首页> 外文期刊>The International Journal of Life Cycle Assessment >Assessment of land use impacts on soil ecological functions:development of spatially differentiated characterization factors within a Canadian context
【24h】

Assessment of land use impacts on soil ecological functions:development of spatially differentiated characterization factors within a Canadian context

机译:土地利用对土壤生态功能的影响评估:在加拿大范围内发展空间差异特征因子

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose Among other regional impact categories in LCA, land use still lacks a suitable assessment method regarding the least developed "soil ecological quality" impact pathway. The goals of this study are to scope the framework addressing soil ecological functions and to improve the development of regionalized characterization factors (CFs). A spatially explicit approach was developed and illustrated for the Canadian context using three different regional scales and for which the extent of spatial variability was assessed. Materials and methods A model framework based on the multifunctional character of soil and the ecosystem services defined by the Millennium Ecosystem Assessment is suggested. This framework includes land use impacts on soil ecological quality evaluated regarding the change in soil capacity to fulfill a range of soil ecological functions. Four impact indicators, namely erosion resistance, ground-water recharge, mechanical, and physicochemical filtration, proposed by the functional method of Baitz (2002), were used to assess three major degraded regulating services: erosion regulation, freshwater regulation, and water purification. Spatially differentiated CFs were calculated based on the principles proposed by the UNEP/SETAC Life Cycle Initiative for two Canadian spatial models (15 ecozones, 193 ecoregions) along with a non-spatial one (one generic). Seven representative land use types were tested. Results and discussion Using the ecozone-based scale, an overall result comparison between the non-spatial and spatial models indicates significant differences between ranges across land use types and results up to four times larger than what the generic scale can capture. This highlights the importance of introducing a regionalized assessment. When considering the impacts from a specific land use type, such as urban land use, generic CFs fail to adequately represent spatial CFs because they tend to be highly dependent on the biogeographical conditions of the location. When comparing all three resolution scales, CF results calculated using the ecoregions spatial scale generally show a larger spread across each land use type. Interesting variations and extreme scenarios are revealed which could not be observed using a coarser scale-based model such as the ecozone resolution scheme. Conclusions This work demonstrates the accomplishment of developing spatially differentiated CFs addressing impacts of different land use types on soil ecological functions. For a large territorial area spreading over many biomes, such as Canada, accounting for ecological unit boundaries proves to be necessary since the generic scale is not sufficiently representative. An evaluation of the extent of spatial differentiation emphasized the influence on the variability of regionalized CFs. Characterization factors • Ecosystem services; Land use; Life Cycle Impact Assessment (LCIA);
机译:目的在LCA中的其他区域影响类别中,土地使用仍缺乏关于最不发达的“土壤生态质量”影响途径的合适评估方法。这项研究的目的是确定解决土壤生态功能的框架范围,并改善区域化特征因子(CFs)的发展。针对加拿大的情况,开发了一种空间显式的方法,并使用三种不同的区域尺度进行了说明,并对其空间变异的程度进行了评估。材料和方法提出了一个基于千年生态系统评估定义的土壤和生态系统服务多功能性的模型框架。该框架包括土地利用对土壤生态质量的影响,评估其土壤能力变化以实现一系列土壤生态功能。根据Baitz(2002)的功能方法提出的四个影响指标,即抗侵蚀性,地下水补给,机械和物理化学过滤,被用来评估三种主要的降级调节服务:侵蚀调节,淡水调节和水净化。根据UNEP / SETAC生命周期倡议提出的原则,针对两个加拿大空间模型(15个生态区,193个生态区)以及一个非空间模型(一个通用),计算出差异化的CF。测试了七个代表性的土地利用类型。结果与讨论使用基于生态区的量表,非空间模型与空间模型之间的总体结果比较表明,土地利用类型之间的范围之间存在显着差异,其结果最多可比通用量表所捕获的结果大四倍。这突出了引入区域评估的重要性。考虑到特定土地使用类型(例如城市土地使用)的影响时,通用CF无法充分表示空间CF,因为它们通常高度依赖于该地区的生物地理条件。当比较所有三个分辨率尺度时,使用生态区域空间尺度计算的CF结果通常显示出每种土地利用类型的较大分布。揭示了有趣的变化和极端情况,使用像生态区解决方案这样的粗尺度模型无法观察到这些变化。结论这项工作证明了开发针对不同土地利用类型对土壤生态功能影响的空间差异CFs的成就。对于分布在许多生物群落上的大片领土,例如加拿大,由于通用规模不足以代表生态系统,因此有必要考虑生态单元边界。对空间差异程度的评估强调了对区域CFs变异性的影响。特征因素•生态系统服务;土地利用;生命周期影响评估(LCIA);

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号