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区域特定的木质纤维素残留物作为净零化学工业可再生原料的来源。

Region-Specific Sourcing of Lignocellulose Residues as Renewable Feedstocks for a Net-Zero Chemical Industry.

机构信息

Chair of Ecological Systems Design, Institute of Environmental Engineering, ETH Zürich, 8093 Zürich, Switzerland.

National Centre of Competence in Research (NCCR) Catalysis, ETH Zürich, 8093 Zürich, Switzerland.

出版信息

Environ Sci Technol. 2024 Aug 6;58(31):13748-13759. doi: 10.1021/acs.est.4c03005. Epub 2024 Jul 25.

Abstract

Biobased chemicals, crucial for the net-zero chemical industry, rely on lignocellulose residues as a major feedstock. However, its availability and environmental impacts vary greatly across regions. By 2050, we estimate that 3.0-5.2 Gt of these residues will be available from the global forest and agricultural sectors, with key contributions from Brazil, China, India, and the United States. This supply satisfies the growing global feedstock demands for plastics when used efficiently. Forest residues have 84% lower climate change impacts than agricultural residues on average globally but double the land-use-related biodiversity loss. Biobased plastics may reduce climate change impacts relative to fossil-based alternatives but are insufficient to fulfill net-zero targets. In addition, they pose greater challenges in terms of biodiversity loss and water stress. Avoiding feedstock sourcing from biodiversity-rich areas could halve lignocellulose residues-related biodiversity loss without significantly compromising availability. Improvements in region-specific feedstock sourcing, agricultural management and biomass utilization technologies are warranted for transitioning toward a sustainable chemical industry.

摘要

生物基化学品对于实现净零化学工业至关重要,其主要原料依赖于木质纤维素残留物。然而,其在各地区的可得性和环境影响差异很大。到 2050 年,我们估计,来自全球林业和农业部门的这些残留物将有 30 亿至 52 亿吨,其中巴西、中国、印度和美国的贡献最大。如果有效利用,这种供应可以满足不断增长的全球塑料原料需求。全球范围内,森林残留物的气候变化影响平均比农业残留物低 84%,但土地利用相关生物多样性损失却是农业残留物的两倍。生物基塑料相对于基于化石的替代品可以减少气候变化的影响,但不足以实现净零目标。此外,它们在生物多样性损失和水资源压力方面带来了更大的挑战。避免从生物多样性丰富的地区获取原料,可以将与木质纤维素残留物相关的生物多样性损失减少一半,而不会显著影响其可得性。需要改进特定地区的原料采购、农业管理和生物质利用技术,以实现向可持续化学工业的转型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be6a/11308523/739e2860e21f/es4c03005_0001.jpg

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