Detailed Breakdown of the Cost Composition of 280Ah Energy Storage Cells; Accelerated Iteration of 300Ah+ Cells Underway in 2024

게시됨: Feb 29, 2024 14:59
SMM Analysis presents a detailed cost breakdown of 280Ah lithium iron phosphate energy storage cells, showing a stable cost trend and an industry shift towards higher capacity 300Ah+ cells for cost efficiency.

According to SMM's calculations, the current theoretical cost of the 280Ah lithium iron phosphate energy storage cell (hereinafter referred to as the 280 energy storage cell) is about 0.34 yuan/Wh, which is the same as last week on a week-on-week basis. Looking back at the cost of the 280 energy storage cell since the beginning of 2024, compared to the significant drop in 2023, it has now reached a relatively stable stage. SMM will now provide a detailed breakdown of the cost of the 280 energy storage cell.

In the cost structure of the 280 energy storage cell, it includes direct material costs and manufacturing management expenses. Among them, the direct material cost of the cell accounts for the largest proportion, about 91%, including cathode and anode active materials, binders, conductive agents, separators, and cathode and anode terminals, etc. The material systems of the 280 energy storage cells launched by various cell companies are basically similar, but there are differences in material utilization rates, procurement models, cell formulas, etc., leading to different material costs for cells among companies; the cost proportion of manufacturing management expenses is about 9%, including labor, depreciation and amortization, and production management expenses, etc. Due to differences in scale, local manpower and electricity costs, etc., there are also differences in this part of the costs.

Looking at the specific breakdown of costs:

As of January 2024, the material cost of the cathode part in the 280 energy storage cell accounted for about 42%. Among them, the cost proportion of the active material lithium iron phosphate was the highest, about 67%, followed by the cathode current collector coated aluminum foil, with a cost proportion of about 10%, and the cost proportions of the cathode conductive agent, binder, and solvent were about 8%, 3%, and 12%, respectively. It can be seen that the largest part of the cost in the 280 energy storage cell is the active material lithium iron phosphate cathode. Taking January 2023 as an example to further break down the lithium iron phosphate cathode, the cost proportion of lithium carbonate reached 83%, followed by the cost proportion of iron phosphate at about 10%, while the remaining auxiliary materials and processing fees only accounted for about 7%. According to SMM, lithium carbonate is also the central material in market price linkage. Currently, the lithium iron phosphate cathode material transactions are mostly linked to the SMM lithium carbonate price, with the remaining iron phosphate, auxiliary materials, and processing fees mostly based on agreements. With the release of lithium carbonate production capacity and the fall in prices in 2023, the cost of lithium iron phosphate cathode materials quickly slid. Compared to the 61% proportion of the total cathode material cost in January 2023, it had dropped to 42% by January 2024, and the cost proportion of lithium carbonate in lithium iron phosphate had also dropped to 56%.

As of January 2024, the material cost of the anode part in the 280 energy storage cell accounted for about 26%. Among them, the cost proportion of the anode current collector copper foil was the highest at about 41%, followed by the active material graphite, with a cost proportion of about 39%, and the cost proportions of the anode binder, thickener, and conductive agent were about 10%, 6%, and 4%, respectively. Currently, the use of graphite in China is mostly synthetic graphite. Similar to the cathode, in 2023, with the price drop due to the release of graphitization and needle coke capacity, and the accelerated replacement of medium sulfur petroleum coke as raw material, the cost of synthetic graphite also rapidly declined, but due to the high copper prices, the cost proportion of the anode remains high.

As of January 2024, the material cost of the electrolyte part in the 280 energy storage cell accounted for about 7%, as the main raw material of the electrolyte, lithium hexafluorophosphate, was affected by the fall in lithium carbonate prices, the cost proportion of the electrolyte dropped from 8% in 2023 to 7% in the current period. Meanwhile, compared to other main materials, the price of the separator is relatively stable, accounting for about 6% of the material cost in the 280 energy storage cell.

Overall, the reasons for the price of the 280 energy storage cell are the rapid release of cell capacity and the decline in material costs. Entering 2024, as the prices of major raw materials have stabilized after a rapid decline in the early stage, under the current weak market demand, the costs of the 280 energy storage cells are generally stable.

Although the 280Ah energy storage cell is currently the mainstream specification in the market, the industry consensus is to reasonably increase the capacity of energy storage cells in order to reduce the number of PACK cells, along with reducing the connectors of the energy storage system, thereby lowering the cost of energy storage and improving the consistency of cells. Taking the 300Ah+ cell as an example, most of the 300Ah+ energy storage cells still use the size of the same manufacturer's 280Ah cell (71173), thus achieving higher energy density in the same volume, which reduces the overall cost of the energy storage system and improves project profitability. In the promotion of 300Ah+ cell products by energy storage battery manufacturers, cost reduction is also one of the most prominent selling points. Against this backdrop, the ability to mass-produce 300Ah+ cells has become a reflection of the product and technical competitiveness of lithium battery companies. Leading energy storage manufacturers have launched 300Ah+ cells, sparking a competition to upgrade from 280Ah to 300Ah+. According to incomplete statistics from SMM, it is expected that manufacturers such as CATL, Zhenli New Energy, Zhongchuang Xinhang, Penghui Energy Storage, Tianneng Battery, and Chunu New Energy will mass-produce 310+Ah cells in 2024. In the context of intensifying market competition in 2024, the iteration of 300Ah+ energy storage cells is expected to accelerate.

If you have any questions regarding the industry data, or the news (e.g. how this can affect your business). Please feel free to reach out to me:

Robin He

SMM Li-ion Battery Materials Department

E: robinhe@smm.cn | T: +86-21-51595884

데이터 출처 설명: 공개 정보를 제외한 모든 데이터는 SMM이 공개 정보, 시장 커뮤니케이션 및 SMM 내부 데이터베이스 모델을 기반으로 가공한 것입니다. 본 자료는 참고용이며 의사결정 권고를 구성하지 않습니다.

문의 사항이 있거나 자세한 정보를 원하시면 아래로 연락해 주시기 바랍니다: lemonzhao@smm.cn
리서치 보고서 열람 방법에 대한 자세한 내용은 아래로 문의하시기 바랍니다:service.en@smm.cn
관련 뉴스
[SMM 분석] 2026년 상반기 글로벌 에너지 저장 배터리 셀 출하량 분석: 486 GWh 급증의 이면—입찰 수주와 계통 연계 간의 격차와 중국 외 시장 구도의 재편
2026년 7월 23일 15:20
[SMM 분석] 2026년 상반기 글로벌 에너지 저장 배터리 셀 출하량 분석: 486 GWh 급증의 이면—입찰 수주와 계통 연계 간의 격차와 중국 외 시장 구도의 재편
더 보기
[SMM 분석] 2026년 상반기 글로벌 에너지 저장 배터리 셀 출하량 분석: 486 GWh 급증의 이면—입찰 수주와 계통 연계 간의 격차와 중국 외 시장 구도의 재편
[SMM 분석] 2026년 상반기 글로벌 에너지 저장 배터리 셀 출하량 분석: 486 GWh 급증의 이면—입찰 수주와 계통 연계 간의 격차와 중국 외 시장 구도의 재편
2026년 상반기, 글로벌 에너지저장 배터리 셀 시장은 폭발적인 성장세를 이어갔다. SMM 데이터에 따르면, 상반기 글로벌 에너지저장 배터리 셀 출하량은 약 486GWh로 전년 동기 대비 93% 증가했다. 출하 구조별로 보면, 유틸리티급(산업용 및 상업용 ESS 포함) 배터리 셀 출하량이 432GWh를 넘어섰고, 주거용 배터리 셀 출하량은 약 54GWh에 달했다. 유틸리티급 응용 분야가 여전히 절대적인 주요 부문을 차지했다.
2026년 7월 23일 15:20
[에너지 저장: 100MW/200MWh! 썬워다의 또 다른 에너지 저장 프로젝트 착공]
2026년 7월 23일 13:57
[에너지 저장: 100MW/200MWh! 썬워다의 또 다른 에너지 저장 프로젝트 착공]
더 보기
[에너지 저장: 100MW/200MWh! 썬워다의 또 다른 에너지 저장 프로젝트 착공]
[에너지 저장: 100MW/200MWh! 썬워다의 또 다른 에너지 저장 프로젝트 착공]
최근 난징신신에너지저장기술유한회사의 100MW/200MWh 에너지 저장 발전소 프로젝트가 난징시 리수이 개발구에서 착공했다고 보도되었다. 이 프로젝트는 총 투자액 2억 5천만 위안, 부지 면적 약 22.14무로, 100MW/200MWh 규모의 계통측 전기화학 에너지 저장 발전소(계통 연계형)를 건설하고 110kV 변전소와 2회선 가공 송전선로를 구축할 계획이다. 최종적으로 220kV 홍화 변전소에 연결되어 전력망에 연계되며, 성급 전력망의 통합 운용을 받게 된다. 계획에 따르면 올해 12월 말까지 계통 연계가 완료될 예정이다.
2026년 7월 23일 13:57
[저장: 독일, 첫 4.5GW 급전 가능 용량 및 장기 저장 경매 개시]
2026년 7월 23일 10:31
[저장: 독일, 첫 4.5GW 급전 가능 용량 및 장기 저장 경매 개시]
더 보기
[저장: 독일, 첫 4.5GW 급전 가능 용량 및 장기 저장 경매 개시]
[저장: 독일, 첫 4.5GW 급전 가능 용량 및 장기 저장 경매 개시]
독일 연방 네트워크청이 신규 전력공급안정화법에 따라 첫 경매를 시작했으며, 조정 가능한 신규 발전 및 장주기 에너지 저장 장치에 대한 입찰은 9월 8일까지다. 1차 경매 물량은 4.5GW 규모로, 낙찰자는 설비 가용성을 15년간 유지하는 대가로 용량 요금을 받는다. 배터리 저장 장치는 최소 10시간 연속 방전이 가능한 경우에만 참여할 수 있으며, 10시간 시스템에는 0.58, 20시간 시스템에는 0.85의 저감 계수가 적용된다. 또한 100% 기술 가용성, 최소 92%의 왕복 효율을 충족해야 하며, 셀 및 인버터 등 주요 부품에 대한 현지 부품 사용 요건도 충족해야 한다. 1차 경매 결과는 11월 3일에 발표될 예정이다.
2026년 7월 23일 10:31
Detailed Breakdown of the Cost Composition of 280Ah Energy Storage Cells; Accelerated Iteration of 300Ah+ Cells Underway in 2024 - Shanghai Metals Market (SMM)