TABLE OF CONTENTS
TITLE PAGE — — — — — — — — i
CERTIFICATION — — — – — — — — — ii
DEDICATION — — — — — — — iii
ACKNOWLEDGEMENT — — – — — — — iv
TABLE OF CONTENT– — — — — — — v
LIST OF TABLES — — — — — — — — vii
ABSTRACT — — — — — — — — — viii
CHAPTER ONE: INTRODUCTION — – — — — — 1
1.1 Background Information — — — — — — 1
1.2 National Fadama Development Project — — — — 4
1.3 Problem Statement — — — – — — — 6
1.4 Objectives of the Study — — — — — — 6
1.5 Research Hypotheses — — — — — — 6
1.6 Justification for the Study — — — — — — 7
CHAPTER TWO: LITERATURE REVIEW — — – — — 8
2.1 The Need for Foreign Financing of Nigerian Agriculture — 8
2.2 Sources of Internal Credit for Agriculture in Nigeria — – 9
2.3 Fadama in Kano State — — — — — — 14
2.4 Farming System in Kano State — — — — — 17
2.5 Problems of Irrigation Development — — — — 18
2.6 Analytical Framework — — — — — 20
CHAPTER THREE: RESEARCH METHODOLOGY– – — — 23
3.1 The Study Area– — — — — — — 23
3.2 Sampling Procedure — — – — — — 24
3.3 Data Collection — — — — — — 25
3.4 Data Analysis — — — — — — 25
3.5 Model Specification — — — — — 26
CHAPTER FOUR: FINDINGS AND DISCUSSION– — — 28
- Socio-economic characteristics– — — — — 28
4.1.1 Marital status of respondents — — — — 28
Extent of Use of Facilities Provided by Loan Package — 28
4.1.2 Source of information about improve technologies — – 28
4.1.3 Extension agents visit to farms — — — 30
4.1.4 Source of inputs such as pump, fertilizer, insecticide and pesticides by respondents — — — — 30
4.1.5 Use of inputs such as pumps, fertilizer, insecticide and pesticides by respondents — – — — — — 31
4.1.6 Sources of improved seed by respondents — – — — — 32
4.1.7 Use of improved seeds in farm — — — — 33
4.1.8 Irrigation frequency per plot per week by respondents — – 34
4.1.9 Other use of Wash bores/Tube wells by respondents — – 34
4.1.10 Cropping pattern by respondents — — — — — 35
4.2 Pre- Fadama I Programme Situation– — — — 35
4.3 After-Fadama I Programme Situation — 36
Comparison of the Situation, Crop output, Farm income, Farm Size, and Labour Use by the Beneficiaries and the Non-Beneficiaries– -36
4.4 Regression Analysis — — — — — — 38
4.5 Major Problems of Fadama Farming– — — — 38
CHAPTER FIVE: SUMMARY, CONCLUSION AND RECOMMENDATIONS– 41
5.1 Summary– — — — — — — 41
5.2 Conclusion — — – — — — — — 43
5.3 Recommendations — — — – — — — 44
References — — — — — — — — — — – 46 Appendices — – — — — — — — 52
LIST OF TABLES
- Marital Status respondents– — — — — 28
- Sources of information about improved technology— -29
- Extension agents visit to farms– — — — 30
- Sources of inputs such as pumps, fertilizer, insecticides– 31
- Use of inputs such as pump, fertilizer, insecticides and pesticides by respondents- — — — — — 32
- Sources of improved seed by respondents– — — 33
- Use of improved seeds in farms– — — — — 33
- Irrigation frequency per plot per week by respondents– -34
- Other use of Washbores/tubewells by respondents– – 35
- Cropping pattern by respondents– — — 35
- Pre- Fadama I Programme Situation in Kano State– – 36
- After – Fadama I Programme Situation. Comparison of crop output, farm income, farm size and Labour use of the beneficiaries and the non- beneficiaries– — 37
4.13 Major problems encountered by beneficiaries– – — 40
ABSTRACT
Fadama farming has
contributed significantly to Nigeria’s
agriculture in particular and the country in general, but the contributions
have remained largely unmeasured. As a
result, this study examined the influence of the National Fadama Development
Project on Fadama farmers in Kano
State. Primary and
secondary data were sought. A set of
questionnaires was developed and information was collected from 108 respondents
who were randomly selected from the three agricultural zones in the study area.
Multiple regression analysis and simple statistical tools, such as, means,
frequency, range and percentages were used to realize the objectives of the
study. Analysis of the data revealed
that fadama farming was a profitable venture among the farmers studied. A majority of respondents owned and purchased
their farm land and the houses they lived in.
A large percentage also owned radio, television, bicycle and irrigation
pump. Water from tube-wells and wash bores were used for irrigation and
drinking. The customary land system was practiced in the study area. About 46% of the respondents inherited their
farm land while 26.9% purchased theirs. Majority of respondents practiced mixed
cropping to ensure maximum plot utilization. There was efficient use of
facilities provided by the loan package.
Inputs such as pumps, fertilizers, pesticides and insecticides were used
by farmers. Respondents also admitted
adequate visit to farms by extension agents. There was a significant difference
between the average income of the two groups (beneficiaries and non-beneficiaries)
at a probability level of 95%. Some constraints, such as, high cost of farm
inputs, chronic shortage of petrol and petroleum products, seasonal glut of
some perishable agricultural commodities, poor storage facilities, poor access
roads to Fadama areas and difficulties in getting registered as members of Fadama Users Association (FUA),
were experienced by respondents. Recommendations included subsidization of
prices of fertilizers and other farm inputs, frequent conduct of soil survey to
determine level of salinity, creation of more micro credit facilities to
enhance productivity and provision of infrastructural facilities.
CHAPTER ONE
INTRODUCTION
- Background Information
Agricultural production in Nigeria remains essentially traditional with cultivation largely undertaken at individual level using local implements (Abdullahi, 1983). This traditional method and the subsistence nature of agricultural production help in perpetuating the vicious cycle of poverty and restricting the farmer’s ability to embrace modern technology (Bala, 1992). The food security situation in Nigeria has been deteriorating over the past 15 to 20 years. Per capital food production has declined more than 15% in the past 20 years (UN, 1992).
As a way of boosting agricultural production, government introduced modern irrigation scheme in the country. Although the concept of irrigation farming has been practiced in Nigeria for several decades, the introduction of modern irrigation is a government initiative.
Modern irrigation in Nigeria can be traced back to the pioneering efforts of Colonel Collins, a British Colonial officer who, after a survey of the irrigation potentials of Northern Nigeria in the 1900s, developed 243 hectares of land for irrigation. This was followed in 1949 by the establishment of an irrigation division in the Ministry of Agriculture of the Northern Region with the main objective of initiating small-scale irrigation schemes (Dawakintofa, 1989).
Another major step in irrigation development in Nigeria was the Food and Agricultural Organizations (FAO) report of 1965, which stressed the need for the Federal Government’s active involvement in planned water resources and irrigation development for the country. Consequent upon the Food and Agricultural Organization’s report, the Chad and the Sokoto Rima-Basin Development Authority was established by Decree numbers 32 and 33 of 14th August, 1973.Kano State Government,(1995). In 1976, the River Basin Development Authorities were expanded to eleven in number by Decree number 36 of 25th June and Decree Number 37 of 3rd August, 1976 (Dawakintofa, 1989). These Authorities were charged with the responsibilities of constructing and maintaining dams, polders, wells, boreholes and drainage systems for irrigation purposes. There was also the Bakolori Irrigation Scheme, which was established in consonant with the laid down guidelines for irrigation development (KNARDA Baseline Survey, 1993).
These schemes attracted generous funding from government. Inspite of the enormous sum of money (2.25 billion) and the facilities provided, the schemes had limited success (Samorock, 1983). For instance, the total irrigated area proposed to be accomplished by the River Basin Development Authorities for the Nation was 1,999,139 hectares (Nwa and Martins, 1982). But as at 1980, only 25,754 hectares had been developed. Only about 77,369 hectares were expected to be developed by 1991 (Abdullahi et al, 1989). This is about 4% of the total land meant for development. Salihu (1986) and Dawakintofa (1989) attributed the limited success of the early irrigation schemes to the fact that the plans were developed without much consideration of economic and social problems.
“Fadama” is an Hausa word meaning low-lying swamp area consisting of fluvial deposit and containing extensive exploitable aquifers” (Gandi and Radashekara, 1989). Fadama also refers to a seasonally flooded area used for farming during the dry season. It is defined as an alluvial, low land formed by erosion and depositional action of the rivers and streams (Qureshi, 1989). The extent and subsurface formation of the Fadama land depend on the terrain over which the rivers are formed and flowed.
They can also be referred to as flood prone, low lying, slow drainage areas that generally possess a finer texture and less acid soils. Fadama lands are regarded as very rich agricultural areas. They encompass land and water resources that could easily be developed for irrigation agriculture (World Bank, 1992). In Nigeria, this type of rich irrigable land can be found along the flood plains of the Niger, Sokoto-Rima, Benue, Nassarawa, Yobe and Hedejamaari river systems. Fadama land covers about 4.9 million hectares in the country (BSADP, 1994). It is therefore necessary to harness it in order to accelerate agricultural production.
Inadequate and uneven distribution of rainfall in the arid and semi arid North, prompted some state governments to initiate Fadama through small-scale irrigation system (Abdullahi and Phillip, 1989). The enclave states, which pioneered the Programme, were Kano, Bauchi, Jigawa, Gombe, Sokoto, Zamfara and Kebbi.
The staff appraisal report (SAR) estimated that traditional irrigation was practiced in over 60,000 hectares of Fadama land of which 13,000 were cultivated for dry season vegetable production while the whole of it could be used for summer rice production under semi-controlled flooding, primarily in the Hedejia valley area (APMEU, 1991).
This Fadama development component, covering 27,400 hectares in Kano State, comprised; (i) Fadama intensification – bonding of run-off and using residual moisture to produce a second crop planted in September/ October on 14,700 hectares; (ii) the use of wells (usually not exceeding 7m deep) and making 1,500, 3″ diesel pumps and 4,600 hand pumps available through the Kano Agricultural Supply Company (KASCO) to replace Shadoof and bring an incremental 6,800 hectares into production; and (iii) improved flood irrigation of rice by bonding an estimated 5,900 hectares to allow two crops a year.
Incremental crop production achieved by these activities amounted to 29 million annually up to the end of project life cycle of five years. This technique was found to be cheaper than the large-scale system and more efficient than the traditional method of irrigation. While small-scale irrigation costs US1, 000 ( 80,000) per hectare, large-scale irrigation scheme cost US10, 000 (800,000) per hectare all at the 1990 prices (World Bank 1992). The small-scale irrigation scheme took off in Kano State in 1982 with loan effectiveness. The irrigation component started-off primarily with the introduction of extension services and the sale of pumps.