehaviorofheavymetalsandphosphorusinsewagesludgepyrolysisbiochar
AT wanglanhui reviewontransformationbehaviorofheavymetalsandphosphorusinsewagesludgepyrolysisbiochar
AT liyanlong reviewontransformationbehaviorofheavymetalsandphosphorusinsewagesludgepyrolysisbiochar
AT lirundong reviewontransformationbehaviorofheavymetalsandphosphorusinsewagesludgepyrolysisbiochar