Hydrocarbon degradation and accumulation by sansevierialiberica gerome and labroy polluted with crude oil

 

Table Of Contents


Chapter ONE

INTRODUCTION

  • 1.1Introduction
  • 1.2Background of study
  • 1.3Problem Statement
  • 1.4Objective of study
  • 1.5Limitation of study
  • 1.6Scope of study
  • 1.7Significance of study
  • 1.8Structure of the research
  • 1.9Definition of terms

Chapter TWO

LITERATURE REVIEW

  • 2.1Overview of Hydrocarbon Degradation
  • 2.2Types of Hydrocarbons
  • 2.3Sansevierialiberica Gerome and Labroy: Characteristics
  • 2.4Crude Oil Pollution: Causes and Effects
  • 2.5Sansevierialiberica Gerome and Labroy in Oil-Polluted Environments
  • 2.6Microbial Degradation of Hydrocarbons
  • 2.7Plant-Based Remediation of Oil-Polluted Sites
  • 2.8Bioremediation Techniques
  • 2.9Challenges in Hydrocarbon Degradation
  • 2.10Future Research Directions

Chapter THREE

RESEARCH METHODOLOGY

  • 3.1Research Design
  • 3.2Sampling Methods
  • 3.3Data Collection Techniques
  • 3.4Experimental Setup
  • 3.5Data Analysis
  • 3.6Statistical Tools
  • 3.7Ethical Considerations
  • 3.8Research Limitations

Chapter FOUR

DATA PRESENTATION AND ANALYSIS

  • 4.1Analysis of Hydrocarbon Degradation by Sansevierialiberica Gerome and Labroy
  • 4.2Impact of Crude Oil Pollution on Plant Growth
  • 4.3Comparison of Bioremediation Techniques
  • 4.4Efficiency of Microbial Degradation
  • 4.5Role of Environmental Factors in Degradation Processes
  • 4.6Challenges in Remediation Efforts
  • 4.7Case Studies on Successful Remediation
  • 4.8Recommendations for Future Studies

Chapter FIVE

SUMMARY, CONCLUSION AND RECOMMENDATIONS

  • 5.1Summary of Findings
  • 5.2Conclusions
  • 5.3Implications of the Study
  • 5.4Contributions to the Field
  • 5.5Recommendations for Further Research

Project Abstract

<p> The capability of Sansevierialiberica to withstand crude oil pollution, degrade and/or accumulate the contaminant was investigated using 0.3, 1.3 and 6.3% v/w concentrations of crude oil to pollute soil vegetated with the stem cuttings of the plant. These treatments were repeated in unvegetated soils and the control had no crude oil pollution. The experiment was carried out in 3 replicates in a completely randomized design. Total Petroleum Hydrocarbons (TPH) were determined for all soil samples (vegetated and unvegetated)as well as the leaves, stem and roots using Gas Liquid Chromatography (GLC). Vegetative parameters namely; number of leaves, leaf area, plant height and stem circumference were determined for both control and polluted plants before and after pollution. The results showed that percentage TPH degraded in the vegetated soil was 95.8, 88.5 and 68.1% for 0.3, 1.3 and 6.3% v/w concentrations, respectively. S liberica alone degraded 0.87, 2.92 and 2.29% for the same treatments. Percentage accumulations rof 0.3% v/w crude oil pollution for the leaf, stem and root were 0.002, 0.036 and 0.209%, respectively, those of 1.3% v/w were 0.004, 0.067 and 0.315%, respectively while those of 6.3% v/w were 0.008, 0.085 and 0.43%, respectively. Means for the vegetative parameters for the plant parts showed that there were significant (P&lt; 0.05) differences in some vegetative parameters after contamination with crude oil. Therefore there was phytoremediation and accumulation of hydrocarbons by S. liberica. <br></p>

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