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Falling Costs and Up to 80% Potential Electricity Savings Make Solar a Proven Bet for Waste Depots, Excel Waste Management Analysis Finds

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Rooftop solar could cut electricity costs by up to 80% for warehouse-type buildings, according to research commissioned by the UK Warehousing Association (UKWA).

RAINHAM, England, July 21, 2026 /PRNewswire/ — Excel Waste Management, an Essex-based waste management and skip hire company, today released an analysis of how falling solar installation costs and improving project economics are reshaping energy investment decisions across the UK’s waste management sector. Drawing on public data from the Department for Energy Security and Net Zero (DESNZ), industry research from the UK Warehousing Association (UKWA) and LCP Delta, and sustainability disclosures from major waste operators, the analysis finds that commercial rooftop solar has shifted from a long-term environmental initiative to an increasingly cost-effective infrastructure investment.

The economics behind commercial solar have improved substantially over the past decade. Government data show that rooftop installation costs have fallen by roughly 28%, while the cost of generating solar electricity at scale has almost halved since 2016. At the same time, industrial facilities such as recycling centers, transfer stations, and waste depots possess many of the characteristics that make rooftop solar particularly effective: large roof areas, significant daytime electricity demand, and long-term ownership of operational sites.

For Waste Management / SMB businesses, energy consumption is a core operating cost rather than a peripheral overhead. Processing equipment, balers, conveyors, compactors, weighbridges, and vehicle maintenance facilities all require reliable electricity throughout the working day. As installation costs decline and electricity generation becomes cheaper, the financial case for producing energy on-site has strengthened. The analysis concludes that solar is increasingly being evaluated as an operational investment supported by measurable cost savings rather than solely as a sustainability initiative.

Commercial rooftop solar installation costs have fallen by around 28% in a decade

The most significant change in commercial solar economics has been the decline in installation costs. According to the Department for Energy Security and Net Zero’s Solar Roadmap (June 2025), the cost of a typical 3.5kW rooftop solar installation fell from approximately £9,000 in 2013/14 (2024 prices) to around £6,500 in 2024/25, a reduction of roughly 28%.

Lower capital costs improve project economics by shortening payback periods and strengthening returns on investment. Waste management facilities are particularly well suited to benefit because their large industrial buildings and substantial daytime electricity demand allow much of the electricity generated by rooftop solar to be consumed on-site, making renewable energy an increasingly cost-effective operational investment.

The cost of generating solar electricity has roughly halved since 2016

Falling installation costs tell only part of the story. According to DESNZ, the Levelised Cost of Electricity (LCOE) June 2025 for ground-mounted solar fell from approximately £92/MWh in 2016 to £47/MWh in 2025 (2020 prices), meaning the cost of generating solar electricity has almost halved in less than a decade.

Combined with lower installation costs, cheaper electricity generation has significantly improved the economics of commercial solar. For industrial businesses, including waste management companies, producing more electricity on-site reduces dependence on grid power and strengthens the long-term financial case for investment.

Rooftop solar could reduce electricity costs by up to 80% for warehouse-type buildings

The strongest commercial case for rooftop solar comes from how industrial buildings use electricity. Research commissioned by the UK Warehousing Association (UKWA) and conducted by LCP Delta in August 2022  found that rooftop solar could reduce annual electricity costs by 40% to 80% for warehouse and industrial buildings. The study also estimated potential savings of £3 billion a year across the UK warehousing sector.

While the research focused on warehouses, its findings are highly relevant to waste management facilities. Recycling centers, transfer stations, and skip depots typically occupy large industrial buildings with extensive roof space and significant daytime electricity demand. Equipment such as conveyors, balers, and sorting machinery operates mainly during daylight hours, allowing much of the electricity generated by rooftop solar to be used immediately on-site.

This close alignment between electricity generation and consumption improves project economics by reducing reliance on grid electricity. The analysis concludes that waste depots share the same characteristics identified by UKWA as making warehouse buildings particularly well suited to commercial rooftop solar investment.

The UK’s largest industrial roofs could support around 15GW of solar capacity

Commercial rooftop solar also represents a significant national energy opportunity. According to the UKWA/LCP Delta research in August 2022, the 20% largest warehouse buildings in the UK provide approximately 75 million square meters of roof space, enough to support an estimated 15GW of rooftop solar capacity.

The findings highlight the value of existing industrial buildings as renewable energy assets. Unlike ground-mounted solar farms, rooftop systems use infrastructure already in place, allowing businesses to generate electricity without requiring additional land or disrupting operations.

This is particularly relevant for waste management companies, whose recycling centers and transfer stations often occupy large warehouse-style buildings with extensive roof space. The analysis concludes that industrial rooftops remain one of the UK’s most underutilized renewable energy resources, offering substantial potential to expand on-site electricity generation while reducing dependence on grid power.

Major Waste Operators are Investing Heavily in Solar Generation

The improving economics of commercial solar are reflected in investment decisions across the UK waste management sector. Biffa’s Resourceful, Responsible sustainability strategy, released in March 2020, targets the development of at least 100MW of renewable energy capacity by 2030 through solar farms on closed and restored landfill sites.

While landfill solar differs from rooftop installations at operational depots, both approaches use existing assets to generate renewable electricity and reduce reliance on grid power. Biffa’s investment demonstrates that solar is increasingly being treated as long-term operational infrastructure rather than solely an environmental initiative.

The analysis concludes that commitments of this scale reflect growing confidence across the waste sector that renewable energy has become a commercially viable investment supported by measurable operational and financial benefits.

Existing Landfill Solar Projects Already Generate More Than 70MW

Investment in renewable energy is already delivering results. Veolia UK official press release “Life left in the landfill,” 29 August 2017, reports their development of solar installations at its restored landfill sites in Netley, Ling Hall, and Ockendon, which together can generate more than 70MW of renewable electricity, enough to power approximately 185,000 homes.

While these projects differ from rooftop solar at operational depots, both demonstrate how existing waste management assets can be used to generate renewable energy. The analysis finds that investment across landfill sites and recycling facilities reflects the sector’s growing commitment to integrating renewable electricity into long-term operations.

Solar-Plus-Battery Systems are Changing Waste Depot Electricity Use

Commercial solar is increasingly being combined with battery storage to maximize on-site electricity use. In January 2026, Cambridge City Council announced a renewable energy system comprising a 1MW solar array, 2MWh battery storage system, and charging infrastructure at a shared waste depot. The project is expected to supply approximately 59% of the depot’s energy needs while supporting a growing fleet of electric refuse collection vehicles.

Battery storage allows surplus daytime electricity to be used later, increasing self-consumption and reducing reliance on grid electricity. For facilities with predictable energy demand, this improves both operational resilience and the financial performance of rooftop solar systems.

The project reflects a broader shift as waste operators prepare for fleet electrification. The analysis concludes that integrated solar-and-storage systems are likely to become an increasingly common feature of modern waste depots, improving energy independence while reducing long-term operating costs.

What the Findings Mean for Excel Waste Management

The findings provide context for Excel Waste Management’s recent installation of rooftop solar panels at its recycling and transfer center in Rainham, Essex. The investment reflects wider developments across the UK waste sector, where falling installation costs and improving project economics have strengthened the business case for on-site renewable energy.

Excel Waste Management serves Greater London, East London and Essex from its recycling facility, where waste is weighed, processed and sorted into reusable material streams including soil, hardcore, wood, metal, glass and plastic. According to the company, approximately 98% of the waste it receives is recycled or reused.

The analysis concludes that waste depots are among the industrial facilities best positioned to benefit from rooftop solar because of their large roof areas and substantial daytime electricity demand, making renewable energy an increasingly practical operational investment.

Methodology

Excel Waste Management synthesized publicly available information from the UK Department for Energy Security and Net Zero (DESNZ), including Solar Roadmap: United Kingdom Powered by Solar (June 2025); industry research published by the UK Warehousing Association (UKWA) and LCP Delta (August 2022); and official sustainability reports and announcements from Biffa plc, Veolia UK, and Cambridge City Council. No proprietary survey or customer research was conducted. All statistics are drawn from named third-party sources and reflect information available as of July 2026. Company information relating to Excel Waste Management is based on publicly available information supplied by the company.

Frequently Asked Questions

Has installing solar actually become cheaper for businesses such as waste depots?

Commercial rooftop solar has become significantly more affordable over the past decade. According to the Department for Energy Security and Net Zero, installation costs for a typical rooftop system have fallen by approximately 28%. In contrast, the cost of generating solar electricity has almost halved since 2016. Together, these changes have improved project economics and shortened expected payback periods for many industrial businesses.

How much could a waste depot save on electricity?

Waste depots could reduce annual electricity costs by 40% to 80%, according to research commissioned by the UK Warehousing Association and undertaken by LCP Delta. Actual savings depend on factors including electricity demand, roof area, system size, and the proportion of generated electricity consumed on-site.

What about the cost of the electricity itself, not just the solar panels?

Solar electricity has become substantially less expensive to generate. Government analysis shows the Levelised Cost of Electricity (LCOE) for ground-mounted solar declined from approximately £92/MWh in 2016 to around £47/MWh in 2025, strengthening the long-term financial case for commercial renewable energy projects.

About Excel Waste Management

Excel Waste Management is a Rainham, Essex-based skip hire and waste management company founded in 2013. The company serves Greater London, East London, and Essex from its recycling and transfer center, where inbound waste is weighed, processed, and sorted into reusable and recyclable material streams. Excel Waste Management states that approximately 98% of the waste it receives is recycled or reused, and has recently installed rooftop solar panels as part of its ongoing investment in more sustainable waste management operations. More information is available at https://excelwastemanagement.co.uk.

Media Contact

Contact: Louisa Groves
Email: Info@excelwastemanagement.co.uk
Location: Essex, UK

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HelloNation Article Highlights Sterile Compounding and Medication Safety With Insights From Compounding Pharmacist Expert Laura Temple

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The article explains how sterile compounded medications are prepared to reduce the risk of contamination and support safe, customized treatments.

AZLE, Texas, July 21, 2026 /PRNewswire/ — What does sterile compounding mean for medication safety? HelloNation has published an article explaining how sterile compounding helps pharmacies prepare highly specialized medications while adhering to strict contamination-prevention procedures.

The article features insights from Laura Temple, Compounding Pharmacist Expert and Owner of Laura’s Pharmacy in Azle, Texas. It explains that sterile compounding is a specialized process for preparing medications in carefully controlled environments designed to reduce the risk of contamination. Sterile compounded medications are often used for injections, eye drops, IV medications, and other therapies that require the highest levels of cleanliness and precision.

The HelloNation article explains that sterile compounded medications differ from commercially manufactured drugs because they are prepared individually for a patient’s unique medical needs. Physicians may prescribe compounded prescriptions when a patient requires a customized dosage, a combination medication, or a treatment not commercially available. Because these medications often bypass the body’s natural defenses, medication safety depends on strict preparation standards throughout the compounding process.

The article describes how pharmacies that provide sterile compounding rely on cleanroom environments equipped with filtered-air systems, specialized equipment, and contamination-prevention protocols. Pharmacists and technicians follow detailed gowning, sterilization, and handwashing procedures before handling medication ingredients. These measures are designed to support medication safety by limiting exposure to bacteria, particles, and other contaminants.

According to the article, environmental monitoring also plays a critical role in sterile compounding. Temperature control, air quality testing, and routine equipment inspections help maintain consistent preparation standards. The article notes that sterile compounded medications may undergo additional quality assurance checks before being dispensed to patients. These procedures help support both treatment effectiveness and patient safety.

The HelloNation article also explains that pharmacies performing sterile compounding are expected to follow USP guidelines established for sterile preparation. These USP guidelines outline requirements for cleanroom pharmacy operations, environmental testing, employee training, and quality assurance practices. The article emphasizes that maintaining compliance with USP guidelines helps reinforce contamination prevention and consistent preparation standards for compounded prescriptions.

Patients seeking sterile compounded medications may also look for pharmacies that participate in accreditation programs or are overseen by state boards. The article explains that these programs review safety procedures, documentation practices, and facility standards to help maintain medication safety. Regular environmental monitoring and staff competency evaluations are also identified as important safeguards in sterile compounding operations.

The article further explains that communication between pharmacists, healthcare providers, and patients remains an important part of safe compounded prescriptions. Compounding pharmacists review prescriptions carefully, confirm dosing instructions, and evaluate ingredient compatibility before preparation begins. This collaborative approach supports medication safety by reducing the risk of errors and ensuring treatments meet individual patient needs.

The article concludes that sterile compounding continues to play an important role in healthcare, particularly for patients requiring customized therapies that are unavailable through traditional manufacturing channels. Whether preparing IV medications, injectable therapies, or other sterile compounded medications, pharmacies rely on contamination prevention procedures and strict preparation standards to support patient care. The article notes that understanding how sterile compounding works can help patients feel more informed about the safety measures involved in preparing specialized medications.

What Sterile Compounding Means for Medication Safety features insights from Laura Temple, a compounding pharmacist expert at Laura’s Pharmacy in Azle, Texas, on HelloNation.

About HelloNation

HelloNation is America’s Good News Network, a premier media platform built on the idea that good news travels faster when real people tell real stories. Through its community-focused publications and innovative “edvertising” approach, HelloNation delivers content that informs, inspires, and spotlights the leaders making a meaningful impact in their communities.

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CIOs Forced to Rethink Manual Compliance Processes as Regulatory Complexity Rises, Says Info-Tech Research Group

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Regulatory demands are increasing in volume, complexity, and speed, leaving many organizations reliant on fragmented, manual approaches that slow response times and increase risk. New insights from Info-Tech Research Group show that organizations need to adopt more structured and scalable approaches to keep pace with regulatory change. The firm’s recently published blueprint, Build a Regulatory IT Response Engine, provides frameworks, tools, and step-by-step guidance to help organizations translate regulatory requirements into actionable IT controls and prioritized initiatives.

ARLINGTON, Va., July 21, 2026 /PRNewswire/ — Growing regulatory pressure across jurisdictions is forcing organizations to rethink how they interpret, prioritize, and execute compliance requirements. Many IT teams continue to operate with inconsistent processes and limited coordination, resulting in delayed initiatives and increased exposure to financial and reputational risk. Info-Tech’s blueprint, Build a Regulatory IT Response Engine, introduces a coordinated and repeatable approach to help IT leaders operationalize compliance and improve execution outcomes.

Info-Tech’s findings indicate that while organizations recognize the need for faster and more consistent regulatory response, they continue to face barriers such as fragmented interpretation of requirements, weak prioritization, and limited scalability. AI-enabled tools can help streamline analysis and accelerate response planning, but without a coordinated approach grounded in governance and human oversight, those benefits are difficult to realize.

“Regulatory response is becoming too complex to manage through disconnected, manual processes,” says Ahmad Jowhar, senior research analyst at Info-Tech Research Group. “IT leaders need a repeatable way to interpret requirements, prioritize action, and use AI to accelerate planning without losing the governance and oversight needed to execute effectively.”

Key Challenges IT Leaders Face in Regulatory Response

Despite ongoing investments in compliance, organizations continue to face systemic challenges that hinder effective execution. Info-Tech’s blueprint highlights several areas where IT and compliance leaders struggle most:

Fragmented and manual processes that slow regulatory interpretation and response.Inconsistent application of regulatory requirements across teams and jurisdictions.Poor prioritization of IT initiatives, leading to missed deadlines and duplicated effort.Limited scalability to manage increasing regulatory volume and complexity.Misalignment between compliance activities and broader business priorities.

Info-Tech’s Framework for Building a Regulatory IT Response Engine

To address these challenges, Info-Tech recommends a structured, AI-enabled approach that improves consistency, speed, and scalability. The firm’s Build a Regulatory IT Response Engine blueprint outlines the following key priorities for IT leaders:

Define the regulatory landscape: Establish organizational context, governance structures, and a centralized inventory of applicable regulations.Translate requirements into IT controls: Use AI-enabled analysis and structured assessments to convert regulatory obligations into actionable controls.Prioritize IT initiatives: Align initiatives based on cost, effort, impact, and regulatory timelines to reduce execution risk.Build and communicate a roadmap: Develop a clear, resource-aligned roadmap to guide execution and stakeholder alignment.Establish a repeatable process: Continuously monitor, adapt, and refine regulatory response capabilities to maintain compliance over time.

Organizations that adopt this structured approach can move from reactive compliance efforts to a more proactive and scalable model that shortens response timelines, reduces manual effort, and strengthens execution.

The firm’s Build a Regulatory IT Response Engine blueprint includes practical tools such as a Regulation Inventory Tool, a Regulatory Response IT Action Plan Tool, a Communication Deck Template, and a Compliance Program Framework. By applying these resources, IT leaders can standardize regulatory responses, improve prioritization, and help ensure compliance initiatives are executed on time and in alignment with business priorities.

For exclusive and timely commentary from Info-Tech’s experts, including Ahmad Jowhar, and access to the complete Build a Regulatory IT Response Engine blueprint, please contact pr@infotech.com.

About Info-Tech Research Group

Info-Tech Research Group is the “get things done” partner for over 30,000 IT, HR, and marketing leaders worldwide. The fastest growing research and advisory firm, Info-Tech enables leaders to make well-informed decisions and transform their organizations through AI, strategic foresight, step-by-step methodologies, practical tools, industry-leading advisory, and training programs. For nearly 30 years, tens of thousands of private and public organizations have trusted Info-Tech to lead their most important initiatives through periods of change and deliver outcomes that truly matter.

To learn more about Info-Tech’s HR research and advisory services, visit McLean & Company, and for data-driven software buying insights and vendor evaluations, visit the firm’s SoftwareReviews platform.

Media professionals can register for unrestricted access to research across IT, HR, and software and hundreds of industry analysts through the firm’s Media Insiders program. To gain access, contact pr@infotech.com.

For information about Info-Tech Research Group or to access the latest research, visit infotech.com and connect via LinkedIn and X.

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SOURCE Info-Tech Research Group

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Atomera to Announce Second Quarter 2026 Financial Results and Host Webinar on Tuesday, August 4, 2026

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LOS GATOS, Calif., July 21, 2026 /PRNewswire/ — Atomera Incorporated (NASDAQ: ATOM), a semiconductor materials and technology licensing company, announced today that it plans to release its second quarter 2026 financial results after the market closes on Tuesday, Aug. 4, 2026.

The company will host a live video Zoom webinar at 2:00 p.m. Pacific Time (5:00 p.m. Eastern Time) on Tuesday, Aug. 4, 2026, to discuss the results. The live webinar can be accessed through Atomera’s investor relations website at https://ir.atomera.com. A replay of the webcast will be available for 12 months. To pre-register for the webinar, use the following link.

https://atomera.zoom.us/webinar/register/WN_OJFbTWe1SIyV69LLdDadCw

About Atomera

Atomera Incorporated is a semiconductor materials and technology licensing company focused on deploying its proprietary, silicon-proven technology into the semiconductor industry. Atomera has developed Mears Silicon Technology™ (MST®), which increases performance and power efficiency in semiconductor transistors. MST can be implemented using equipment already deployed in semiconductor manufacturing facilities and is complementary to other nano-scaling technologies already in the semiconductor industry roadmap.  More information can be found at www.atomera.com 

 

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SOURCE Atomera Incorporated

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