کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
8948858 | 1645684 | 2018 | 36 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Cradle-to-gate environmental impacts of sulfur-based solid-state lithium batteries for electric vehicle applications
ترجمه فارسی عنوان
اثرات زیست محیطی با استفاده از باتری های لیتیوم حالت جامد با استفاده از گوگرد به وسیله وسایل نقلیه الکتریکی
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کلمات کلیدی
تولید باتری، ارزیابی چرخه حیات، انتشار چرخه حیات، موجودی مواد، گرمایش جهانی، تقاضای انرژی تجمعی،
موضوعات مرتبط
مهندسی و علوم پایه
مهندسی انرژی
انرژی های تجدید پذیر، توسعه پایدار و محیط زیست
چکیده انگلیسی
In this study, we investigate the cradle-to-gate environmental impacts of a pre-production sulfur-based solid-state lithium pyrite battery suitable for electric vehicle applications. We apply process-based attributional life cycle assessment methodology, utilizing laboratory data, literature, U.S. patents, and US-EI 2.2 life cycle inventory database to estimate the materials and energy required for the battery and its anticipated manufacturing and assembly processes. We estimate a mass of 440â¯kg and a specific capacity of 182â¯Wh kgâ1 for a battery with 80â¯kWh energy capacity and 100â¯kW power, capable of powering a full-size battery electric vehicle with a 200-mile range. The estimated cumulative energy demand (CED) and global warming potential for a 100-year time horizon (GWP100) are 3300â¯MJ kWhâ1 and 199â¯kg CO2 eq. kWhâ1, respectively. The combination of direct and upstream energy associated with clean dry-room operation accounts for the biggest share of the total CED (75%) and GWP100 (73%), followed by the cathode paste (10% and 6%, respectively). The energy demand and environmental impacts of the clean dry-room and cathode paste present opportunities to improve production processes and reduce costs. CED and GWP100 impacts associated with battery production are lower than well-to-wheel energy consumption and emissions for a vehicle with the same size and range. The pyrite battery delivers higher specific capacity than the current Li-ion battery chemistries while its CED and GWP100 environmental impacts are comparable.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Journal of Cleaner Production - Volume 202, 20 November 2018, Pages 770-778
Journal: Journal of Cleaner Production - Volume 202, 20 November 2018, Pages 770-778
نویسندگان
Azadeh Keshavarzmohammadian, Sherri M. Cook, Jana B. Milford,