Enzyme–based Assay for Toxicological Evaluation of Soil Ecosystem Polluted with Spent Engine Oil
O. Otitoju, A. C. Udebuani, M. M. Ebulue, I. N. Onwurah
Journal of Agriculture and Ecology Research International · pp. 1–13 · Published 15 Apr 2017
10.9734/JAERI/2017/27605Abstract
Aim: In this study, the experiment was designed to investigate the effect of contamination of soil ecosystem with spent engine oil at various concentrations. Design: Soil samples were obtained from zoological garden University of Nigeria Nsukka while spent engine oil was obtained from the Mechanic Village, Nsukka. Test tubes labelled 1- 7 containing various percentages of spent engine oil 1.0, 1.5, 2.0, 2.5, 3.0, 3.5% w/w (oil-soil mixture); and into the 7th tube, the control contained only the soil sample. The study was designed for thirty-five-days (0, 14, 28 and 35 day) at various degrees of pollution by spent oil. Results: The result showed that spent engine oil stimulated the activity of soil dehydrogenase in a concentration and time dependent manner: from (4.72 ± 0.015) mol/min at 1.0% contamination to (9.30 ± 0.021) mol/min at 3.5% contamination on day-zero; and from (5.29 ± 0.032) mol/min at 1.0% contamination to (9.78 ± 0.040) mol/min at 3.5% contamination on day-28; the activity of soil catalase was inhibited from (0.195 ± 0.005) mol/min at 1.0% contamination to (0.054 ± 0.004) mol/min at 3.5% contamination on day-zero; and from (0.18 ± 0.004) mol/min at 1.0% contamination to (0.042 ± 0.002) mol/min at 3.5% contamination on day-28. The moisture content increased from (6.4 ± 0.01) at 1.0% contamination to (24.24 ± 0.0) at 3.5% contamination on day-zero; and from (4.56 ± 0.056) at 1.0% contamination to (19.31 ± 0.0212) at 3.5% contamination on day-28. Similarly, there was an increase in total petroleum hydrocarbon (TPH) from (0.03 ± 0.0) to (0.86 ± 0.0) that cuts across days-zero to -28 at concentrations (1.0-3.5%) contamination. At increased concentrations (3.5% w/w) of contamination, hydrocarbons increased the abundance of hydrocarbon-degrading microorganisms from 3.26 x107 ± 0.02 cfu on day-zero to 6.55 x 108 ± 0.04 cfu on day-28; but on the other hand, induced a limitation on microbial diversity. Conclusion: The concentration of the hydrocarbonclastic bacteria in the spent engine oil-contaminated soil correlated with the enzyme induction activity. These effects which altered the entire soil biochemistry could disrupt ecosystem dynamics by slowing soil organic matter mineralization and associated nutrient re-mineralization.
Cited by 0
No indexed citations yet.
Related research
- Antimicrobial Effect of Some Plant Extracts on Plant Pathogens that Cause Food Spoilage — shares topic coverage
- Effect of Fermentation on Nutrient and Antinutrient Contents of Fermented Whole and Ground African Breadfruit (Treculia africana) Seeds — shares topic coverage
- Landfill Waste Effluents Increase the Population and Diversity of Soil Microorganisms: The Case of Olusosun Landfill, Lagos, Nigeria — shares topic coverage
- Types of Microorganisms Isolated from Children with Diarrhoea in Akure, Ondo State, Nigeria — shares topic coverage
- The Effect of E-waste Dumpsite Soil on Cultured Tilapia Fish and Associated Microorganisms — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
0
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.