Toxicity and Biodegradation in Sandy Soil Contaminated by Lubricant Oils

The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used o...

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Vydáno v:Bulletin of environmental contamination and toxicology Ročník 84; číslo 4; s. 454 - 458
Hlavní autoři: Lopes, Paulo Renato Matos, Montagnolli, Renato Nallin, de Fátima Domingues, Renata, Bidoia, Ederio Dino
Médium: Journal Article
Jazyk:angličtina
Vydáno: New York New York : Springer-Verlag 01.04.2010
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ISSN:0007-4861, 1432-0800, 1432-0800
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Abstract The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.
AbstractList The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.
The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50–0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.
The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.
The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.
The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the biodegradability was monitored, and toxicological tests were executed to assess the lubricants toxicity before and after microbial activity. Used oil was the most biodegradable, however, it was the most toxic. Also, all lubricants presented toxicity even after biodegradation due to 40% Eruca sativa germination inhibition and a low LC50 to Eisenia foetida (0.50-0.25 mL). Moreover, used automotive lubricants have a high toxicity because of polycyclic aromatic hydrocarbons concentration that establishes them as a potential carcinogen.[PUBLICATION ABSTRACT]
Author Bidoia, Ederio Dino
Lopes, Paulo Renato Matos
Montagnolli, Renato Nallin
de Fátima Domingues, Renata
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Snippet The objective of this study was to evaluate the environmental behavior of different types of automotive lubricant oils. Based on respirometry assays the...
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SubjectTerms Animals
Aquatic Pollution
Biodegradation
Biodegradation, Environmental
Bioremediation
Brassicaceae
Brassicaceae - drug effects
Brassicaceae - metabolism
drug effects
Earth and Environmental Science
Ecotoxicology
Eisenia fetida
Eisenia foetida
Environment
Environmental behavior
Environmental Chemistry
Environmental Health
Eruca sativa
Eruca vesicaria subsp. sativa
Germination
Germination - drug effects
Hydrocarbons
Lubricants
Lubricants - metabolism
Lubricants - toxicity
Lubricating oils
metabolism
Microbial activity
oils
Oils - metabolism
Oils - toxicity
Oligochaeta
Oligochaeta - drug effects
Oligochaeta - metabolism
polluted soils
Pollution
Polycyclic aromatic hydrocarbons
Polycyclic Aromatic Hydrocarbons - metabolism
Polycyclic Aromatic Hydrocarbons - toxicity
Sandy soils
Soil contaminants
Soil contamination
Soil Pollutants
Soil Pollutants - metabolism
Soil Pollutants - toxicity
Soil Science & Conservation
Toxicity
Waste Water Technology
Water Management
Water Pollution Control
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Title Toxicity and Biodegradation in Sandy Soil Contaminated by Lubricant Oils
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