Urban tree growth and their dependency on infiltration rates in structural soil and structural cells

被引:17
作者
Ow, Lai Fern [1 ]
Ghosh, Subhadip [1 ]
机构
[1] Natl Pk Board, Ctr Urban Greenery & Ecol, Singapore Bot Gardens, 1 Cluny Rd, Singapore 259569, Singapore
关键词
Tree biomass; Root characteristics; Sap flow; Urban forest solutions; Best management practices; SAP FLOW; TEMPERATURE; TRANSPIRATION; RESPONSES; QUALITY; MAIZE; YIELD;
D O I
10.1016/j.ufug.2017.06.005
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Expanding tree canopies can be difficult to achieve in built environments because urban land is costly and urban soil inhospitable to vegetation so engineered planting systems offer a potentially valuable tool for achieving sustainable urban forests. Tree water uptake, performance and root distribution were assessed in systems of structural soil and structural cell. Structural soil relies on stone and soil, it is highly porous and designed to support tree root growth and possess pavement strength. The structural cell is made up of rigid structural units with 90% void space which is to be filled with soil. To evaluate tree performance under the conditions of fill and drain regimes in structural soil and structural cell, these two systems were subjected to three simulated infiltration rates. This study was conducted in April 2015 to April 2016 in the tropical equatorial environment of South East Asia. Infiltration rate affected both biomass accumulation and rooting depth. Species and substrate effect was significant for biomass and rooting characteristics but less prominent for transpiration. Biomass was greater for trees in structural cells, and Pouteria obovata was particularly sensitive to prolonged inundation. Rooting depth was always higher in the rapid infiltration indicating the negative effects inundation had on this parameter. Root system in the structural cell was deeper while those in the structural soil were wider. Samanea saman had better adapted to the drain and fill regimes, and this was despite Pouteria obovata being a coastal species and was expected to be flood tolerant. Species and substrate effect was weak (R-2 ranging from 0.20 to 0.28) but moderate drainage consistently led to higher transpiration. We conclude that structural soil and structural cell are potential solutions and provide a tool to overcome suboptimal urban growing conditions. The application of these solutions will allow for seamless integration of greenery with urban infrastructure.
引用
收藏
页码:41 / 47
页数:7
相关论文
共 45 条
  • [31] Applying integrated urban water management concepts: A review of Australian experience
    Mitchell, VG
    [J]. ENVIRONMENTAL MANAGEMENT, 2006, 37 (05) : 589 - 605
  • [32] Tree and forest effects on air quality and human health in the United States
    Nowak, David J.
    Hirabayashi, Satoshi
    Bodine, Allison
    Greenfield, Eric
    [J]. ENVIRONMENTAL POLLUTION, 2014, 193 : 119 - 129
  • [33] Whole tree xylem sap flow responses to multiple environmental variables in a wet tropical forest
    O'Brien, JJ
    Oberbauer, SF
    Clark, DB
    [J]. PLANT CELL AND ENVIRONMENT, 2004, 27 (05) : 551 - 567
  • [34] High water level impedes the adaptation of Polygonum hydropiper to deep burial: Responses of biomass allocation and root morphology
    Pan, Ying
    Xie, Yong H.
    Deng, Zheng M.
    Tang, Yue
    Pan, Dong D.
    [J]. SCIENTIFIC REPORTS, 2014, 4
  • [35] Transpiration of urban forests in the Los Angeles metropolitan area
    Pataki, Diane E.
    McCarthy, Heather R.
    Litvak, Elizaveta
    Pincetl, Stephanie
    [J]. ECOLOGICAL APPLICATIONS, 2011, 21 (03) : 661 - 677
  • [36] Streams in the urban landscape
    Paul, MJ
    Meyer, JL
    [J]. ANNUAL REVIEW OF ECOLOGY AND SYSTEMATICS, 2001, 32 : 333 - 365
  • [37] A systematic quantitative review of urban tree benefits, costs, and assessment methods across cities in different climatic zones
    Roy, Sudipto
    Byrne, Jason
    Pickering, Catherine
    [J]. URBAN FORESTRY & URBAN GREENING, 2012, 11 (04) : 351 - 363
  • [38] Gravimetric phenotyping of whole plant transpiration responses to atmospheric vapour pressure deficit identifies genotypic variation in water use efficiency
    Ryan, Annette C.
    Dodd, Ian C.
    Rothwell, Shane A.
    Jones, Ros
    Tardieu, Francois
    Draye, Xavier
    Davies, William J.
    [J]. PLANT SCIENCE, 2016, 251 : 101 - 109
  • [39] Effect of soil temperature on phenology, canopy development, biomass and yield of maize in a cool-temperate climate
    Stone, PJ
    Sorensen, IB
    Jamieson, PD
    [J]. FIELD CROPS RESEARCH, 1999, 63 (02) : 169 - 178
  • [40] Impact of urban sprawl on water quality in eastern Massachusetts, USA
    Tu, Jun
    Xia, Zong-Guo
    Clarke, Keith C.
    Frei, Allan
    [J]. ENVIRONMENTAL MANAGEMENT, 2007, 40 (02) : 183 - 200