A review of soluble microbial products (SMP) in wastewater treatment systems

A review concerning the characterisation, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is presented. The precise definition of SMP is open to debate, but is currently regarded as “the pool of organic compounds that are released into...

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Published in:Water Research Vol. 33; no. 14; pp. 3063 - 3082
Main Authors: Barker, Duncan J., Stuckey, David C.
Format: Book Review Journal Article
Language:English
Published: Oxford Elsevier Ltd 1999
Elsevier Science
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Abstract A review concerning the characterisation, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is presented. The precise definition of SMP is open to debate, but is currently regarded as “the pool of organic compounds that are released into solution from substrate metabolism (usually with biomass growth) and biomass decay”, although for anaerobic systems volatile fatty acids are not included as SMP. Some of the SMP have been identified as humic and fulvic acids, polysaccharides, proteins, nucleic acids, organic acids, amino acids, antibiotics, steroids, exocellular enzymes, siderophores, structural components of cells and products of energy metabolism. Crucially, SMP have been found to comprise the majority of soluble organic material in the effluents from biological treatment processes and their presence is, therefore, of particular interest in terms of achieving discharge consent levels for BOD and COD. SMP also exhibit several characteristics, such as toxicity and metal chelating properties, which effect the performance of the treatment system, and their presence has also been shown to adversely affect the kinetic activity and the flocculating and settling properties of sludge. This review outlines some important discoveries with regard to the MW distribution, biodegradability and treatability of SMP and also the effect of process parameters on their production. It also summarises the attempts at incorporating SMP formation into the modelling of wastewater treatment. However, it concludes that the knowledge regarding SMP is far from complete and that much work is still required to fully understand their contribution to the treatment process; some of these future research areas are then outlined.
AbstractList A review concerning the characterization, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is presented. The precise definition of SMP is open to debate, but is currently regarded as `the pool of organic compounds that are released into solution from substrate metabolism (usually with biomass growth) and biomass decay', although for anaerobic systems volatile fatty acids are not included as SMP. Some of the SMP have been identified as humic and fulvic acids, polysaccharides, proteins, nucleic acids, organic acids, amino acids, antibiotics, steroids, exocellular enzymes, siderophores, structural components of cells and products of energy metabolism. Crucially, SMP have been found to comprise the majority of soluble organic material in the effluents from biological treatment processes and their presence is, therefore, of particular interest in terms of achieving discharge consent levels for BOD and COD. SMP also exhibit several characteristics, such as toxicity and metal chelating properties, which effect the performance of the treatment system, and their presence has also been shown to adversely affect the kinetic activity and the flocculating and settling properties of sludge. This review outlines some important discoveries with regard to the MW distribution, biodegradability and treatability of SMP and also the effect of process parameters on their production. It also summarizes the attempts at incorporating SMP formation into the modelling of wastewater treatment. However, it concludes that the knowledge regarding SMP is far from complete and that much work is still required to fully understand their contribution to the treatment process; some of these future research areas are then outlined.
A review concerning the characterisation, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is presented. The precise definition of SMP is open to debate, but is currently regarded as “the pool of organic compounds that are released into solution from substrate metabolism (usually with biomass growth) and biomass decay”, although for anaerobic systems volatile fatty acids are not included as SMP. Some of the SMP have been identified as humic and fulvic acids, polysaccharides, proteins, nucleic acids, organic acids, amino acids, antibiotics, steroids, exocellular enzymes, siderophores, structural components of cells and products of energy metabolism. Crucially, SMP have been found to comprise the majority of soluble organic material in the effluents from biological treatment processes and their presence is, therefore, of particular interest in terms of achieving discharge consent levels for BOD and COD. SMP also exhibit several characteristics, such as toxicity and metal chelating properties, which effect the performance of the treatment system, and their presence has also been shown to adversely affect the kinetic activity and the flocculating and settling properties of sludge. This review outlines some important discoveries with regard to the MW distribution, biodegradability and treatability of SMP and also the effect of process parameters on their production. It also summarises the attempts at incorporating SMP formation into the modelling of wastewater treatment. However, it concludes that the knowledge regarding SMP is far from complete and that much work is still required to fully understand their contribution to the treatment process; some of these future research areas are then outlined.
The literature on SMP, defined as organic compounds released into solution from substrate metabolism and biomass decay, is reviewed. The definition excluded volatile fatty acids produced in anaerobic systems. The origins of SMP and their identification are discussed. The characterization of SMP by molecular weight, chelating properties, biodegradability, toxicity and effect on processes is considered. Molecular weight distributions in wastewater effluents are tabulated. The influence is evaluated of hydraulic retention time, organic loading rate, sludge retention time, substrate type, biomass concentration, temperature and reactor type on SMP. Modelling of SMP and their treatment are explored. Future research is suggested. Most work had been carried out on aerobic systems. SMP accounted for most of the soluble organic material in wastewater effluents from biological treatment. They could adversely affect the kinetic and settling properties of sludge. Among SMP identified were humic and fulvic acids, polysaccharides, proteins, nucleic acids, amino acids, antibiotics, steroids, extracellular enzymes and siderophores. There are 126 references.
Author Barker, Duncan J.
Stuckey, David C.
Author_xml – sequence: 1
  givenname: Duncan J.
  surname: Barker
  fullname: Barker, Duncan J.
– sequence: 2
  givenname: David C.
  surname: Stuckey
  fullname: Stuckey, David C.
  email: d.stuckey@ic.ac.uk
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ID FETCH-LOGICAL-c518t-529c1a213a5799cfdc91e1693ee85473db575d835399c2554696fd9622127b673
ISSN 0043-1354
IngestDate Fri Oct 25 03:10:07 EDT 2024
Fri Oct 25 09:27:49 EDT 2024
Sun Sep 29 08:40:16 EDT 2024
Thu Sep 26 18:59:02 EDT 2024
Sun Oct 29 17:09:04 EDT 2023
Fri Feb 23 02:33:15 EST 2024
IsPeerReviewed true
IsScholarly true
Issue 14
Keywords toxicity
PACT, powdered activated carbon treatment
HRT, hydraulic retention time
UF, ultrafiltration
BMP, biochemical methane potential
SON, soluble organic nitrogen
TOC, total organic carbon
OLR, organic loading rate
soluble microbial products (SMP)
SRP, soluble residual products
PAC, powdered activated carbon
COD, chemical oxygen demand
CSTR, continuously stirred tank reactor
chelating
ABR, anaerobic baffled reactor
UAP, utilisation associated products
biodegradability
MW, molecular weight
MLVSS, mixed liquor volatile suspended solids
SMP, soluble microbial products
VSS, volatile suspended solids
BAP, biomass associated products
ECP, extracellular polymers
process performance
molecular weight distribution
GPC, gel permeation chromatography
GAC, granular activated carbon
SOC, soluble organic carbon
UASB, upflow anaerobic sludge blanket
AMW, apparent molecular weight
effluent
characterisation
MLSS, mixed liquor suspended solids
SRT, sludge retention time
BOD, biochemical oxygen demand
SBR, sequencing batch reactor
THM, trihalomethane
Molecular weight distribution
Biodegradability
Reaction product
Soluble compound
Review
Biomass
Waste water purification
Organic compounds
Biological purification
Language English
License CC BY 4.0
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Elsevier Science
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Snippet A review concerning the characterisation, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is...
The literature on SMP, defined as organic compounds released into solution from substrate metabolism and biomass decay, is reviewed. The definition excluded...
A review concerning the characterization, production, modelling, significance and implications of soluble microbial products (SMP) in wastewater treatment is...
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SubjectTerms Applied sciences
Biochemical oxygen demand
biodegradability
Biodegradation
Biological and medical sciences
Biological treatment of waters
Biological water treatment
Biomass
Biotechnology
characterisation
chelating
effluent
Effluent treatment
Environment and pollution
Exact sciences and technology
Fundamental and applied biological sciences. Psychology
General purification processes
Industrial applications and implications. Economical aspects
Metabolism
Molecular weight distribution
Pollution
process performance
Reaction kinetics
Sewage sludge
soluble microbial products (SMP)
Toxicity
Wastewaters
Water treatment and pollution
Title A review of soluble microbial products (SMP) in wastewater treatment systems
URI https://dx.doi.org/10.1016/S0043-1354(99)00022-6
https://search.proquest.com/docview/17414789
https://search.proquest.com/docview/17689379
https://search.proquest.com/docview/21432734
Volume 33
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