TRANSFORMING AGRICULTURAL WASTELANDS INTO AGRO-PRODUCTIVE LANDS: A CASE OF BANKURA DISTRICT OF WEST BENGAL
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Abstract
Agricultural landscapes across the world are under increasing strain as environmental
degradation, unsustainable land-use practices, and climate variability continue to
reduce the productivity of once-viable land systems. This challenge is particularly acute
in developing countries such as India, where rural livelihoods remain deeply tied to
agriculture and allied sectors. In such contexts, land degradation is not simply an
ecological issue; it is also a socio-economic concern that directly affects food security,
employment, and regional development. Agricultural wastelands—lands that have lost
their productive value due to natural constraints or human-induced degradation—
represent both a challenge and an opportunity. If left untreated, they intensify poverty,
migration, and ecological imbalance. If strategically reclaimed, however, they can
become productive assets that strengthen rural resilience and support sustainable
development goals.
Within this national and global discourse, the district of Bankura offers a compelling
case for studying land reclamation and agro-productive transformation. Located in the
western part of West Bengal, Bankura occupies a transitional geographical zone
between the ancient rock formations of the Chotanagpur Plateau and the younger
alluvial plains of the Bengal Basin. This unique setting gives rise to the district’s
characteristic “Rarh” landscape—an undulating terrain marked by lateritic uplands,
low-lying depressions, and fragmented agricultural fields. While visually distinct, this
terrain presents considerable challenges for conventional agriculture. The elevated
ridges, locally known as Tanr, often experience rapid runoff during monsoon events,
while shallow depressions, called Kanali, retain seasonal moisture for limited
durations. This uneven distribution of water creates a persistent hydro-climatic
imbalance, where even regions receiving moderate rainfall can experience agricultural
drought due to poor infiltration and storage.
The ecological difficulties of Bankura are further intensified by its soil profile. The
district is dominated by lateritic and red-yellow soils, both of which are products of
prolonged weathering and leaching under tropical climatic conditions. These soils are
typically acidic, deficient in essential nutrients such as nitrogen, phosphorus, and
potassium, and contain low levels of organic carbon. Their coarse texture and hard
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TRANSFORMING AGRICULTURAL WASTELANDS INTO AGRO-PRODUCTIVE LANDS: A
CASE OF BANKURA DISTRICT OF WEST BENGAL
crusting tendencies reduce water-holding capacity and restrict root penetration, making
them unsuitable for intensive agriculture without intervention. As a result, large
portions of cultivable land remain underutilized, seasonally abandoned, or converted
into low-productivity scrublands. Such conditions have contributed to cycles of
declining agricultural returns, land abandonment, and socio-economic vulnerability
among farming communities.
Despite these constraints, degraded agricultural lands should not be viewed as
permanently lost. Rather, they hold latent potential for restoration through context
sensitive planning, ecological engineering, and policy-supported interventions. The
central premise of this research is that wastelands can be transformed into agro
productive systems if reclamation strategies are aligned with local geography, soil
conditions, hydrological patterns, and socio-economic realities. This approach moves
beyond traditional conservation methods by framing degraded land as a resource that
can be rehabilitated into multifunctional landscapes—supporting food production,
ecological restoration, and rural livelihoods simultaneously.
To operationalize this vision, the study adopts a multidisciplinary framework that
integrates geospatial analysis, remote sensing, and field-based ecological strategies.
Multi-spectral satellite imagery from Sentinel-2 and Landsat archives is employed to
map and classify wasteland typologies across the district, including gullied land, fallow
tracts, scrublands, and erosion-prone zones. These spatial datasets are combined with
terrain, soil, rainfall, and vegetation indicators to build a comprehensive understanding
of land capability. Through Multi-Criteria Decision Analysis (MCDA) and the
Analytical Hierarchy Process (AHP), diverse variables are standardized and weighted
to identify priority zones for intervention. This methodological approach enables the
detection of “pockets of opportunity”—areas where restoration efforts are most likely
to yield high ecological and socio-economic returns.
The findings of the study reveal that Bankura’s reclamation potential can be structured
into three broad management zones, each requiring distinct intervention strategies. The
western belt, characterized by severe degradation and fragile ecological conditions, is
best suited for intensive ecological recovery measures such as agroforestry, contour
trenching, and biomass regeneration. These practices aim to stabilize soils, reduce
erosion, and restore ecosystem functions. The central belt functions as a transitional
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TRANSFORMING AGRICULTURAL WASTELANDS INTO AGRO-PRODUCTIVE LANDS: A
CASE OF BANKURA DISTRICT OF WEST BENGAL
zone where moderate degradation can be addressed through productivity-enhancing
measures such as drought-resistant crops, integrated farming systems, and micro
irrigation. The eastern belt, relatively more stable and fertile, offers opportunities for
agricultural optimization through high-value horticulture, crop diversification, and
institutional strengthening through Farmer Producer Organizations.
A significant strength of this research lies in its alignment with existing policy
frameworks. By connecting technical recommendations with national initiatives such
as the Pradhan Mantri Krishi Sinchayee Yojana and state-level programs like the
Usharmukti Project, the study ensures that its proposed framework remains actionable
and scalable. Rather than presenting reclamation as an isolated technical exercise, the
research situates it within a broader governance ecosystem where financial support,
institutional convergence, and community participation are essential for long-term
success.
Ultimately, this study contributes to the larger discourse on sustainable land
management by demonstrating how degraded agricultural landscapes can be
reimagined as resilient agro-ecosystems. Through the case of Bankura, it establishes
that land restoration is not merely an environmental imperative but also a pathway
toward rural transformation, climate adaptation, and socio-economic equity. The
proposed framework offers a replicable model for other semi-arid and ecologically
fragile regions facing similar challenges, reinforcing the idea that the future of
agriculture depends not only on expanding cultivated area, but on restoring the
productivity and dignity of the land already under stress.