Fate of Sucralose through Environmental and Water Treatment Processes and Impact on Plant Indicator Species
Судьба сукралозы в окружающей среде и при обработке воды и влияние на индикаторные виды растений
2011-01-14
SCID: 54.1/5kjs4d3b
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activated carbon sorptionadvanced treatment processesenvironmental fateozonationsucralose persistence
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Abstract (AI)
The degradation and partitioning of sucralose during exposure to a variety of environmental and advanced treatment processes (ATP) and the effect of sucralose on indicator plant species were systematically assessed. Bench scale experiments were used to reproduce conditions from environmental processes (microbial degradation, hydrolysis, soil sorption) and ATPs (chlorination, ozonation, sorption to activated carbon, and UV radiation). Degradation only occurred to a limited extent during hydrolysis, ozonation, and microbial processes indicating that breakdown of sucralose will likely be slow and incomplete leading to accumulation in surface waters. Further, the persistence of sucralose was compared to suggested human tracer compounds, caffeine and acesulfame-K. In comparison sucralose exhibits similar or enhanced characteristics pertaining to persistence, prevalence, and facile detection and can therefore be considered an ideal tracer for anthropogenic activity. Ecological effects of sucralose were assessed by measuring sucrose uptake inhibition in plant cotelydons and aquatic plant growth impairment. Sucralose did not inhibit plant cotelydon sucrose uptake, nor did it effect frond number, wet weight, or growth rate in aquatic plant, Lemna gibba. Though sucralose does not appear toxic to plant growth, the peristent qualities of sucralose may lead to chronic low-dose exposure with largely unknown consequences for human and environmental health.
Key Findings
1
Advanced treatment processes tested (chlorination, ozonation, activated carbon sorption, UV) and environmental processes produced limited removal, implying conventional ATPs may be ineffective at fully removing sucralose.
2
Compared to caffeine and acesulfame-K, sucralose shows similar or enhanced persistence, prevalence, and ease of detection, making it an ideal tracer for anthropogenic activity.
3
Despite apparent lack of acute phytotoxicity, sucralose’s persistence could cause chronic low-dose exposure with unknown human and environmental health consequences.
4
Sucralose did not inhibit sucrose uptake in plant cotyledons and did not affect frond number, wet weight, or growth rate of the aquatic plant Lemna gibba in tested conditions.
5
Sucralose is persistent and likely to accumulate in surface waters due to its resistance to common environmental and treatment processes.
6
Sucralose undergoes only limited degradation during hydrolysis, ozonation, and microbial processes, indicating slow and incomplete breakdown.
Research Object
Sucralose (its fate during environmental and advanced water treatment processes and exposure to plant indicator species)
Research Subject
Degradation, partitioning, persistence, and detection of sucralose through environmental processes and advanced treatment processes, and its ecological effects on plant indicators (sucrose uptake inhibition and aquatic plant growth endpoints)
Publication Details
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2011-01-14
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