Saturday, August 1, 2026

Sainsbury's Reshapes Retail Operations with Strategic Sale of Argos General Merchandise Business

British supermarket giant J Sainsbury plc has agreed to sell its non-core Argos general merchandise assets in a transaction valued at approximately £120 million. The move represents a decisive turn in the grocer's long-term strategy, prioritizing core food operations over non-food catalog retailing in a highly competitive UK marketplace. The corporate divestment marks one of the most substantial operational realignments for Sainsbury's since it original acquisition of Home Retail Group, shifting resources back to frontline grocery dominance.

The agreement refines Sainsbury's capital allocation model after years of integrating standalone Argos fulfillment hubs into existing store networks. By selling off specific general merchandise operations while retaining key brand intellectual property and store-in-store footprints, the group aims to bolster balance sheet liquidity, cut supply chain friction, and focus investments on automated grocery fulfillment and pricing competitiveness against aggressive discount chains across Britain.

Key Takeaways

  • Sainsbury's signs agreement to divest select Argos general merchandise operations for approximately £120 million.
  • The deal allows the retail group to refocus capital directly into its core grocery ecosystem and price-matching initiatives.
  • Argos store-in-store locations inside larger Sainsbury's supermarkets will maintain fulfillment capabilities under modified commercial licensing.
  • Proceeds are slated for balance sheet deleveraging, digital infrastructure upgrades, and automated distribution hubs.
  • The move highlights broader European retail consolidation as major grocers pull back from secondary general merchandise sectors.

Table of Contents

Transaction Overview & Strategic Refocus

Sainsbury's sale of its Argos general merchandise division for £120 million reflects a strategic sharpening of capital priorities across Britain's retail landscape. The transaction enables the grocer to streamline non-food logistics, lower operational complexity, and reinvest cash flow directly into core food pricing and digital supply chains.

When Sainsbury's initially acquired Home Retail Group, the umbrella company of Argos, the strategy centered on cross-selling consumer electronics, toys, and homewares alongside weekly grocery shopping. However, rising fulfillment expenses, shifts in e-commerce buying habits, and stiff competition from international online marketplaces altered that dynamic. Streamlining general merchandise allows management to preserve high-margin retail space while transferring heavy inventory holding risks.

Refining the Store-in-Store Fulfillment Concept

Under the restructured commercial agreement, Sainsbury's retains control over its high-performing retail real estate. Standalone Argos counters integrated into supermarket footprints will continue to serve local neighborhoods, but backend sourcing, warehousing, and bulk merchandise procurement will be recalibrated to reduce overhead costs.

Reallocating Capital to Core Supermarkets

The £120 million cash inflow gives Sainsbury's flexible capital to enhance its value proposition in fresh produce and packaged goods. In an environment where discounters like Aldi and Lidl maintain pressure on margins, directing financial reserves toward price locking and loyalty programs remains a top priority for corporate leadership.

The Shifting Landscape of UK Retail Logistics

The divestment of general merchandise operations highlights a broader operational pivot across European consumer markets, where grocers are scaling back capital-intensive non-food lines. Rising real estate overhead, wage inflation, and volatile supply chains have compelled major retail chains to focus on high-frequency, high-turnover grocery essentials.

For years, UK supermarkets pursued an all-in-one departmental model. That approach faced structural headwinds as consumer purchasing moved toward specialized online platforms. By scaling down direct exposure to bulky non-food inventory, grocers minimize write-downs on unsold seasonal goods while freeing up urban warehouse capacity for high-density grocery operations.

Logistical Efficiency vs. Product Variety

Managing non-food inventories requires vast distribution centers and multi-channel fulfillment setups. General merchandise carries longer holding cycles compared to fast-moving fresh foods. Trimming these lines streamlines transportation routes and eliminates redundant storage capacity.

Digital Integration and E-Commerce Demands

Modern retail customers expect rapid delivery and seamless digital ordering. Refining the Argos operating structure allows the primary business to leverage existing click-and-collect points without maintaining excessive inventory stocks in secondary regional warehouses.

Important Transaction & Industry Statistics

Metric / Data PointFigures & DetailsStrategic Implication
Transaction Consideration£120 Million Approx.Provides immediate cash proceeds for debt reduction and core investment.
Historical Acquisition Context£1.4 Billion (2016 Home Retail Group deal)Reflects substantial long-term restructuring and impairment realignments.
UK Grocery Market ShareSecond largest UK grocer (~15% share)Reinforces necessity to protect core market share against discounters.
Fulfillment Real EstateHundreds of store-in-store countersMaintains localized customer pickup access while cutting warehousing risk.

Pros and Cons of the Divestment Strategy

Strategic AnglePotential Advantages (Pros)Potential Risks & Drawbacks (Cons)
Core FocusDirects executive focus and capital onto primary food operations.Reduces overall sales volume from non-grocery merchandise categories.
Financial StructureGenerates £120m liquidity and cuts operating complexity.Incurs transaction costs and strategic write-downs from past asset valuations.
Customer ConveniencePreserves popular store-in-store click-and-collect pickup locations.Possible changes in non-food product selection or regional availability.
Supply ChainDecreases holding costs for slow-moving seasonal merchandise.Requires careful renegotiation of long-term vendor and carrier contracts.

Timeline of Sainsbury's Argos Integration

Year / PeriodDevelopment StageKey Strategic Action
2016AcquisitionSainsbury's acquires Home Retail Group (Argos) for £1.4 billion.
2017–2020Store RestructuringClosure of standalone high street stores; expansion of supermarket shop-in-shops.
2021–2023Digital StreamliningMigration of catalog ordering to digital apps and in-store touchscreen hubs.
Current EventMerchandise DivestmentAgreement to sell non-core general merchandise operations for £120 million.

Why This Matters for Consumers and Investors

This transaction signals a permanent change in how major British retailers approach multi-category shopping. For everyday shoppers, store-in-store click-and-collect services inside Sainsbury's locations remain operational, ensuring that local order pickups continue with minimal disruption.

For institutional investors and market analysts, the sale offers clear proof of disciplined capital allocation. By shedding low-margin or operationally complex non-food assets, management demonstrates a commitment to defending market share in the essential grocery sector, where customer frequency and brand loyalty generate sustainable cash flows.

Market Impact Across the Grocery Sector

The general merchandise market shift is reverberating across competing retail chains in the United Kingdom. Competing supermarket operators are closely observing how Sainsbury's reallocates capital, with several evaluating their own balance sheets to determine whether secondary retail divisions are delivering adequate returns on capital.

Discount retailers and pure-play e-commerce platforms stand to capture market share in general merchandise if conventional grocers pare back direct inventory. Concurrently, commercial property markets are adjusting as major store networks transition away from expansive standalone retail sites toward consolidated supermarket hubs.

Financial Impact and Corporate Balance Sheet

The cash consideration of £120 million enhances Sainsbury's working capital position, providing operational flexibility during volatile economic periods. Reduced working capital drag from slow-moving non-food inventory improves cash conversion cycles across the enterprise.

From an accounting perspective, offloading general merchandise infrastructure simplifies asset valuations and lowers ongoing maintenance capital expenditures. The capital can be directed toward high-margin digital loyalty platforms, automated fulfillment centers, and energy-efficient store upgrades.

Who Benefits From the Reorganization?

Primary grocery shoppers benefit as Sainsbury's focuses resources on competitive food pricing, fresh produce quality, and expanding loyalty card discounts. Streamlined operations reduce internal overhead, enabling the grocer to protect essential basket prices.

Logistics partners and specialized retail operations acquiring or licensing these assets stand to gain operational scale. By focusing exclusively on general merchandise procurement, specialized entities can optimize supply chain routes that do not fit a traditional grocery distribution framework.

Who Is Affected Across the Retail Ecosystem?

Supply chain vendors and general merchandise suppliers will experience structural shifts as purchasing agreements are restructured under new ownership or licensing models. Sourcing frameworks for non-food items will adapt to separate corporate governance.

Store employees and fulfillment center staff will navigate operational integration under updated commercial guidelines. While store-in-store pickup desks inside supermarkets remain active, backend distribution networks will adjust to streamlined throughput requirements.

Common Misconceptions About the Deal

A frequent misconception is that Argos will vanish completely from Sainsbury's stores. In reality, the customer-facing click-and-collect network within existing supermarkets remains a core pillar of customer engagement, operating under updated operational models.

Another common mistake is treating this transaction as a simple fire sale. Instead, it reflects a calculated corporate restructuring intended to unbundle complex non-food logistics while preserving the retail footprint that delivers high footfall and digital order convenience.

Expert Industry Analysis

Retail industry analysts view this strategic pivot as a necessary adaptation to modern grocery economics. Maintaining massive non-food product ranges alongside fast-moving consumer goods creates operational friction that fewer grocers are willing to sustain in a high-cost environment.

By untangling general merchandise logistics from food distribution, Sainsbury's aligns its business structure with global retail best practices. Industry observers note that pure-play focus often yields better long-term equity returns than holding diverse, loosely coupled operating divisions.

What Happens Next in the Integration Phase?

In the coming months, regulatory reviews and operational carve-outs will finalize the transfer of general merchandise assets. Sainsbury's management will execute transitional service agreements to maintain uninterrupted retail services during the handoff.

Simultaneously, the grocer will roll out updated capital deployment plans detailing how proceeds will support core retail initiatives. Shoppers can expect accelerated rollouts of automated checkout systems, enhanced loyalty program integration, and targeted price investments across core grocery departments.

Frequently Asked Questions

Why is Sainsbury's selling its Argos general merchandise business?

Sainsbury's is selling these assets for £120 million to focus its capital and operational resources on its core grocery business, lowering supply chain complexity and funding price competitiveness.

Will Argos collection points inside Sainsbury's stores close down?

No, store-in-store Argos counters and click-and-collect collection desks inside Sainsbury's supermarkets are expected to remain open for convenient customer pickup.

How much did Sainsbury's sell the business unit for?

The transaction is valued at approximately £120 million, subject to standard working capital adjustments and regulatory approvals.

What will Sainsbury's do with the sale proceeds?

Proceeds are slated for balance sheet strengthening, debt reduction, digital loyalty enhancements, and price-matching initiatives in core food retail.

When was Argos originally bought by Sainsbury's?

Sainsbury's acquired Home Retail Group, the parent entity of Argos, in 2016 for approximately £1.4 billion as part of a multi-channel retail expansion.

How does this deal affect regular grocery shoppers?

Everyday supermarket shoppers should see minimal negative disruption, with potential benefits arising from sharper grocery pricing and improved store infrastructure.

Final Verdict

Sainsbury's £120 million divestment of non-core Argos general merchandise operations represents a clear-eyed return to retail fundamentals. By trimming operational overhead and refocusing executive attention on core grocery execution, the UK's second-largest supermarket chain strengthens its competitive footing in a rapidly evolving market.

Key Points Summary

The strategic sale generates immediate liquidity, simplifies logistical networks, and preserves customer-facing click-and-collect convenience while eliminating holding risks associated with bulky non-food inventories. The deal marks a pivotal chapter in British retail restructuring.

Stay informed on the latest business developments, market movements, and corporate strategies by following detailed analysis at Arda Times.

AI Boom Forces Google and Meta Into Heavy Construction, Creating High-Tech Building Trades

Silicon Valley spent decades convincing the world that economic power belonged to intangible code, cloud software, and digital platforms. Now, the artificial intelligence race has forced tech titans back down to earth—literally. Google, Meta, Microsoft, and Amazon are committing hundreds of billions of dollars to clear land, pour reinforced concrete, install high-voltage substations, and route complex cooling networks.

The massive computing power required to train and run generative artificial intelligence models has created an unprecedented bottleneck in physical infrastructure. Because traditional commercial builders and power utilities cannot construct specialized facilities fast enough, technology conglomerates are taking direct ownership of heavy industrial supply chains. In doing so, these companies have effectively entered the construction sector, turning industrial building trades and utility engineering into some of the most lucrative and urgently sought-after careers in the modern workforce.

Key Takeaways

  • Hyperscale technology firms are funding and managing mega-scale industrial construction projects to build AI data facilities.
  • High-voltage electricians, mechanical pipefitters, power systems engineers, and industrial project managers are experiencing historically high job demand and wage growth.
  • Power grid capacity and access to substations have replaced software talent as the primary bottleneck for tech expansion.
  • Tech companies are signing direct contracts with energy producers, modular building vendors, and heavy equipment manufacturers.
  • Local communities face intense competition for trade labor, water resources, and electrical grid capacity.

Table of Contents

Why Tech Giants Are Entering the Construction Industry

Google, Meta, Microsoft, and Amazon are actively participating in heavy construction management because traditional building timelines cannot support the rapid pace of artificial intelligence development. Tech firms now directly control design specifications, secure raw materials, and manage specialized craft labor forces to guarantee hyperscale data center deliveries.

For years, technology companies outsourced data center creation to third-party developers, leasing server space in multi-tenant facilities. However, generative AI workloads demand facility designs radically different from standard cloud computing hubs. AI clusters require dense server configurations that generate intense heat and draw unprecedented amounts of continuous electricity per square foot.

Bypassing Commercial Bottlenecks

Standard industrial contractors rarely maintain the technical staff needed to install advanced liquid-cooling manifolds or multi-gigawatt power transformers. By stepping directly into supply chain procurement and site development, tech companies ensure their facilities meet strict engineering tolerances without waiting on traditional developer queues.

Securing Direct Supply Chains

Major technology firms are ordering specialized structural steel, high-capacity cooling units, and high-voltage switchgear directly from fabricators months or years in advance. This vertical integration transforms technology companies into active industrial buyers and infrastructure developers, redefining their role in global logistics.

How the Generative AI Boom Demands Unprecedented Infrastructure

Generative artificial intelligence models require massive server arrays that draw significantly more power than conventional cloud platforms. This power density demands heavy-duty structural designs, specialized HVAC cooling liquid loops, and dedicated electrical substations, sparking a historic surge in physical construction projects globally.

A standard web server rack historically drew between 5 to 10 kilowatts of power. In contrast, high-density computing clusters built for generative AI model training can consume 40 to 100 kilowatts or more per rack. This exponential increase changes basic structural engineering requirements.

Power and Cooling Transformation

Air cooling is no longer sufficient for high-density AI hardware clusters. Modern facility designs require direct-to-chip liquid cooling circuits, complex heat exchangers, and massive closed-loop water systems. Installing these hydraulic systems requires specialized industrial plumbers and pipefitters trained in ultra-precise fluid mechanical standards.

Structural Reinforced Design

The sheer physical weight of liquid-cooled computing racks and backup battery storage forces builders to re-engineer concrete foundations. Floors must support far greater weight per square meter than standard logistics warehouses or residential builds, drawing heavy civil engineering teams straight into technology projects.

The Most In-Demand Construction and Engineering Jobs in Tech

The fastest-growing roles in tech-backed construction include high-voltage industrial electricians, mechanical pipefitters, power systems engineers, BIM managers, and heavy civil project Directors. These positions command top-tier compensation due to severe workforce shortages in specialized trade skillsets.

While software engineering layoffs made headlines across technology sectors over recent quarters, hiring managers in infrastructure divisions are aggressively recruiting skilled trade professionals and civil engineers.

High-Voltage Electricians and Substation Technicians

Connecting hyperscale campuses directly to regional electrical grids requires certified high-voltage technicians who can install medium-to-high-voltage transformers, switchgear, and microgrid controls. These specialists are among the most sought-after technical workers across North America and Europe.

Pipefitters and Mechanical Fluid Engineers

Because direct-to-chip cooling and chilled-water systems are essential to modern server stability, master pipefitters with experience in industrial liquid systems are commanding high pay rates, overtime incentives, and long-term project guarantees.

BIM and Digital Twin Coordinators

Building Information Modeling (BIM) specialists use 3D digital models to map out precise conduit routes, cooling pipes, and structural supports before ground is broken. This digital construction layer bridges the gap between software platforms and hands-on jobsite execution.

Important Statistics in AI Infrastructure and Construction

The following metrics highlight the operational scale, labor realities, and capital commitment defining tech-driven construction activity across global markets.

Metric CategoryEstimated Range / ValuePrimary Drivers
Hyperscale Facility Power Demand100 MW to over 1 GW per campusHigh-density GPU clusters and continuous AI training cycles
Global Data Center Construction Market GrowthProjected double-digit annual growth through 2030Enterprise AI integration and cloud infrastructure expansion
Specialized Trade Wage Premiums15% to 35% above average commercial trade ratesLabor shortages in certified high-voltage and HVAC roles
Supply Chain Lead Time for Transformers50 to 100+ weeks for large power transformersGlobal steel shortages and manufacturing capacity constraints

Pros and Cons of the Tech Infrastructure Expansion

The rapid shift of tech spending into heavy construction creates substantial benefits for industrial skilled trades, but presents severe trade-offs for traditional commercial construction and local power networks.

Advantages (Pros)Disadvantages (Cons)
Creates well-paying, resilient jobs for blue-collar skilled trades.Diverts skilled labor away from housing and municipal infrastructure projects.
Accelerates modernization of regional electrical grid hardware.Strains existing power grids and raises localized utility rates.
Injects direct private investment into rural and suburban economies.Increases competition for water and municipal industrial land usage.
Drives technical innovation in modular construction and green cooling.Exposes tech companies to supply chain and labor delays outside software control.

Timeline of Tech Industry Construction Expansion

The transition of major tech enterprises into dominant industrial project owners unfolded over two decades, rapidly accelerating with the advent of generative AI.

PeriodIndustry MilestoneCore Structural Impact
2000s – Early 2010sStandard Co-location FacilitiesTech companies relied on third-party real estate developers for basic server space.
2015 – 2020Rise of Enterprise Hyperscale FacilitiesTech companies began custom-building multi-megawatt facilities tailored for cloud apps.
2022 – 2023Generative AI BreakthroughGPU server densities surged, exposing thermal and electrical limits in existing builds.
2024 – PresentDirect Tech Construction ManagementTech majors acquire land, secure power directly from utilities, and hire heavy construction teams.

Why This Shift Matters for the Broader Economy

The convergence of technology capital and industrial heavy trades fundamentally reshapes economic development. For decades, policymakers framed economic growth as a choice between service-based software economies and physical manufacturing. The AI buildout merges these two realms, showing that advanced digital technology cannot scale without heavy industrial capacity.

Furthermore, this capital realignment directs billions of dollars toward non-traditional tech hubs. Rural counties with access to high-voltage transmission lines, nuclear power plants, or major hydroelectric facilities are attracting major infrastructure projects that generate local tax revenues and sustained maintenance jobs.

Market Impact Across Real Estate and Utilities

The real estate and energy sectors are undergoing massive dynamic adjustments to accommodate hyperscale technology campuses.

Industrial Real Estate Valuations

Land parcels located near primary fiber lines and utility substations have seen dramatic valuation surges. Developers who previously targeted warehouse distribution centers are shifting portfolio strategies toward shovel-ready data campus acreage.

Energy Market Restructuring

Utilities face historic growth in industrial power demand after years of flat usage. To secure continuous clean energy, tech companies are entering direct power purchase agreements (PPAs) with nuclear, geothermal, and solar providers, effectively financing new clean energy infrastructure.

Financial Impact on Corporate Capital Expenditures

Major tech firms are reallocating historical corporate spending patterns. Capital expenditure (CapEx) budgets that once prioritized office space leases and server acquisitions are overwhelmingly committed to physical land, raw materials, heavy equipment, and specialized trade labor.

Annual infrastructure CapEx for top cloud providers now routinely reaches tens of billions of dollars per firm. This heavy expenditure pressures near-term corporate margins but creates long-term physical moats that competitors without capital reserves cannot duplicate.

Who Benefits and Who Is Affected

Who Benefits

  • Skilled Trade Workers: Electricians, plumbers, millwrights, and heavy equipment operators gain long-term job security and competitive compensation packages.
  • Heavy Equipment Fabricators: Manufacturers of transformers, industrial chillers, backup generators, and pre-fabricated modular units experience historic order backlogs.
  • Clean Energy Developers: Renewable energy firms gain guaranteed corporate buyers willing to fund long-term power purchase contracts.

Who Is Affected

  • Local Homebuilders and Municipal Contractors: Smaller residential and civic projects struggle to retain skilled craft labor due to wage competition from tech megaprojects.
  • Regional Power Grids: Local utility commissions must balance heavy data center loads against consumer power delivery and rate stability.
  • Traditional Software Engineers: Relative labor market leverage has shifted, with physical building experts seeing unprecedented demand relative to pure software roles.

Common Misconceptions About Tech Infrastructure Jobs

Several persistent misunderstandings surround the technology sector's pivot into industrial construction and facility building.

Misconception 1: Data Centers Only Create Temporary Construction Jobs

While heavy ground-clearing and concrete work end when building finishes, modern hyperscale sites require continuous long-term staffing. Permanent teams of high-voltage electricians, cooling systems engineers, security personnel, and facilities managers remain on-site throughout the multi-decade lifecycle of the campus.

Misconception 2: AI Building Is Purely Automated by Robotics

Despite advances in site modeling software, physical data center construction remains heavily dependent on human expertise. Installing delicate fiber lines, welding heavy cooling pipes, and terminating high-voltage electrical circuits require hands-on craft labor that current automation cannot replicate.

Misconception 3: Any Standard Warehouse Can Be Converted to an AI Data Center

Converting a standard logistics facility into an AI data center is rarely viable. Most existing industrial buildings lack the structural floor capacity, ceiling clearances, high-voltage grid connections, and water rights required to support dense GPU computing clusters.

Expert Analysis of the Construction Workforce Pivot

Industry analysts and labor market economists note that the tech sector's entry into heavy construction marks a permanent structural realignment. As artificial intelligence models expand in scope, computing demand will require continuous facility expansion and periodic hardware retrofits.

Educational institutions and vocational trade programs are adjusting curricula to meet this demand. Apprenticeship programs are partnering with infrastructure contractors to train specialized technicians in liquid-cooling hydraulics, fiber-optic routing, and automated building management systems, creating clear technical career pathways outside traditional four-year degree tracks.

What Happens Next in AI Facility Development

Over the coming two to five years, expect tech firms to push deeper into pre-fabricated, modular construction techniques. By assembling server rooms, cooling distribution units, and electrical skids inside controlled factories before shipping them to job sites, developers hope to bypass local weather delays and craft labor shortages.

Simultaneously, energy access will dictate project locations. Tech companies are actively exploring direct co-location with small modular nuclear reactors (SMRs), off-grid geothermal installations, and dedicated energy storage farms to secure consistent power without overwhelming public municipal grids.

Frequently Asked Questions

Why are Google and Meta directly involved in construction projects?

They are directly involved because standard commercial construction companies and timelines cannot build specialized, high-density AI data facilities fast enough to match software development schedules.

What trade jobs are most in demand for AI data center builds?

High-voltage electricians, mechanical pipefitters, HVAC technicians, civil site managers, structural welders, and Building Information Modeling (BIM) coordinators are in highest demand.

How do AI data centers differ from traditional cloud data centers?

AI data centers feature significantly higher power density per server rack, requiring advanced direct-to-chip liquid cooling systems, heavy-duty floor reinforcement, and massive high-voltage grid connections.

Does the AI construction boom affect local power rates?

It can. When large facilities draw heavy continuous power from regional grids, utilities must invest in grid upgrades. State regulators are working to ensure tech companies bear these infrastructure costs directly.

Are these data center jobs long-term or temporary?

While initial site building is project-based, long-term operations, hardware upgrades, and continuous campus expansions create permanent careers for facilities engineers and electrical specialists.

How are tech companies addressing power supply shortages?

Tech companies are signing long-term power purchase agreements for nuclear, solar, geothermal, and battery storage energy, while directly financing power substations and grid connections.

Final Verdict

The artificial intelligence race is no longer fought solely inside software repositories or research labs. It is being waged on job sites across the globe with bulldozers, crane booms, high-voltage cabling, and liquid cooling lines. Google, Meta, Microsoft, and Amazon have recognized that their digital dominance depends entirely on physical industrial infrastructure.

For craft workers, tradespeople, and civil engineers, this shift represents a generational career opportunity. As technology enterprises invest hundreds of billions into heavy building projects, the hands-on skills required to construct and power high-density computing campuses have become some of the most valuable assets in the modern global economy.

Key Points Summary

  • Generative AI workloads require dense computing racks that draw massive amounts of power and require liquid cooling systems.
  • Tech majors are managing construction, site acquisition, and equipment procurement directly to avoid market delays.
  • Skilled trades—especially certified high-voltage electricians and pipefitters—are seeing historic job demand and rising compensation.
  • Energy grid access and electrical substation lead times represent the primary speed limits on future AI technology deployment.
  • The alignment between high-tech capital and industrial construction is creating sustained economic growth across non-traditional tech hubs.

Stay informed on the latest shifts in technology, industrial infrastructure, and global business trends by visiting ArdaTimes.in for independent analysis and wire-service reporting.

Sainsbury's Reshapes Retail Operations with Strategic Sale of Argos General Merchandise Business

British supermarket giant J Sainsbury plc has agreed to sell its non-core Argos general merchandise assets in a transaction valued at approx...