
UAE Home Textile Market Overview, 2030
Description
The sandwich panel industry in India has seen swift development as the construction market has broadened to fulfill the need for faster, energy-efficient, and durable building options. Sandwich panels were introduced to India in the late 1900s, mainly through imported items designed for specific uses such as warehousing and chilled storage spaces. Initial obstacles included expensive pricing, inadequate domestic manufacturing, and poor thermal performance during extreme tropical conditions, which hindered widespread use. Over the years, producers rolled out varieties like polyurethane PU, polyisocyanurate PIR, EPS, and mineral wool cores, with metal or aluminum surfaces, allowing customization for various settings. Their implementation grew as industries acknowledged advantages such as quicker setup, lower cooling expenses, and enhanced fire safety, especially in logistics hubs, agro-processing centers, and industrial buildings. From a technical perspective, sandwich panels consist of a solid insulated core sandwiched between metal sheets, offering both structural integrity and thermal efficiency suitable for India's environment. Research and development in India has concentrated on high-R-value cores, coatings that reflect solar energy, and treatments to resist termites, ensuring longevity in hot, moist, and dusty areas. The development timeline was influenced by reliance on imports and varying quality standards during the early phases, but the rise of local manufacturers focusing on PU and PIR panels assisted in reducing costs and enhancing dependability. Demand surged in agricultural stores and food refrigeration networks following government support for cold storage development, whereas the thriving e-commerce industry stimulated the need for insulated distribution centers. Advances like solar-reflective layers and hybrid insulation materials have ly increased energy efficiency by minimizing heat absorption on rooftops and decreasing cooling demands. Currently, sandwich panels in India are acknowledged not only for their thermal insulation capabilities but also as an essential component for quick, affordable, and sustainable construction, which corresponds with the country's larger aims of expanding infrastructure and enhancing energy efficiency.
According to the research report, ""India Sandwich Panels Market Overview, 2030,"" published by Bonafide Research, the India Sandwich Panels market is anticipated to grow at more than 11.86% CAGR from 2025 to 2030. As this market develops, producers are creating economical yet effective panels designed for the country's warm climate attributes such as PU and PIR cores provide superior thermal resistance, while attractive finishes cater to the visual preferences of commercial projects. Major local companies like EPACK Prefab, Kingspan Jindal, and Isopan India are increasing their production capabilities, exemplified by EPACK's new facility in Andhra Pradesh, to meet the growing demand from various industries. A significant area of growth is the expansion of cold chains, where specially designed sandwich panels are crucial for the food and pharmaceutical supply chains. The affordable prefabricated panel systems are becoming popular within the mass housing sector as a budget-friendly and quick-install option. Firms are ensuring these products comply with the energy regulations outlined in the Energy Conservation Building Code ECBC and sustainable building standards like IGBC and GRIHA. The fast-growing warehousing and logistics sector is also driving demand local governments are facilitating the use of panels in industrial areas across Northern and Western India. Rooftops of commercial buildings are changing too solar-compatible panels with reflective surfaces support building-integrated solar systems, enabling energy-efficient designs that achieve green building certifications through IGBC/GRIHA. Finally, the rising need for cold storage for food stimulated by the growth of retail and online grocery sales has prompted suppliers to provide hygiene-compliant panels that align with food safety standards, boosting market access and consumer confidence.
India's sandwich panels by core materials are divided into EPS, Mineral Wool, PIR, and PU cores. According to BIS IS 12436 and IS 16509, standards for thermal conductivity, fire safety, and load-bearing capabilities are set, ensuring that both EPS and PU panels, frequently used in mass housing and cold storage, adhere to required insulation and safety standards. While EPS is a cost-effective lightweight option, it is better suited for moderate climates. On the other hand, PU and PIR, which provide higher R-values, are increasingly chosen for projects that meet ECBC standards in hot-dry and composite climates to reduce HVAC loads. PIR is especially compliant with stricter fire-performance regulations as per BIS fire standards IS 1641–1646, making it a preferred choice for commercial and industrial applications. Mineral Wool, despite being heavier, is favored in high-rise and industrial settings due to its excellent fire resistance and sound insulation qualities highlighted by ECBC in mixed-use and urban areas. The ECBC 2017, which aligns with India’s goals for energy efficiency, specifies U-values for walls and roofs based on climate zones, which significantly affects the selection of panel cores. For instance, in warm and humid cities like Chennai or Mumbai, low U-value PU/PIR cores help reduce cooling demands. In colder regions such as Himachal or Leh, thicker PU or Mineral Wool cores enhance heating efficiency. In dry areas like Rajasthan, sandwich panels with reflective facings and high-R PIR cores align with ECBC’s envelope performance standards. BIS standards concerning moisture resistance are also relevant in coastal regions, where EPS and PU panels need to include vapor barriers for compliance. BIS certifications combined with ECBC guidelines not only aid in the safe and efficient selection of materials but also foster the use of sandwich panels throughout India’s housing, cold-chain, and industrial sectors connecting costs, performance, and sustainability across various climatic conditions.
In India's sandwich panels by facing materials is divided into aluminum, cement board, and steel employed in sandwich panels are assessed according to BIS fire, thermal, and moisture standards to guarantee safety, longevity, and energy efficiency throughout various climatic regions. Aluminum facings, which are commonly used in commercial and industrial structures, comply with BIS fire safety guidelines IS 1641–1646 and IS 3809 regarding non-combustibility. Although aluminum is light and reflects heat well, it needs protective layers or anodization to fulfill moisture-resistance criteria in humid areas like Kerala or Mumbai, ensuring corrosion control as per IS 1254. Cement board facings, governed by IS 14862 and IS 2095, are preferred in residential and public sector applications for their natural fire resistance, Class 1 spread-of-flame adherence, and strong moisture resilience. Their non-combustible and dimensionally stable characteristics align conveniently with Energy Conservation Building Code ECBC stipulations for wall systems, especially in tropical and coastal locations. Steel facings, regulated by IS 277 for galvanized coatings and IS 2062 for structural steel, are prevalent in industrial and refrigeration applications due to their excellent load-bearing ability. BIS fire regulations require protective coatings or intumescent paints to achieve enhanced fire ratings in line with IS 1644 and IS 3809, while thermal bridging is managed by placing high-R-value cores between steel layers. Moisture protection standards IS 3025 for water resistance and IS 661 for corrosion resistance guarantee that steel panels endure heavy monsoon conditions, particularly in Eastern and Western India. These facing materials, evaluated against BIS fire, thermal, and moisture standards, allow system designers to adapt panels for India's varied climate scenarios ranging from the high humidity of coastal areas to the arid heat of Rajasthan and the earthquake-prone northern regions.
In India sandwich panels by application is divided into Clean Rooms, Cold Storage, Floors, Roofs, and Walls is regulated by the Energy Conservation Building Code ECBC and the National Building Code NBC to improve thermal efficiency, cleanliness, and safety. Clean Rooms, commonly found in the pharmaceutical and electronics industries, are required to conform to NBC Part 8 Building Services for ventilation purposes, as well as the U-value specifications of the ECBC for walls and ceilings to ensure exact temperature control and minimize contamination; the use of PU/PIR cores with aluminum or steel coverings provides low thermal conductivity and surfaces that are easy to clean. Cold Storage facilities, essential for the food and pharmaceutical industries in India, adhere to NBC standards concerning refrigeration demands and the ECBC's envelope regulations, necessitating high-R-value insulation either PU or PIR with steel facings to reduce energy loss while following the BIS standards for fire safety and cleanliness. For Floors, especially in industrial cold storage areas or warehouses, the NBC specifies requirements for load-bearing capacity and moisture resistance, achieved with high-density PU or EPS cores paired with cement board facings, ensuring both thermal efficiency and structural integrity. Roofs, which experience the most significant heat absorption in India's tropical climate, must comply with U-value requirements set by the ECBC according to climate classifications, frequently using reflective aluminum or steel-faced PU/PIR panels; this approach can lower cooling needs by as much as 30% in hot-dry and composite climates. Walls, regulated by NBC Part 6 Structural Design and ECBC thermal performance standards, utilize mineral wool or PU cores based on fire resistance and insulation criteria, guaranteeing adherence in both residential renovations and industrial constructions. The guidelines from the ECBC and NBC establish baseline insulation standards while taking into account India's varying climates, from hot and humid to colder regions.
The sandwich panel market in India by end user sectors is divided into Commercial, Industrial, and Residential areas, influenced by government initiatives such as Pradhan Mantri Awas Yojana PMAY along with energy efficiency guidelines like the Energy Conservation Building Code ECBC and National Building Code NBC. In the Commercial area, the increasing need is fueled by the growth of shopping malls, office buildings, cold storage facilities for food logistics, and data centers. The ECBC Part 4 Building Envelope enforces stringent U-values for walls and rooftops, motivating developers to implement PU and PIR core panels with steel or aluminum faces to achieve energy savings and meet regulations. In the Industrial area, the adoption of sandwich panels is growing in warehouses, factories, and logistics hubs aligned with the Make in India initiative and the Production Linked Incentive PLI programs. The NBC standards concerning fire safety Part 4 and thermal efficiency, along with regional green building codes, have led to the prevalence of fire-resistant mineral wool and PIR panels in sensitive fields such as chemicals, pharmaceuticals, and food processing. Meanwhile, in the Residential area, PMAY’s emphasis on Housing for All and affordable housing has opened doors for cost-effective EPS and PU panels that provide swift construction, thermal comfort, and conformance with NBC seismic design specifications for low-rise homes. Moreover, the drive for net-zero and near-zero energy buildings under ECBC and state guidelines such as ECBC-R for residential promotes the use of insulated wall and roof panels to reduce cooling demands in tropical regions. This adoption across various sectors highlights the performance requirements longevity in industrial applications, functionality in commercial properties, and cost-effectiveness in residential construction coupled with regulatory incentives that standardize the types of panels used.
Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030
Aspects covered in this report
• Sandwich Panels Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
By Core Materials
• Expanded Polystyrene
• Mineral Wool
• Polyisocyanurate
• Polyurethane
By Facing Materials
• Aluminum
• Cement Board
• Steel
By Applications
• Clean Rooms
• Cold Storage
• Floors
• Roof
• Walls
By End Use Sectors
• Commercial
• Industrial
• Residential
Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030
Aspects covered in this report
• Home Textile Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
Product Type
• Bed Linen & Bed Spread
• Bath & toilet Linen
• Kitchen Linen
• Upholstery
• Floor
By End User
• Residential
• Commercial
By Distribution Channel
• Super/Hypermarkets
• Specialty Stores
• Online
• Other Channels
According to the research report, ""India Sandwich Panels Market Overview, 2030,"" published by Bonafide Research, the India Sandwich Panels market is anticipated to grow at more than 11.86% CAGR from 2025 to 2030. As this market develops, producers are creating economical yet effective panels designed for the country's warm climate attributes such as PU and PIR cores provide superior thermal resistance, while attractive finishes cater to the visual preferences of commercial projects. Major local companies like EPACK Prefab, Kingspan Jindal, and Isopan India are increasing their production capabilities, exemplified by EPACK's new facility in Andhra Pradesh, to meet the growing demand from various industries. A significant area of growth is the expansion of cold chains, where specially designed sandwich panels are crucial for the food and pharmaceutical supply chains. The affordable prefabricated panel systems are becoming popular within the mass housing sector as a budget-friendly and quick-install option. Firms are ensuring these products comply with the energy regulations outlined in the Energy Conservation Building Code ECBC and sustainable building standards like IGBC and GRIHA. The fast-growing warehousing and logistics sector is also driving demand local governments are facilitating the use of panels in industrial areas across Northern and Western India. Rooftops of commercial buildings are changing too solar-compatible panels with reflective surfaces support building-integrated solar systems, enabling energy-efficient designs that achieve green building certifications through IGBC/GRIHA. Finally, the rising need for cold storage for food stimulated by the growth of retail and online grocery sales has prompted suppliers to provide hygiene-compliant panels that align with food safety standards, boosting market access and consumer confidence.
India's sandwich panels by core materials are divided into EPS, Mineral Wool, PIR, and PU cores. According to BIS IS 12436 and IS 16509, standards for thermal conductivity, fire safety, and load-bearing capabilities are set, ensuring that both EPS and PU panels, frequently used in mass housing and cold storage, adhere to required insulation and safety standards. While EPS is a cost-effective lightweight option, it is better suited for moderate climates. On the other hand, PU and PIR, which provide higher R-values, are increasingly chosen for projects that meet ECBC standards in hot-dry and composite climates to reduce HVAC loads. PIR is especially compliant with stricter fire-performance regulations as per BIS fire standards IS 1641–1646, making it a preferred choice for commercial and industrial applications. Mineral Wool, despite being heavier, is favored in high-rise and industrial settings due to its excellent fire resistance and sound insulation qualities highlighted by ECBC in mixed-use and urban areas. The ECBC 2017, which aligns with India’s goals for energy efficiency, specifies U-values for walls and roofs based on climate zones, which significantly affects the selection of panel cores. For instance, in warm and humid cities like Chennai or Mumbai, low U-value PU/PIR cores help reduce cooling demands. In colder regions such as Himachal or Leh, thicker PU or Mineral Wool cores enhance heating efficiency. In dry areas like Rajasthan, sandwich panels with reflective facings and high-R PIR cores align with ECBC’s envelope performance standards. BIS standards concerning moisture resistance are also relevant in coastal regions, where EPS and PU panels need to include vapor barriers for compliance. BIS certifications combined with ECBC guidelines not only aid in the safe and efficient selection of materials but also foster the use of sandwich panels throughout India’s housing, cold-chain, and industrial sectors connecting costs, performance, and sustainability across various climatic conditions.
In India's sandwich panels by facing materials is divided into aluminum, cement board, and steel employed in sandwich panels are assessed according to BIS fire, thermal, and moisture standards to guarantee safety, longevity, and energy efficiency throughout various climatic regions. Aluminum facings, which are commonly used in commercial and industrial structures, comply with BIS fire safety guidelines IS 1641–1646 and IS 3809 regarding non-combustibility. Although aluminum is light and reflects heat well, it needs protective layers or anodization to fulfill moisture-resistance criteria in humid areas like Kerala or Mumbai, ensuring corrosion control as per IS 1254. Cement board facings, governed by IS 14862 and IS 2095, are preferred in residential and public sector applications for their natural fire resistance, Class 1 spread-of-flame adherence, and strong moisture resilience. Their non-combustible and dimensionally stable characteristics align conveniently with Energy Conservation Building Code ECBC stipulations for wall systems, especially in tropical and coastal locations. Steel facings, regulated by IS 277 for galvanized coatings and IS 2062 for structural steel, are prevalent in industrial and refrigeration applications due to their excellent load-bearing ability. BIS fire regulations require protective coatings or intumescent paints to achieve enhanced fire ratings in line with IS 1644 and IS 3809, while thermal bridging is managed by placing high-R-value cores between steel layers. Moisture protection standards IS 3025 for water resistance and IS 661 for corrosion resistance guarantee that steel panels endure heavy monsoon conditions, particularly in Eastern and Western India. These facing materials, evaluated against BIS fire, thermal, and moisture standards, allow system designers to adapt panels for India's varied climate scenarios ranging from the high humidity of coastal areas to the arid heat of Rajasthan and the earthquake-prone northern regions.
In India sandwich panels by application is divided into Clean Rooms, Cold Storage, Floors, Roofs, and Walls is regulated by the Energy Conservation Building Code ECBC and the National Building Code NBC to improve thermal efficiency, cleanliness, and safety. Clean Rooms, commonly found in the pharmaceutical and electronics industries, are required to conform to NBC Part 8 Building Services for ventilation purposes, as well as the U-value specifications of the ECBC for walls and ceilings to ensure exact temperature control and minimize contamination; the use of PU/PIR cores with aluminum or steel coverings provides low thermal conductivity and surfaces that are easy to clean. Cold Storage facilities, essential for the food and pharmaceutical industries in India, adhere to NBC standards concerning refrigeration demands and the ECBC's envelope regulations, necessitating high-R-value insulation either PU or PIR with steel facings to reduce energy loss while following the BIS standards for fire safety and cleanliness. For Floors, especially in industrial cold storage areas or warehouses, the NBC specifies requirements for load-bearing capacity and moisture resistance, achieved with high-density PU or EPS cores paired with cement board facings, ensuring both thermal efficiency and structural integrity. Roofs, which experience the most significant heat absorption in India's tropical climate, must comply with U-value requirements set by the ECBC according to climate classifications, frequently using reflective aluminum or steel-faced PU/PIR panels; this approach can lower cooling needs by as much as 30% in hot-dry and composite climates. Walls, regulated by NBC Part 6 Structural Design and ECBC thermal performance standards, utilize mineral wool or PU cores based on fire resistance and insulation criteria, guaranteeing adherence in both residential renovations and industrial constructions. The guidelines from the ECBC and NBC establish baseline insulation standards while taking into account India's varying climates, from hot and humid to colder regions.
The sandwich panel market in India by end user sectors is divided into Commercial, Industrial, and Residential areas, influenced by government initiatives such as Pradhan Mantri Awas Yojana PMAY along with energy efficiency guidelines like the Energy Conservation Building Code ECBC and National Building Code NBC. In the Commercial area, the increasing need is fueled by the growth of shopping malls, office buildings, cold storage facilities for food logistics, and data centers. The ECBC Part 4 Building Envelope enforces stringent U-values for walls and rooftops, motivating developers to implement PU and PIR core panels with steel or aluminum faces to achieve energy savings and meet regulations. In the Industrial area, the adoption of sandwich panels is growing in warehouses, factories, and logistics hubs aligned with the Make in India initiative and the Production Linked Incentive PLI programs. The NBC standards concerning fire safety Part 4 and thermal efficiency, along with regional green building codes, have led to the prevalence of fire-resistant mineral wool and PIR panels in sensitive fields such as chemicals, pharmaceuticals, and food processing. Meanwhile, in the Residential area, PMAY’s emphasis on Housing for All and affordable housing has opened doors for cost-effective EPS and PU panels that provide swift construction, thermal comfort, and conformance with NBC seismic design specifications for low-rise homes. Moreover, the drive for net-zero and near-zero energy buildings under ECBC and state guidelines such as ECBC-R for residential promotes the use of insulated wall and roof panels to reduce cooling demands in tropical regions. This adoption across various sectors highlights the performance requirements longevity in industrial applications, functionality in commercial properties, and cost-effectiveness in residential construction coupled with regulatory incentives that standardize the types of panels used.
Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030
Aspects covered in this report
• Sandwich Panels Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
By Core Materials
• Expanded Polystyrene
• Mineral Wool
• Polyisocyanurate
• Polyurethane
By Facing Materials
• Aluminum
• Cement Board
• Steel
By Applications
• Clean Rooms
• Cold Storage
• Floors
• Roof
• Walls
By End Use Sectors
• Commercial
• Industrial
• Residential
Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030
Aspects covered in this report
• Home Textile Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation
Product Type
• Bed Linen & Bed Spread
• Bath & toilet Linen
• Kitchen Linen
• Upholstery
• Floor
By End User
• Residential
• Commercial
By Distribution Channel
• Super/Hypermarkets
• Specialty Stores
• Online
• Other Channels
Table of Contents
76 Pages
- 1. Executive Summary
- 2. Market Structure
- 2.1. Market Considerate
- 2.2. Assumptions
- 2.3. Limitations
- 2.4. Abbreviations
- 2.5. Sources
- 2.6. Definitions
- 3. Research Methodology
- 3.1. Secondary Research
- 3.2. Primary Data Collection
- 3.3. Market Formation & Validation
- 3.4. Report Writing, Quality Check & Delivery
- 4. UAE Geography
- 4.1. Population Distribution Table
- 4.2. UAE Macro Economic Indicators
- 5. Market Dynamics
- 5.1. Key Insights
- 5.2. Recent Developments
- 5.3. Market Drivers & Opportunities
- 5.4. Market Restraints & Challenges
- 5.5. Market Trends
- 5.6. Supply chain Analysis
- 5.7. Policy & Regulatory Framework
- 5.8. Industry Experts Views
- 6. UAE Home Textile Market Overview
- 6.1. Market Size By Value
- 6.2. Market Size and Forecast, By Product Type
- 6.3. Market Size and Forecast, By End User
- 6.4. Market Size and Forecast, By Distribution Channel
- 6.5. Market Size and Forecast, By Region
- 7. UAE Home Textile Market Segmentations
- 7.1. UAE Home Textile Market, By Product Type
- 7.1.1. UAE Home Textile Market Size, By Bed Linen & Bed Spread, 2019-2030
- 7.1.2. UAE Home Textile Market Size, By Bath & toilet Linen, 2019-2030
- 7.1.3. UAE Home Textile Market Size, By Kitchen Linen, 2019-2030
- 7.1.4. UAE Home Textile Market Size, By Upholstery, 2019-2030
- 7.1.5. UAE Home Textile Market Size, By Floor, 2019-2030
- 7.2. UAE Home Textile Market, By End User
- 7.2.1. UAE Home Textile Market Size, By Residential, 2019-2030
- 7.2.2. UAE Home Textile Market Size, By Commercial, 2019-2030
- 7.3. UAE Home Textile Market, By Distribution Channel
- 7.3.1. UAE Home Textile Market Size, By Super/Hypermarkets, 2019-2030
- 7.3.2. UAE Home Textile Market Size, By Specialty Stores, 2019-2030
- 7.3.3. UAE Home Textile Market Size, By Online, 2019-2030
- 7.3.4. UAE Home Textile Market Size, By Other Channels, 2019-2030
- 7.4. UAE Home Textile Market, By Region
- 7.4.1. UAE Home Textile Market Size, By North, 2019-2030
- 7.4.2. UAE Home Textile Market Size, By East, 2019-2030
- 7.4.3. UAE Home Textile Market Size, By West, 2019-2030
- 7.4.4. UAE Home Textile Market Size, By South, 2019-2030
- 8. UAE Home Textile Market Opportunity Assessment
- 8.1. By Product Type, 2025 to 2030
- 8.2. By End User, 2025 to 2030
- 8.3. By Distribution Channel, 2025 to 2030
- 8.4. By Region, 2025 to 2030
- 9. Competitive Landscape
- 9.1. Porter's Five Forces
- 9.2. Company Profile
- 9.2.1. Company 1
- 9.2.1.1. Company Snapshot
- 9.2.1.2. Company Overview
- 9.2.1.3. Financial Highlights
- 9.2.1.4. Geographic Insights
- 9.2.1.5. Business Segment & Performance
- 9.2.1.6. Product Portfolio
- 9.2.1.7. Key Executives
- 9.2.1.8. Strategic Moves & Developments
- 9.2.2. Company 2
- 9.2.3. Company 3
- 9.2.4. Company 4
- 9.2.5. Company 5
- 9.2.6. Company 6
- 9.2.7. Company 7
- 9.2.8. Company 8
- 10. Strategic Recommendations
- 11. Disclaimer
- List of Tables
- Figure 1: UAE Home Textile Market Size By Value (2019, 2024 & 2030F) (in USD Million)
- Figure 2: Market Attractiveness Index, By Product Type
- Figure 3: Market Attractiveness Index, By End User
- Figure 4: Market Attractiveness Index, By Distribution Channel
- Figure 5: Market Attractiveness Index, By Region
- Figure 6: Porter's Five Forces of UAE Home Textile Market
- List of Figures
- Table 1: Influencing Factors for Home Textile Market, 2024
- Table 2: UAE Home Textile Market Size and Forecast, By Product Type (2019 to 2030F) (In USD Million)
- Table 3: UAE Home Textile Market Size and Forecast, By End User (2019 to 2030F) (In USD Million)
- Table 4: UAE Home Textile Market Size and Forecast, By Distribution Channel (2019 to 2030F) (In USD Million)
- Table 5: UAE Home Textile Market Size and Forecast, By Region (2019 to 2030F) (In USD Million)
- Table 6: UAE Home Textile Market Size of Bed Linen & Bed Spread (2019 to 2030) in USD Million
- Table 7: UAE Home Textile Market Size of Bath & toilet Linen (2019 to 2030) in USD Million
- Table 8: UAE Home Textile Market Size of Kitchen Linen (2019 to 2030) in USD Million
- Table 9: UAE Home Textile Market Size of Upholstery (2019 to 2030) in USD Million
- Table 10: UAE Home Textile Market Size of Floor (2019 to 2030) in USD Million
- Table 11: UAE Home Textile Market Size of Residential (2019 to 2030) in USD Million
- Table 12: UAE Home Textile Market Size of Commercial (2019 to 2030) in USD Million
- Table 13: UAE Home Textile Market Size of Super/Hypermarkets (2019 to 2030) in USD Million
- Table 14: UAE Home Textile Market Size of Specialty Stores (2019 to 2030) in USD Million
- Table 15: UAE Home Textile Market Size of Online (2019 to 2030) in USD Million
- Table 16: UAE Home Textile Market Size of Other Channels (2019 to 2030) in USD Million
- Table 17: UAE Home Textile Market Size of North (2019 to 2030) in USD Million
- Table 18: UAE Home Textile Market Size of East (2019 to 2030) in USD Million
- Table 19: UAE Home Textile Market Size of West (2019 to 2030) in USD Million
- Table 20: UAE Home Textile Market Size of South (2019 to 2030) in USD Million
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