Black cotton soil classified as an A-7-6 (24) soil on AASHTO classification co"> Black cotton soil classified as an A-7-6 (24) soil on AASHTO classification co">
Home / Civil engineering / EFFECT OF LOCUST BEAN WASTE ASH ON CEMENT-MODIFIED BLACK COTTON SOIL

EFFECT OF LOCUST BEAN WASTE ASH ON CEMENT-MODIFIED BLACK COTTON SOIL

 

Table Of Contents


Chapter ONE

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

Chapter TWO

2.1 Review of Cement-Modified Black Cotton Soil
2.2 Locust Bean Waste Ash: Properties and Applications
2.3 Previous Studies on Cement-Soil Stabilization
2.4 Effects of Waste Ash on Soil Properties
2.5 Sustainable Construction Practices
2.6 Environmental Impact of Locust Bean Waste Ash
2.7 Innovations in Soil Stabilization Techniques
2.8 Role of Additives in Soil Improvement
2.9 Strength Development in Stabilized Soils
2.10 Cost-Effectiveness of Waste Ash Utilization

Chapter THREE

3.1 Research Design and Methodology
3.2 Selection of Study Area
3.3 Sampling Techniques and Sample Size
3.4 Data Collection Methods
3.5 Laboratory Testing Procedures
3.6 Data Analysis Techniques
3.7 Quality Control Measures
3.8 Ethical Considerations in Research

Chapter FOUR

4.1 Analysis of Soil Properties
4.2 Evaluation of Locust Bean Waste Ash Characteristics
4.3 Impact of Waste Ash on Soil Stabilization
4.4 Strength and Durability Assessment
4.5 Comparative Analysis with Conventional Methods
4.6 Environmental Assessment
4.7 Economic Feasibility Study
4.8 Discussion on Practical Applications

Chapter FIVE

5.1 Summary of Findings
5.2 Conclusion and Recommendations
5.3 Contribution to Knowledge
5.4 Implications for Future Research
5.5 Practical Applications and Policy Recommendations

Project Abstract

  Black cotton soil classified as an A-7-6 (24) soil on AASHTO classification collected from new Marte area of Borno state was modified with up to 4% cement and LBWA up to 8% by weight of the soil. The effect of locust bean waste ash (LBWA) on the cement modified soil was studied with respect to particle size distribution , Atterberg limits, compaction characteristics and shear strength parameters using three 3 compactive efforts namely, British Standard light (BSl), West African Standard (WAS), and British Standard heavy (BSh). Statistical analysis was then carried out on results obtained from the test conducted to determine the significant difference (i.e., p < 0.05) in the various soil – cement mixes using a two – way analysis of variance (ANOVA) with the Microsoft Excel Analysis Tool Pack Software. Analyses of the results of the soil-cement mixtures considered indicate increase in particle sizes, increase in the liquid limit and decrease in the plastic limit with corresponding increase in plasticity index, increase in maximum dry density (MDD) with increase in optimum moisture content (OMC) as well decrease in cohesion with increasing angle of internal friction all with higher locust bean waste ash content. The result also showed that the modified soil met the requirement of the Nigerian General Specification of not more than 35% passing No. 200 sieve when used as a sub grade material in road construction. An optimal blend of 4% cement / 8% LBWA is recommended for the modification of black cotton soil.



Project Overview

INTRODUCTION

1.1             Preamble

 Geotechnical engineers are often faced with the problem of constructing road beds on soil which do not have adequate strength to support the wheel loads imposed upon them either in construction or during the service life of the pavement. It is sometimes necessary to treat these soils, termed expansive soils to give a stable sub-grade or working platforms for the construction of the pavement. Treatment of soil are generally classified into two processes: soil modification or soil stabilization. The purpose of sub-grade modification is to provide a working platform for construction equipment, while sub-grade stabilization is meant to increase the strength and durability of the soil.

  1.1.1       Black cotton soil

 Expansive soil can be found almost any where in the world but they are basically confined to semi arid regions of the tropical /temperate zones. These areas are usually characterized by marked dry and wet seasons with low rainfall, poor drainage and exceedingly great heat. The precipitation is such that the annual evaporation exceeds the precipitation (Chen, 1988). Two groups of parent rock materials have been associated with the formation of expansive soils. The first group comprises sedimentary rock of volcanic origin, which can be found in North America, South Africa and Israel (Ola, 1978). The second group of parent materials are basic igneous rocks found in India, Nigeria and South Western U.S.A (Plait, 1953). Tropical black clays are formed by weathering (Morin, 1971).


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