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ESP Series Electrostatic Precipitators for the Cement Industry

In heavy cement manufacturing, environmental compliance should not be a sunk cost. Engineered for production scales from 300 to 10,000 t/d, the ESP series slashes aerodynamic resistance and eliminates consumable filter replacement, driving down your Total Cost of Ownership (TCO) while guaranteeing absolute regulatory compliance.

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Advanced Particulate Control | BLESP Series Electrostatic Precipitators for the Cement Industry

Eliminate non-compliance risks and crushing maintenance costs. Engineered by Ever-power specifically for 300-10,000 t/d cement plants, our BLESP Series masters extreme dust loads (up to 1200 g/Nm³), high temperatures (up to 400°C), and delivers ultra-low emissions (< 50mg/Nm³) with unmatched operational stability.

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EPS for Cement industry

⚙️ Executive Engineering Brief

Kiln Tail ESP (BLESP780/930)

  • 📉 Max Gas Volume: 1,800,000 m³/h
  • 🌡️ Temperature: 130 – 150°C
  • 🌫️ Max Inlet Dust: 1,200 g/Nm³
  • 🌪️ Max Suction: -12,000 Pa

Kiln Head Cooler ESP

  • 📉 Max Gas Volume: 1,800,000 m³/h
  • 🔥 Temperature: Up to 400°C
  • 🌫️ Max Inlet Dust: 50 g/Nm³
  • 🌪️ Max Suction: -2,500 Pa

Coal Mill ESP

  • 📉 Max Gas Volume: 20,000+ m³/h
  • 🌡️ Temperature: 60 – 120°C
  • 🌫️ Max Inlet Dust: 1,000 g/Nm³
  • 🌪️ Max Suction: -2,000 Pa

📊 Deep Technical Specifications

Structural ParameterSpecification RangeEngineering Impact
Number of Chambers1 – 2 (pcs)Allows continuous operation during modular maintenance.
Passages Per Chamber9 – 40 (pcs)Scalable to match exact gas volume requirements.
Height of Field5 – 15 (m)Optimizes footprint-to-collection-area ratio.
Number of Fields1 – 6 (pcs)Multi-stage ionization ensures ultra-low emission targets (< 50mg/Nm³).
Passage Space300, 400, 450 (mm)Wide spacing prevents dust bridging and electrical shorting in high-density zones.
Cross Sectional Area10 – 494 (m²)Maintains optimal gas velocity (approx 0.8-1.2 m/s) for maximum particle settlement.

🔬 Process Mechanics & Internal Architecture

Working Principle

The Ever-power BLESP Series utilizes electrostatic force (Coulomb force) to separate particulate matter from high-volume gas streams. The process is a masterpiece of applied physics:

  1. Gas Distribution: Flue gas passes through highly engineered distribution screens (X-type, square hole, or round hole) to ensure uniform laminar flow.
  2. Ionization: High direct current is applied to the Discharge Electrodes (Cathodes). The intense electric field ionizes the gas, creating a corona discharge full of electrons and negative ions.
  3. Particle Charging & Migration: Dust particles collide with these ions, acquire a negative charge, and are driven forcefully toward the grounded Collecting Electrodes (Anodes).
  4. Rapping & Removal: Precisely timed continuous and revolving-arm hammers strike the electrodes, shearing the dust layer off into the hoppers below for disposal.

Core Internal Structure

The efficiency of an ESP is dictated by its internal geometry. Ever-power has revolutionized these critical components:

  • ZT24 Collecting Electrodes (CE): Our proprietary ZT24 plates offer exceptional discharging performance and uniform current density. Crucially, they provide a 10% larger effective dust collecting area compared to standard profiles within the same spatial dimension.
  • Advanced Discharge Electrodes (DE): Tailored to the gas condition, we utilize B-type, V-type, and highly efficient Fishbone wires. These guarantee solidity, high-endurance, non-breakability, and aggressive corona generation.
  • Robust Rapping Systems: Utilizing Top Cam Lifting Mechanisms for the cathodes and Side Driving Revolving-Arm Hammers for the anodes to eliminate sticky dust buildup.

🚀 Strategic Design Advantages

Extreme Tolerance

Engineered to handle inlet dust concentrations up to an incredible 1,200 g/Nm³ without choking, and gas temperatures peaking at 400°C—environments that would instantly destroy traditional fabric filters.

Ultra-Low Resistance

The aerodynamic design ensures an operating resistance of merely 200-350 Pa. This drastically reduces the workload on your Induced Draft (ID) fans, slashing continuous energy consumption.

Heavy-Duty Housing

Cement plant suction pressures are brutal. Our casings are structurally reinforced to withstand pressures ranging from 2,000 Pa up to an astonishing -20,000 Pa for specialized applications, ensuring zero implosion risks.

⚠️ Why Upgrade Now? The True Cost of Inaction

Regulatory Strangulation

Environmental policies globally are enforcing strict < 50mg/Nm³ (and increasingly < 30mg/Nm³ or < 10mg/Nm³) emission limits. Failing to meet these standards results in immediate operational suspensions, staggering daily fines, and severe reputational damage. Your dedusting system is no longer an accessory; it is your license to operate.

The “Hidden” Profit Bleed

Aging dust collectors force ID fans to fight through massive pressure drops, burning excess megawatts of electricity daily. Furthermore, poor dust capture leads to the rapid abrasion of downstream equipment. Relying on inefficient filtration is a direct drain on your plant’s profitability.

🏭 Typical Application Scenarios in Cement

The BLESP780, BLESP780N, BLESP930, and BLESP2000 series are modularly designed to adapt perfectly to production scales ranging from 300 t/d to 10,000 t/d.

Cement Kiln Tail

Captures the massive, high-density particulate flow directly from the rotary kiln. Handles up to 1,800,000 m³/h at -12,000 Pa suction, effortlessly dropping 1,200 g/Nm³ inlet loads to compliant levels.

EPS for Cement industry

Clinker Cooler (Kiln Head)

Built to withstand intense thermal punishment. The cooler exhaust frequently hits 400°C. Where baghouses melt, our rigid steel internals capture abrasive clinker dust relentlessly.

EPS for Cement industry

Coal Mill Dedusting

Coal grinding introduces explosive risks. Our ESPs are structurally adapted with explosion relief valves and precise grounding to safely capture coal dust at 60-120°C without detonation risks.

EPS for Cement industry

⚖️ Ever-power ESP vs. Traditional Baghouse Systems

MetricEver-power BLESP SeriesTraditional Baghouse
Operating Resistance200 – 350 Pa (Extremely Low)800 – 1800 Pa (High fan load)
Max Temp LimitUp to 400°CUsually capped at 250°C (Requires costly bags)
Consumables CostZero. Steel internals last decades.High. Thousands of bags replaced every 2-3 years.
Gas Moisture ToleranceHigh. Resists condensation fouling.Low. Moisture blinds bags (“mudding” effect).

🏆 Why Partner with Ever-power?

For over two decades, Ever-power has been the backbone of heavy industrial air purification. The BL Series is not an off-the-shelf product; it is a technically honed benchmark forged through hundreds of complex projects.

  • ✔️ Full Value-Chain Capability: We provide end-to-end integration: R&D Design ➔ Lean Manufacturing ➔ Engineering Installation ➔ Intelligent Commissioning.
  • ✔️ Trusted by Industry Giants: Our systems successfully protect core operations for conglomerates like Shanshui Group, Huarun Power, and Conch Group.
  • ✔️ Complete Qualifications: Fully ISO certified, holding multiple structural patents, and globally recognized environmental manufacturing credentials.

📐 Engineering Sizing Guide: Architecting Your Solution

To ensure the ESP is perfectly matched to your kiln or mill, our engineering team requires specific operational data. Prepare the following to expedite your quote:

1. Process Gas Parameters

Please provide the Maximum Gas Volume (m³/h), the continuous Operating Temperature (°C), and absolute peak temperature. This dictates casing design and thermal expansion allowances.

2. Dust Characteristics

Specify the Inlet Dust Concentration (g/Nm³) and the material type (e.g., raw meal, clinker, coal). Knowing the dust’s specific resistivity helps us choose between ZT24 plates and specific discharge wire configurations to prevent back-corona.

3. Site & Emission Targets

What is your local regulatory target? (< 50mg/Nm³, < 30mg/Nm³, etc.). Also, provide maximum allowable footprint dimensions, as ESPs require specific lateral space for multi-field sequencing.

💰 Value Quantified: Return on Investment (ROI) Analysis

The Cost of Inaction (Current State)

  • Energy Penalty: Traditional filters operating at 1500 Pa resistance cost you thousands of dollars monthly in wasted ID fan electricity.
  • Consumables Bleed: Replacing 5,000 high-temp filter bags every 2 years demands massive CapEx and labor costs.
  • Downtime Loss: Shutting down a 5,000 t/d kiln for baghouse maintenance translates to immense lost revenue.

The Ever-power Upgrade ROI

  • Fan Power Slashed: Operating at ~300 Pa saves enough electrical power to often pay back the ESP investment within 3-4 years.
  • Zero Consumables: Our rigid steel electrodes and plates are designed for a 20+ year lifespan. No bags to buy.
  • Continuous Output: Modular multi-chamber design means maintenance can be done on one section while the kiln keeps producing.

EPS for Cement industry

🌍 Global Case Studies: Proving Our Authority

🇨🇳 Tongchuan Shengwei Cement (China)

Application: 5000 TPD Cement Kiln

Challenge: Extremely high inlet concentration and severe negative pressure requirements.

Solution: Installed a customized Hi-Density & Hi-Suction Pressure ESP. Maintained continuous output emissions well below the 30mg/Nm³ mandate without a single structural fault.

🇻🇳 Ha Tien 1 Cement (Vietnam)

Application: Clinker Cooler (Kiln Head)

Challenge: Spikes in exhaust temperature up to 420°C frequently melted their existing baghouse setup.

Solution: Ever-power deployed a high-temperature tolerant 3-field ESP. The plant achieved zero downtime related to dedusting over a 5-year evaluation period.

🇮🇳 Ultratech Cement Grinding Unit (India)

Application: Coal Mill Exhaust

Challenge: Need for a highly safe, explosion-proof dedusting system for volatile coal dust.

Solution: Cylindrical design ESP with integrated relief valves and spark suppression logic. “The Ever-power system completely mitigated our explosion risks while hitting our emission targets,” stated their Chief Engineer.

🇧🇷 Votorantim Cimentos (Brazil)

Application: 3200 TPD Kiln Tail Upgrade

Challenge: High electrical resistance of local raw materials causing back-corona in older precipitators.

Solution: Integrated advanced High-Frequency power supplies with our ZT24 collecting plates, boosting collection efficiency to 99.95% despite the difficult dust physics.

EPS for Cement industry

❓ Operational & Technical FAQ

What is the typical lifespan of the internal electrodes?

Because we use rigid Fishbone wires and heavy-duty ZT24 plates, the internal components are designed for a lifespan exceeding 15 to 20 years, provided routine maintenance on the rapping mechanisms is performed.

Can we upgrade our current ESP internals to Ever-power specs?

Yes. We offer retrofit services. We can replace outdated C-type plates with our ZT24 profile plates and upgrade your power supply systems to increase the effective collecting area by 10% without altering the existing casing.

How do you handle highly resistive dust?

High resistivity leads to back-corona. We counter this using high-frequency, micro-pulse power supplies that give the dust time to discharge. We also optimize gas conditioning (temperature/moisture) upstream.

What is the installation timeframe?

A standard cement kiln ESP takes approximately 45 to 60 days to erect and commission, depending on site readiness. We pre-assemble critical modules in our factory to drastically cut on-site welding time.

Does this equipment handle wet exhaust / acid mist?

The BLESP series is for dry dust. For wet scrubbing exhausts (like after FGD systems), you require our Wet Electrostatic Precipitator (WESP) series, which utilizes conductive fiberglass or stainless steel anode tubes.

Secure Your Plant’s Future Today

Stop risking production halts and stop bleeding money on fan energy. Let Ever-power’s senior engineering team design a BLESP system that guarantees sub-50mg/Nm³ emissions while aggressively cutting your operational expenditures.

Get Your Custom Engineering Quote

 

 

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