With the rapid development of the photovoltaic industry, a large number of photovoltaic modules will reach the end of their service life within the next twenty to thirty years. As the mainstream product in current photovoltaic applications, single-glass modules occupy a significant proportion. For the structural characteristics of single-glass modules, YUSHUNXIN provides a single-glass photovoltaic panels disposal project that balances environmental safety, resource recovery rates and economic viability.

What is the structure of a single-glass photovoltaic panel?

panel solar
single-glass pv panel

The typical structure of a single-glass photovoltaic module consists of: tempered glass, EVA, células solares, EVA, backsheet, aluminum frame, and junction box. Common dimensions for single-glass PV panels are 1650mm × 992mm × 40mm, which are suitable for most photovoltaic systems.

Recycling Targets for Single-Glass Photovoltaic Panel Disposal Project

The recycling targets for single-glass photovoltaic panel disposal project primarily include:

What is the process for recycling single-glass photovoltaic panels?

For the structural characteristics of single-glass photovoltaic modules, the single-glass photovoltaic panel disposal project employs automatic equipment to achieve an efficient, environmentally friendly, and cost-effective PV panel recycling process.

What are the primary equipment configurations for single-glass photovoltaic panel disposal project?

The single-glass photovoltaic panel recycling production line we designed has a capacity of 500-1000 kg/hora. We can also customize the production line according to customer requirements. Below are the main equipment in the single-glass solar recycling process. You can also click to learn more about the Costo de la máquina de reciclaje de paneles solares..

aluminum frame removal machine

Máquina de eliminación de marcos

La máquina de eliminación de marcos de paneles fotovoltaicos está diseñada específicamente para el reciclaje y reutilización de paneles fotovoltaicos de desecho.. Este equipo separa eficientemente los marcos de los módulos., que permite el reciclaje de materiales de paneles fotovoltaicos.

Airflow gravity separator

Equipos de separación por gravedad.

The airflow density separator screens ground materials through density-based sieving, which separates copper, polvo de silicio, and plastic. The equipment features stable performance, high efficiency, and low energy consumption.

Máquina de eliminación de vidrio

Máquina de eliminación de vidrio

Este equipo emplea tecnología avanzada de separación mecánica para separar de forma rápida y segura el vidrio de los paneles fotovoltaicos., creating separated fractions for testing and a defined downstream route.

e-waste shredder

Trituradora de residuos electrónica

This shredder mainly serves the preliminary crushing and recycling of photovoltaic panels, featuring stable crushing performance and high efficiency.

separador electrostático

Separador electrostático

The electrostatic separator is suitable for sorting mixed materials of varying densities that are difficult to separate by flotation methods. It efficiently separates plastics, polvo de silicio, and metal mixtures.

What are the advantages of the single-glass photovoltaic panel disposal project?

In comparison to traditional processes, the solución de proyecto de pirólisis de paneles solares achieves comprehensive improvements in recovery rate, consumo de energía, economic efficiency, and automation levels. The following are the specific advantages.

High Recovery Rates
Glass recovery exceeds 90%, metal recovery surpasses 95%, and silicon wafer recovery reaches over 80%, which significantly enhances resource utilization and reduces waste emissions.
Low Energy Consumption and Low Emissions
The process integrates pyrolysis and mechanical separation technologies, reducing energy consumption and chemical usage while maintaining efficiency. The entire process generates less wastewater and exhaust gas than traditional wet processes, which meets clean production requirements.
Significant Economic Value
The recycling process enables the extraction of high-value materials such as aluminum, vaso, plata, and copper, which can enter industries like photovoltaics and electronics after reprocessing.
High Degree of Automation
Mechanization and intelligent control of key processes not only enhance production efficiency but also reduce dependence on manual labor and minimize safety risks, thereby ensuring operational stability and controllability.

If you would like to learn more about the Solución de reciclaje de paneles fotovoltaicos de doble vidrio., no dude en contactarnos.

BASE DE INGENIERÍA ALINEADA CON EL CATÁLOGO

Mecánico de un solo vidrio

Use where frame and front-glass removal can be engineered before dry liberation and classification.

01

material entrante

Single-glass crystalline-silicon module mix, dimensions, intact/broken share, frame and junction-box condition.

02

Resultados esperados

Separated frame and glass plus classified copper-, silicio- y fracciones que contienen polímeros.

03

Interfaces de proyecto

Safe receiving, glass handling, recolección de polvo, fuerza, compressed air, wear-parts access and product packing.

REGISTRO DE MODELO Y ALCANCE

Utilice sólo la fila que coincida con el límite del proceso seleccionado.

Referencia del catálogoCapacidadFuerzaSobre físicoLímite incluido
YSX-M1000Mecánico de un solo vidrio1 t/h277.6 kilovatios36 × 6 × 6 metroLínea mecánica integrada

Regla de configuración: La capacidad del catálogo es una referencia de planificación.. Rendimiento estable, potencia instalada/operativa, huella, recuperación, pureza, Las emisiones y la demanda de servicios públicos requieren la lista de equipos aprobados., material representativo y condiciones de aceptación por escrito.

Información requerida antes de la configuración y cotización.

  1. Fotos de material representativo., especificaciones y muestra disponible.
  2. Capacidad requerida más horas por turno, turnos por día y días de funcionamiento.
  3. Productos objetivo, Método de muestreo y requisitos del receptor aguas abajo..
  4. País del sitio, potencia disponible, combustible, agua, Aire comprimido y límites de construcción..
  5. Ambiental local, fuego, Requisitos de almacenamiento y seguridad laboral..
  6. Límite de entrega solicitado: equipo, disposición, instalación, puesta en marcha y formación.