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市場調查報告書
商品編碼
1750233
鋰電池黑粉回收的市場規模,佔有率,預測,趨勢分析:電池類別,電池供給來源,各回收流程 - 2032年為止的世界預測Black Mass Recycling Market Size, Share, Forecast, & Trends Analysis by Battery Type, Battery Source, Recycling Process -Global Forecast to 2032 |
本研究報告 "鋰電池黑粉回收市場規模、份額、預測及趨勢分析(按電池類型(NMC、LCO、LMO、NCA)、電池來源(汽車電池、消費電子產品、工業電池)、回收工藝(濕法冶金、火法冶金)-2032 年全球預測" 預測,到 2032 年,鋰電池黑粉回收率22.5%。
在進行了廣泛的二手資料和一手資料研究以及對市場情景的深入分析之後,我們對關鍵行業驅動因素、限制因素、機會和趨勢進行了影響分析。電動車 (EV) 的加速普及推動了該市場的成長,這增加了需要回收的廢棄鋰離子電池的數量。對鋰、鈷和鎳等關鍵電池金屬的需求不斷增長,再加上供應鏈的脆弱性,促使製造商和政府優先考慮回收材料,以減少對採礦的賴。
此外,電池超級工廠的快速發展刺激了對高效回收解決方案的需求。技術進步,尤其是濕式冶金和直接回收製程的進步,正在提高金屬回收率和成本效益,從而支持市場成長。儘管存在這些積極趨勢,但該行業仍面臨許多課題,例如回收基礎設施不足、電池化學成分複雜多樣以及來自低成本礦產材料的競爭。然而,稅收抵免和補貼等政府激勵措施,以及印度和東南亞等新興市場日益增長的需求,為該行業帶來了巨大的機會。
值得注意的是,向濕式冶金技術和閉環回收系統的轉變,正在將電池回收從廢物管理活動轉變為可持續能源存儲的關鍵組成部分,使回收材料能夠直接用於新電池生產,並促進該領域的循環經濟。
Black Mass Recycling Market Size, Share, Forecast, & Trends Analysis by Battery Type (NMC, LCO, LMO, NCA), Battery Source (Automotive Batteries, Consumer Electronics, Industrial), Recycling Process (Hydrometallurgy, Pyrometallurgy)-Global Forecast to 2032
According to the research report titled, 'Black Mass Recycling Market Size, Share, Forecast, & Trends Analysis by Battery Type (NMC, LCO, LMO, NCA), Battery Source (Automotive Batteries, Consumer Electronics, Industrial), Recycling Process (Hydrometallurgy, Pyrometallurgy)-Global Forecast to 2032,' the black mass recycling market is projected to reach $20.4 billion by 2032, at a CAGR of 22.5% during the forecast period 2025-2032. The report provides an in-depth analysis of the global black mass recycling market across five major regions, emphasizing the current market trends, market sizes, recent developments, and forecasts till 2032.
Succeeding extensive secondary and primary research and an in-depth analysis of the market scenario, the report conducts the impact analysis of the key industry drivers, restraints, opportunities, and trends. The growth of this market is driven by the accelerating adoption of electric vehicles (EVs), which is increasing the volume of spent lithium-ion batteries requiring recycling. The rising demand for critical battery metals such as lithium, cobalt, and nickel, coupled with supply chain vulnerabilities, is encouraging manufacturers and governments to prioritize recycled materials to reduce dependence on mining.
Additionally, the rapid development of battery gigafactories is fueling the need for efficient recycling solutions. Technological advancements, particularly in hydrometallurgical and direct recycling processes, are enhancing metal recovery rates and cost-efficiency, supporting market growth. Despite these positive trends, the industry faces challenges including insufficient recycling infrastructure, the complexity of diverse battery chemistries, and competition from lower-cost mined materials. However, government incentives like tax credits and grants, along with expanding demand in emerging markets such as India and Southeast Asia, present substantial opportunities.
Notably, the shift toward hydrometallurgical techniques and closed-loop recycling systems is transforming battery recycling from a waste management activity into a vital component of sustainable energy storage, enabling direct reuse of recovered materials in new battery production and fostering a circular economy within the sector.
The key players operating in the black mass recycling market are BASF SE (Germany), Umicore SA (Belgium), Tenova S.p.A. (Italy), Li-Cycle Holdings Corp. (Canada), Lithion Recycling Inc. (Canada), AkkuSer Oy (Finland), Duesenfeld GmbH (Germany), Aqua Metals Inc. (U.S.), SungEel Hi-Tech. Co., Ltd. (South Korea), Fortum Corporation (Finland), Redwood Materials Inc. (U.S.), Green Li-ion Pte Ltd. (Singapore), Tata Chemicals Limited (India), Attero Recycling Pvt. Ltd. (India), Exigo Recycling Pvt. Ltd. (India).
The black mass recycling market is segmented by battery type (lithium cobalt oxide (LCO), lithium nickel manganese cobalt oxide (NMC), lithium manganese oxide (LMO), lithium nickel cobalt aluminum oxide (NCA), and other batteries), battery source (automotive batteries, industrial batteries, consumer electronics, and other battery sources), recycling process (hydrometallurgy, pyrometallurgy, and other recycling processes), and geography. The study also evaluates industry competitors and analyzes the country-level markets.
Based on battery type, the lithium nickel manganese cobalt oxide (NMC) segment is expected to account for the largest share of the black mass recycling market in 2025. The major share of this market is mainly attributed to the widespread use of NMC batteries in electric vehicles and electronics, driven by their high energy density, longer lifespan, and growing demand for sustainable battery recycling solutions. Additionally, the increasing adoption of electric vehicles globally and supportive government regulations promoting battery recycling further boost the demand for NMC recycling. Manufacturers are also investing in advanced recycling technologies to recover valuable metals like nickel, cobalt, and lithium efficiently. These factors collectively contribute to the growing market share of the NMC segment in black mass recycling.
Based on battery source, the consumer electronic batteries segment is projected to record the highest CAGR during the forecast period. The fast growth of this segment is mainly attributed to the global proliferation of smartphones, laptops, tablets, wearable devices, and other portable electronic gadgets, all of which utilize lithium-ion batteries. The shorter lifecycle of batteries in consumer electronics compared to automotive and industrial batteries leads to a quicker turnover and a continuous supply of spent batteries for recycling. Furthermore, increasing awareness about e-waste management and regulatory actions to properly dispose of electronic devices are further accelerating the recycling of consumer electronics batteries.
Based on recycling process, the hydrometallurgy segment is expected to account for the largest share of the black mass recycling market in 2025. The large share of this segment is attributed to the several advantages of hydrometallurgical method offers over traditional pyrometallurgical processes. Hydrometallurgy involves the use of aqueous chemical solutions to selectively leach and recover valuable metals such as lithium, cobalt, nickel, and manganese from the black mass. This method allows for higher recovery rates of these critical materials, particularly lithium, which is often lost during high-temperature pyrometallurgical processing. As a result, hydrometallurgy has become the preferred choice for battery recyclers seeking to maximize the economic value extracted from spent lithium-ion batteries.
An in-depth geographic analysis of the industry provides detailed qualitative and quantitative insights into the five major regions (North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa) and the coverage of major countries in each region. Asia-Pacific is slated to register the highest CAGR during the forecast period, mainly due to the rapid industrialization, increasing adoption of electric vehicles, and strong government initiatives supporting sustainable practices. Countries like China, Japan, and South Korea are leading in battery production and consumption, driving demand for recycling. Additionally, growing awareness of environmental impacts and the need for resource recovery further accelerate the region's black mass recycling market growth.
Moreover, the presence of major battery manufacturers and recycling companies in the region enhances technological advancements and infrastructure development for efficient recycling processes. Favorable policies, subsidies, and strategic partnerships between public and private sectors are also contributing to market expansion. With the rising need to reduce dependency on raw material imports and ensure a stable supply of critical metals, Asia-Pacific is poised to lead the global growth in black mass recycling.
Key Questions Answered in the Report-
Black Mass Recycling Market Assessment-by Battery Type
Black Mass Recycling Market Assessment-by Battery Source
Black Mass Recycling Market Assessment-by Recycling Process
Black Mass Recyclings Market Assessment-by Geography