Bolted Steel Tanks as Food Waste Biogas Fermentation Tanks: Resists the varied organic acids and oils found in food-based waste.

Детали продукта
Место происхождения: Китай
Фирменное наименование: CEC TANKS
Сертификация: ISO 9001:2008, AWWA D103 , OSHA , BSCI
Номер модели: Вт
Условия оплаты & доставки
Количество мин заказа: 1 КОМПЛЕКТ
Цена: $5000~$20000 one set
Упаковывая детали: Пенополиэтилен между двумя стальными пластинами; деревянный поддон и деревянные
Время доставки: 10-30 дней после получения депозита
Условия оплаты: Л/К, Т/Т
Поставка способности: 60 комплектов в месяц

Подробная информация

Описание продукта

Bolted Steel Tanks as Food Waste Biogas Fermentation Tanks: Resists the varied organic acids and oils found in food-based waste.

In the rapidly expanding sector of urban sustainability, food waste represents a high-energy feedstock that presents unique technical challenges. Food waste biogas fermentation tanks are specialized anaerobic reactors designed to process a complex mixture of post-consumer food scraps, commercial kitchen waste, and expired retail products. Unlike agricultural waste, food waste is characterized by high concentrations of lipids (fats, oils, and grease), varying salt levels, and a rapid acidification process that generates aggressive volatile fatty acids (VFAs). These conditions create a highly corrosive internal environment that can quickly degrade standard concrete or unprotected steel. To ensure a stable and productive methane yield, the fermentation tank must be an inert, high-strength vessel capable of managing these "hot" feedstocks while providing a perfectly anaerobic, corrosion-free reaction zone.

To provide a resilient and economical solution for urban waste-to-energy, Epoxy Coated Tanks (Epoxy Coated Steel Tanks) are the premier global choice. These bolted steel units offer a factory-certified barrier specifically engineered to withstand the chemical complexity and rapid processing speeds of food waste fermentation.

 

Product Application: High-Yield Urban Energy Recovery

Our Epoxy Coated Tanks for food waste fermentation are engineered to support the most intensive bio-energy applications:

 

Commercial and Industrial (C&I) Food Waste Digesters: Processing large-scale organic streams from food processing plants and distribution centers.

 

 

Municipal Source-Separated Organics (SSO) Systems: Converting household food scraps into renewable natural gas (RNG) for local grids.

 

 

FOG (Fats, Oils, and Grease) Co-Digestion Units: Managing high-lipid concentrations to significantly boost biogas production in existing facilities.

 

 

Restaurant and Hotel Waste Reactors: Providing decentralized, modular energy recovery for large commercial complexes.

 

Product Advantages: Chemical Resilience and Process Stability

The primary advantage of selecting Epoxy Coated Tanks for food waste fermentation lies in their superior resistance to aggressive organic loads:

 

Advanced Shielding Against Organic Acids: Food waste acidifies rapidly. The factory-applied epoxy coating provides a permanent, non-porous barrier against the low $pH$ levels and VFAs generated during the hydrolysis phase, ensuring the tank remains corrosion-free.

 

 

Lipid and Salt Resistance: The epoxy surface is chemically inert to the oils and salts prevalent in food waste, preventing material degradation and ensuring the structural steel is protected from long-term chemical attack.

 

 

Modular Engineering for Urban Sites: Food waste plants are often located in space-constrained industrial zones. The bolt-together design allows for compact shipping and rapid assembly, making it an economical choice for urban infrastructure.

 

 

Hermetic Anaerobic Seal: Utilizing high-precision bolted joints and specialized industrial sealants, our tanks provide the oxygen-free environment essential for the survival of methanogenic bacteria, maximizing methane purity and yield.

 

 

Customization: Engineering for Process Loads and Protection

Food waste fermentation requires specialized configurations to manage corrosive vapors and high-torque mixing:

Aluminum Dome Roofs

To ensure a total weather-tight seal and a durable cover for the acidic gas collection zone, we integrate Aluminum Dome Roofs as a strategic standard.

 

Resistance to Aggressive Gas Headspaces: Aluminum is naturally immune to the corrosive effects of the humid, $H_2S$-rich gas zone found in food waste reactors, outperforming traditional steel or concrete covers.

 

 

Support for Intensive Agitation: Food waste requires high-power mixing to manage the dense organic load. The geodesic design of the aluminum dome provides immense structural strength without internal pillars, allowing for the installation of top-mounted mixers.

 

 

Thermal Regulation: High reflectivity minimizes solar heat gain, helping to maintain the stable temperatures required for the sensitive microbial populations to efficiently process the food-based feedstock.

 

Integrated Scum and Grit Management

Our tanks are customized with reinforced manways for sediment access, high-diameter nozzles for thick slurry handling, and internal supports for scum-breaking equipment to manage the high fat content of food waste.

 

Performance Parameters and Industry Standards

Our Epoxy Coated Tanks for food waste service meet the highest global technical benchmarks:

 

Global Quality Compliance: Meeting AWWA D103 and ISO standards for bolted steel containment and gas-tight performance.

 

 

Quality Assurance: Every panel undergoes high-voltage factory testing to ensure coating thickness and zero porosity, providing a perfect barrier for the refined gas.

 

 

Structural Engineering: Precision-calculated for dynamic liquid loads, internal gas pressures, seismic requirements, and extreme wind loads to ensure operational safety.

 

 

Product Installation and Maintenance

Rapid Modular Installation

The prefabricated nature of Epoxy Coated Tanks allows for rapid on-site assembly, which is critical for meeting project deadlines in fast-paced urban developments. Using a "top-down" jacking system, the fermentation tank is constructed at ground level and lifted ring-by-ring, which significantly reduces the need for heavy cranes and improves site safety.

Minimal Maintenance and Operational Continuity

The durable epoxy finish is designed for long-term service with minimal intervention. This results in an economical lifecycle where the focus remains on waste processing rather than structural repairs, ensuring that the facility's energy production remains uninterrupted.

 

Project Cases: Proven Performance in Global Infrastructure

The reliability of our technology in managing heavy biological loads is demonstrated in these non-fictitious projects:

 

Sichuan Chengdu Wastewater Treatment Plant Project: This project utilized 16 units of tanks to manage massive material volumes, proving the structural stability and modular efficiency required for large-scale fermentation systems.

 

 

Saudi Municipal Sewage and Industrial Waste Project: In a region of extreme heat and environmental stress, 5 units of these tanks were installed to provide a durable, corrosion-free solution for waste-to-energy conversion.

 

 

Hebei Municipal Water and Sewage Infrastructure Project: This project utilized 1 unit of a high-integrity bolted tank to support critical regional utility service, showcasing the reliability of the bolted system.

 

 

Company Advantages: Our Core Competency

Our company’s core competitiveness lies in our ability to deliver "Process-Ready Urban Energy Solutions." We combine the structural resilience of Epoxy Coated Tanks with the advanced shielding of Aluminum Dome Roofs. By providing a comprehensive package—from organic-load modeling and risk assessment to final installation—we ensure that your food waste biogas fermentation tank is equipped with a system built to maximize renewable energy recovery and ensure decades of reliable, safe operation.

 

 

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Shijiazhuang Zhengzhong Technology Co., Ltd
sales@cectank.com
86-20-34061629
Коммерческий центр Фули, комната 301#, Западная улица Синганг, 11#, район Хайчжу, Гуанчжоу, провинция Гуандун, Китай.
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