A large number of photovoltaic modules will reach their retirement period within the next 10 да 25 years. How to handle these waste modules containing high-value materials such as glass, силицијумске плочице, silver paste, and aluminum frames has become a focus of industry. The emergence of PV recycling technology not only enables the effective recovery of valuable resources but also prevents environmental pollution, thereby realizing a green, low-carbon circular economy.

What are the technical approaches for PV recycling?

Photovoltaic modules primarily consist of glass, силицијумске плочице, бацксхеетс, EVA adhesive, metal frames, and conductors. The tight bonding between these layers poses challenges for recycling. Стога, a PV recycling technology corresponds to different separation methods and objectives.

Can these processes recycle different types of modules?

Photovoltaic modules are of various types, including monocrystalline silicon, поликристални силицијум, and thin-film cells. The differences in their structures determine the suitability of recycling routes. ИУСХУНКСИН управљање рециклирањем соларних панела features a modular and intelligent design. The equipment can automatically identify module types and matches optimal process parameters, which supports flexible combinations of PV recycling technology.

Monocrystalline and Polycrystalline Silicon Modules
Thin Film PV Modules

What are the key recycling considerations for PV materials?

As PV materials differ in primary valuable substances and pollution risks, recycling emphasis varies accordingly.

Monocrystalline modules contain silicon material of high purity, which is the most valuable component for recycling. The focus of PV recycling technology is to maximize the preservation of silicon wafer integrity and purity while recovering auxiliary materials such as silver paste and aluminum frames.

Polycrystalline modules feature thin and fragile silicon wafers. During mechanical separation, it is necessary to control the crushing force to prevent secondary contamination. The key focus of recycling lies in the efficient separation of glass and metal.

Thin-film modules contain rare metals with high recycling value, such as indium, gallium, and tellurium. However, they also contain potentially hazardous substances. The focus of recycling lies in pollution control during safe dismantling and chemical separation processes.

Difference types of solar panels
EVA and Backing Materials

EVA and Backing Materials

EVA and backing materials are mostly polymers that can produce fuel oil or reusable chemicals through pyrolysis or chemical recycling.

Metal Frames and Wires

Metal Frames and Wires

Recycling companies can directly recycle aluminum frames and copper wires through mechanical dismantling. Automatic dismantling equipment significantly reduces labor costs and increases processing speed.

ИНЖЕЊЕРСКЕ ОСНОВЕ УСКЛАЂЕНЕ КАТАЛОГОМ

Technology comparison

Use this page to compare liberation mechanisms and connected environmental duties, not to select equipment from capacity alone.

01

Долазни материјал

Module bill of materials and representative samples.

02

Очекивани резултати

Defined fractions with mass-balance and receiver criteria.

03

Интерфејси пројекта

Process safety, контрола животне средине, комуналне услуге, maintenance access and sampling plan.

РЕГИСТАР МОДЕЛА И ОБИМА

Користите само ред који одговара изабраној граници процеса.

Референца каталогаКапацитетПоверФизички омотачУкључена граница
YSX-M1000Single-glass mechanical1 т/х277.6 кВ36 × 6 × 6 mIntegrated mechanical line
YSX-TK500Tunnel thermal500 кг/х116.65 кВ65 × 13 × 7.5 mContinuous tunnel thermal line
YSX-TK1000Tunnel thermal1,000 кг/х126.65 кВ72 × 13 × 7.5 mContinuous tunnel thermal line
YSX-TK2000Tunnel thermal2,000 кг/х136.65 кВ80 × 13 × 7.5 mContinuous tunnel thermal line
YSX-PF5Batch thermal5 т/дан140.45 кВ46 × 33 × 7.5 mMixed-module batch thermal line
YSX-PF16Batch thermal16 т/дан142.45 кВ40 × 26 × 7.5 mMixed-module batch thermal line
YSX-8000Earlier integrated thermal8 т/данConfiguration controlled50 × 30 × 8 mEarlier thermal project reference; reactor Φ2200 × 6000 × 20 мм
YSX-16000Earlier integrated thermal16 т/данConfiguration controlled60 × 30 × 8 mEarlier thermal project reference; reactor Φ2800 × 6600 × 18 мм

Правило конфигурације: каталошки капацитет је референца за планирање. Стабилан проток, инсталирана/радна снага, отисак стопала, опоравак, чистота, емисије и потражња за комуналије захтевају одобрену листу опреме, репрезентативни материјал и писани услови прихватања.

Потребне информације пре конфигурације и понуде

  1. Фотографије репрезентативног материјала, спецификације и расположиви узорак.
  2. Потребан капацитет плус сати по смени, смене по дану и радни дани.
  3. Циљни резултати, метода узорковања и захтеви пријемника у низводном току.
  4. Држава сајта, расположива снага, гориво, воде, компримовани ваздух и границе зграде.
  5. Локално окружење, ватра, захтеви за складиштење и безбедност на раду.
  6. Тражена граница испоруке: опреме, распоред, инсталација, пуштање у рад и обуку.