CLNB 2025: Eyes on Sustainable Development

게시됨: May 06, 2025 17:32 (GMT+8)
출처: SMM
At the CLNB 2025 (10th) New Energy Industry Chain Expo - Academician & Top-tier Entrepreneur Forum hosted by SMM Information & Technology Co., Ltd. (SMM), Liangbin Li, Chairman of Jiangxi Ganfeng Lithium Co., Ltd., delivered a speech centered on the theme of "Focusing on Sustainable Development and Practicing Long-termism."

At the CLNB 2025 (10th) New Energy Industry Chain Expo - Academician & Top-tier Entrepreneur Forum hosted by SMM Information & Technology Co., Ltd. (SMM), Liangbin Li, Chairman of Jiangxi Ganfeng Lithium Co., Ltd., delivered a speech centered on the theme of "Focusing on Sustainable Development and Practicing Long-termism."



Firstly, Chairman Li introduced Ganfeng's lithium ecosystem, as follows:

Ganfeng Lithium's business encompasses lithium resource development, deep processing of lithium chemical products, lithium metal smelting, lithium battery manufacturing, energy storage systems, and lithium battery recycling.

Sustainable Development

Accelerate energy transition and pursue long-term growth.

Optimize the energy structure, mitigate energy risks, and pursue long-term returns.

Replace coal and oil with PV power generation to increase the proportion of clean energy and reduce long-term costs.

Vigorously develop the energy storage business to provide comprehensive solutions and avoid energy risks.

Replace diesel and gasoline equipment with electrical equipment to reduce fossil energy consumption.

Increase the proportion of green electricity.

The MARIANA Lithium Salt Lake Project - The first salt lake project in South America equipped with integrated PV ESS facilities.

The project has an installed capacity of 300 MW and adopts an integrated PV ESS design. The energy storage system is fully equipped with Ganfeng's proprietary intellectual property rights.

The system fully meets the energy consumption needs of the Mariana Lithium Salt Lake Project and can provide 100% uninterrupted power supply.

This model is fully replicable, and we are confident in promoting it to more countries and projects.

As of the end of 2024, the company has achieved a grid-connected PV capacity of 15.57 MWp in China.

One-time investment for long-term, stable, and low-cost energy supply.

Energy Storage Solutions

Ganfeng LiEnergy has launched a brand-new energy storage system that adopts full-time domain equalization technology, increasing the equalization duration by five times. It employs a pack large module design, achieving a system efficiency of over 95%. The system utilizes Ganfeng LiEnergy's 314Ah high-capacity, long-life battery cells with a stable material system. Currently, the total application scale exceeds 11,000 MWh in both domestic and overseas markets. In the rankings of domestic and global shipments of Chinese energy storage enterprises, Ganfeng LiEnergy has been among the top 10 nationwide and globally for two consecutive years.

For example:

The Safo 50MWc solar PV power generation and 25MWh ESS power station in Mali (under planning); the Tongliao 395MWh integrated generation-grid-load-storage project in Inner Mongolia.

The 300MWh PV ESS project in Argentina; the 143MWh/52-container ESS project in Taiwan, China.

The 80MWh ESS project of OKAYA POWER PVT.LTD; the 130MWh PV ESS project in Guazhou, Gansu Province.

Accelerate Comprehensive Electrification

Transport vehicles equipped with Ganfeng LiEnergy's power batteries have already undertaken some raw material transportation tasks, driving the company's own business development while reducing carbon emissions.

Promote electric vehicles to upstream resource providers and suppliers to drive collaborative carbon reduction across the supply chain and promote the development of the company's own lithium battery business.

Focus on High-quality Projects and Pursue Project Sustainability

Focus on the development of high-quality lithium resources and supporting projects to increase the self-sufficiency rate of resources; improve project efficiency to avoid resource waste; match the needs of the processing end with the resource end and strengthen internal corporate control.

Technological Innovation

Promote technological innovation to improve quality, reduce costs, and increase efficiency.

Innovate lithium extraction technologies to reduce resource costs.

Adopt a DLE lithium extraction process with lower water consumption, reducing water consumption per ton of lithium carbonate product through technological innovation, lowering water costs, and alleviating environmental pressure.

The EXAR project has reduced water consumption per ton of lithium carbonate to 70m³, placing it at the forefront of the industry.

Develop New Quality Productive Forces and Enhance Production Efficiency

Build smart factories to precisely control energy consumption in the production process through digital and information technologies, driving cost reduction and efficiency improvement through new quality productive forces.

Construct an advanced process control system to achieve precise regulation and optimization of the production process.

Introduce a Manufacturing Execution System (MES) to further enhance production efficiency and response speed.

Operation efficiency has increased by 90%, labor costs have decreased by 80%, and energy consumption costs have decreased by 50%.

Circular Regeneration

Build a circular system to explore the value of resource regeneration.

Lithium Battery Recycling - Achieving the Recycling and Regeneration of Lithium

The company has currently achieved a lithium comprehensive recovery rate of over 90% and a nickel-cobalt metal recovery rate of over 95%.

Collaborate on battery and lithium-containing waste recycling to extract valuable metals and lithium compounds from recycled waste materials, which are then used in the production of new battery raw materials or lithium chemical products, forming a closed-loop of sustainable development and contributing to the achievement of global carbon neutrality goals.

Consolidate Technological Innovation in Circular Production

Undertake the national key R&D program "Key Technologies and Equipment for Circular Economy" - the key special project "Integrated Technologies and Demonstration for Circular Upgrading of Lithium Industry Clusters."

Build a Lithium Battery Recycling System

Collaborate with upstream and downstream partners to build comprehensive lithium battery utilization projects and promote the construction of an industrial ecosystem for the recycling of waste materials. The project includes production lines and related facilities for battery pack disassembly, cascade utilization, battery processing, etc.

By-product Development - Exploring More Economic Value

Lithium Slag Recycling and Utilization: Conduct technological development and secondary processing of industrial waste slag generated during ore refining for use as raw materials in the glass and cement manufacturing industries.

Sodium Hypochlorite Recycling and Utilization: The company collects chlorine-containing exhaust gas through gas collection hoods and directs it to absorption treatment devices, achieving a chlorine absorption rate of 99.9%. The absorbed sodium hypochlorite solution is mainly used for water purification, as a disinfectant, and for pulp bleaching.

Steam Waste Heat Recovery - Improving Energy Utilization Efficiency

Adopt MVR (Mechanical Vapor Recompression) technology, which only consumes 0.1t of fresh steam to evaporate 1 ton of water, greatly realizing steam reuse and reducing energy consumption.

Utilize steam condensate and hot water generated as a by-product of air compressors as heat sources to achieve the goal of reducing energy consumption based on the principle of endothermic refrigeration.

Recover waste heat generated during the operation of air compressors to meet the hot water demand of employee dormitories, reducing overall energy consumption and operating costs.

Steam Condensate Recovery - Reducing Water Consumption

The lithium series projects save approximately 60,000 tons of water annually; the lithium dihydrogen phosphate project saves approximately 16,500 tons of water annually.

2024 Sustainable Development Achievements

MSCI ESG Index Rating: A; ESG Best Practice Award; Sustainable Development Leadership Award; Environment-Friendly Award; and the release of sustainable development reports for nine consecutive years, etc.

Ganfeng Lithium will strive to utilize limited lithium resources to create a green, clean, and healthy life for human development and progress!

Follow us for more information

LinkedIn: https://www.linkedin.com/company/98924065/admin/dashboard/

Facebook: https://www.facebook.com/profile.php?id=61572704694550

X.: https://x.com/CLNB_official

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
EcoPro BM-삼성SDI, 전고체 배터리 소재 개발 MOU 체결
4분 전
EcoPro BM-삼성SDI, 전고체 배터리 소재 개발 MOU 체결
더 보기
EcoPro BM-삼성SDI, 전고체 배터리 소재 개발 MOU 체결
EcoPro BM-삼성SDI, 전고체 배터리 소재 개발 MOU 체결
에코프로비엠은 10월 6일 삼성SDI와 전고체 배터리 소재 개발을 위한 양해각서(MOU)를 체결했다고 밝혔다. 이번 협력은 양극재, 양극 전해질, 분리막 전해질을 아우른다. 삼성SDI는 배터리 셀 개발 및 양산 기술에 주력하고, 에코프로비엠은 핵심 소재를 개발한다. 양사는 개발, 품질 평가, 생산 준비에 협력하여 2027년 황화물계 전고체 배터리 상용화를 목표로 한다.
4분 전
INNOX Lithium, Trafigura와 2029년까지 최대 3만 톤 장기 마케팅 계약 체결
7분 전
INNOX Lithium, Trafigura와 2029년까지 최대 3만 톤 장기 마케팅 계약 체결
더 보기
INNOX Lithium, Trafigura와 2029년까지 최대 3만 톤 장기 마케팅 계약 체결
INNOX Lithium, Trafigura와 2029년까지 최대 3만 톤 장기 마케팅 계약 체결
INNOX Advanced Materials의 자회사 INNOX Lithium은 10월 6일 글로벌 원자재 트레이더 Trafigura와 수산화리튬 장기 판매 계약을 체결했다고 발표했다. 회사에 따르면, 2029년까지 고순도 수산화리튬 공급량은 최대 3만 톤에 달할 수 있다. Trafigura는 이 소재를 글로벌 전기차 제조사와 양극재 생산업체에 공급할 예정이다.
7분 전
[SMM 단신] 캘리포니아, 확장된 첨단 리튬이온 배터리 공장 가동
2시간 전
[SMM 단신] 캘리포니아, 확장된 첨단 리튬이온 배터리 공장 가동
더 보기
[SMM 단신] 캘리포니아, 확장된 첨단 리튬이온 배터리 공장 가동
[SMM 단신] 캘리포니아, 확장된 첨단 리튬이온 배터리 공장 가동
미국 리튬 에너지(American Lithium Energy)가 캘리포니아주 비스타에 확장된 리튬이온 배터리 공장을 열었다. 항공우주, 방산, 산업용 및 고부가가치 저장장치 용도를 위해 부지 면적을 2만 3천 제곱피트에서 8만 2천 제곱피트로 늘렸다. 이번 확장에는 1천 3백만 달러 이상의 주 정부 보조금이 투입됐으며, 18650 셀 생산 규모 확대와 고용량 실리콘 음극 각형 배터리 검증을 위해 민간 및 연방 자금 4천만~5천만 달러를 추가로 유치하는 데 기여했다. 연간 생산량은 공개되지 않아, 이번 이정표는 공장 가동과 파일럿 생산 역량을 확인해 줄 뿐 GWh 규모의 구체적인 명목 생산능력을 입증하지는 못한다.
2시간 전