Securing the supply of graphite for batteries

Fuente: arXiv
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Main Authors: Bhuwalka, Karan, Ramachandran, Hari, Narasimhan, Swati, Yao, Adrian, Frohmann, Julia, Peiseler, Leopold, Chueh, William, Boies, Adam, Davis, Steven J., Benson, Sally
Format: Preprint
Published: 2025
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author Bhuwalka, Karan
Ramachandran, Hari
Narasimhan, Swati
Yao, Adrian
Frohmann, Julia
Peiseler, Leopold
Chueh, William
Boies, Adam
Davis, Steven J.
Benson, Sally
author_facet Bhuwalka, Karan
Ramachandran, Hari
Narasimhan, Swati
Yao, Adrian
Frohmann, Julia
Peiseler, Leopold
Chueh, William
Boies, Adam
Davis, Steven J.
Benson, Sally
contents Surging demand for graphite in energy storage applications has led to concerns about supply chai security for manufacturers and nations globally. Currently, China produces over 92% of graphite for anodes, posing a risk for industries reliant on graphite supply. Here, we systematically assess the costs of producing natural and synthetic battery-grade graphite in the U.S. and China using process-based cost models. We find that production costs in the U.S. are higher than those in China by 100-200%, so scaling production in the short-term will require significant policy support. We use our models to explore opportunities to improve the competitiveness of graphite production outside China, finding that lower financing rates and improved shaping yields can together reduce costs by 25-30%. Further implementing other cost reduction strategies, such as improving process throughput or lowering equipment costs, can achieve 35-40% lower costs. Finally, we discuss how innovative graphite production processes like methane pyrolysis and catalytic graphitization may provide competitive pathways.
format Preprint
id arxiv_https___arxiv_org_abs_2503_21521
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Securing the supply of graphite for batteries
Bhuwalka, Karan
Ramachandran, Hari
Narasimhan, Swati
Yao, Adrian
Frohmann, Julia
Peiseler, Leopold
Chueh, William
Boies, Adam
Davis, Steven J.
Benson, Sally
General Economics
Economics
Surging demand for graphite in energy storage applications has led to concerns about supply chai security for manufacturers and nations globally. Currently, China produces over 92% of graphite for anodes, posing a risk for industries reliant on graphite supply. Here, we systematically assess the costs of producing natural and synthetic battery-grade graphite in the U.S. and China using process-based cost models. We find that production costs in the U.S. are higher than those in China by 100-200%, so scaling production in the short-term will require significant policy support. We use our models to explore opportunities to improve the competitiveness of graphite production outside China, finding that lower financing rates and improved shaping yields can together reduce costs by 25-30%. Further implementing other cost reduction strategies, such as improving process throughput or lowering equipment costs, can achieve 35-40% lower costs. Finally, we discuss how innovative graphite production processes like methane pyrolysis and catalytic graphitization may provide competitive pathways.
title Securing the supply of graphite for batteries
topic General Economics
Economics
url https://arxiv.org/abs/2503.21521