Improving Environmental and Energy Efficiency in Wood Transportation for a Carbon-Neutral Forest Industry

被引:25
|
作者
Palander, Teijo [1 ]
Haavikko, Hanna [1 ]
Kortelainen, Emma [1 ]
Karha, Kalle [2 ]
Borz, Stelian Alexandru [3 ]
机构
[1] Univ Eastern Finland, Fac Sci & Forestry, POB 111, FI-80101 Joensuu, Finland
[2] Wood Supply Finland, Forest Div, Stora Enso, POB 309, FI-00101 Helsinki, Finland
[3] Transilvania Univ Brasov, Dept Forest Engn Forest Management Planning & Ter, Sirul Beethoven 1, Brasov 500123, Romania
来源
FORESTS | 2020年 / 11卷 / 11期
关键词
environment; energy; efficiency; CO2; wood transportation; renewable wood; wood procurement; vehicle exhaust emissions; larger and heavier vehicles; HEAVIER VEHICLES; TRUCK WEIGHT; PROCUREMENT; EMISSION; BENEFITS; IMPACTS; LARGER; MODELS; TIME; PULP;
D O I
10.3390/f11111194
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Wood transportation is an important source of greenhouse gas emissions, which should be considered when the carbon neutrality of the forest industry is of concern. The EU is dedicated to improving technology for a carbon-neutral development. This study investigates carbon neutrality by improving road freight transportation fleets consisting of various vehicle size combinations. The environmental emission and energy efficiency of a transportation fleet were analyzed in selected wood procurement regions of Stora Enso corporation (Finland). Based on the enterprise resource planning (ERP) data (2018-2020), the environmental emission efficiency increased by 11% via 76 t-vehicles compared 64 t vehicles. The maximum reduction in fuel consumption was 26% for 92 t vehicles, though this was achieved when operations were fully adjusted to the maximum weight limit. The wood-based energy efficiency measure (wood energy/transport energy) was a useful development indicator. It showed that the adapted fleets of transportation companies support a positive development for a carbon-neutral forestry. In respect to the current legal fleet (64, 68 and 76 t), the use of 76 t vehicles increased energy efficiency most effectively, by 50%, compared to 64 t vehicles in the best region. Currently, transportation service providers and their clients are using ERP information to tailor their energy efficiency metric and to implement them locally in the transportation monitoring systems. A three-year sensitivity analysis demonstrates that the technological development of management tools to improve transportation efficiency is essential for larger and heavier vehicle utilization. In the future, the whole wood supply chain from forest to factory will also be optimized with respect to energy efficiency criterion to ensure a low-carbon forest industry.
引用
收藏
页码:1 / 17
页数:17
相关论文
共 50 条
  • [21] Data-driven modeling of CO2 emission-allowance compensation for wood-purchasing optimization toward carbon-neutral forest industry
    Palander, Teijo
    Takkinen, Jari
    [J]. OPTIMIZATION AND ENGINEERING, 2022, 23 (04) : 2091 - 2110
  • [22] y An Efficient Direct Ammonia Fuel Cell for Affordable Carbon-Neutral Transportation
    Zhao, Yun
    Setzler, Brian P.
    Wang, Junhua
    Nash, Jared
    Wang, Teng
    Xu, Bingjun
    Yan, Yushan
    [J]. JOULE, 2019, 3 (10) : 2472 - 2484
  • [23] Toward a Carbon-Neutral State: A Carbon-Energy-Water Nexus Perspective of China's Coal Power Industry
    Xie, Yachen
    Qi, Jiaguo
    Zhang, Rui
    Jiao, Xiaomiao
    Shirkey, Gabriela
    Ren, Shihua
    [J]. ENERGIES, 2022, 15 (12)
  • [24] Provincial energy and environmental efficiency analysis of Chinese transportation industry with the fixed-sum carbon emission constraint
    Li, Feng
    Ye, Shiqi
    Chevallier, Julien
    Zhang, Jinyu
    Kou, Gang
    [J]. COMPUTERS & INDUSTRIAL ENGINEERING, 2023, 182
  • [25] Biomass metallurgy: A sustainable and green path to a carbon-neutral metallurgical industry
    Wei, Rufei
    Meng, Kangzheng
    Long, Hongming
    Xu, ChunbaoCharles
    [J]. RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2024, 199
  • [26] ENERGY STORAGE DuPont aids quest for carbon-neutral lithium
    Scott, Alex
    [J]. CHEMICAL & ENGINEERING NEWS, 2021, 99 (07) : 14 - 14
  • [27] Energy Efficiency in Buildings, Industry and Transportation
    Milovanovic, Dobrica
    [J]. PROCEEDINGS OF THE SIXTH GLOBAL CONFERENCE ON POWER CONTROL AND OPTIMIZATION, 2012, 1499 : 71 - 82
  • [28] The role of metal–organic frameworks in a carbon-neutral energy cycle
    Alexander Schoedel
    Zhe Ji
    Omar M. Yaghi
    [J]. Nature Energy, 1 (4)
  • [29] A Behavioral Economic Analysis of Carbon-Neutral Home Energy Enrollment
    Gelino, Brett W.
    Kaplan, Brent A.
    Reed, Derek D.
    [J]. BEHAVIOR AND SOCIAL ISSUES, 2023, 32 (02) : 517 - 533
  • [30] A Behavioral Economic Analysis of Carbon-Neutral Home Energy Enrollment
    Brett W. Gelino
    Brent A. Kaplan
    Derek D. Reed
    [J]. Behavior and Social Issues, 2023, 32 : 517 - 533