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A review on the leaf area index (LAI) in vertical greening systems

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BUILDING AND ENVIRONMENT
卷 229, 期 -, 页码 -

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.buildenv.2022.109926

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Leaf area index (LAI); Vertical greening systems (VGS); Indirect LAI monitoring Techniques; Living wall systems (LWS); Green facades (GF); LAI-Sampling method

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The leaf area index (LAI) is a crucial parameter in Vertical Greening Systems (VGS) that quantifies the total leaf area in the canopy and determines the co-benefits of VGS. However, there is limited understanding of the LAI parameter itself, its determination process, and the monitoring techniques for continuous LAI monitoring in VGS. This paper focuses on the LAI of VGS and its monitoring techniques, providing an overview of existing techniques and proposing guidelines for standardized LAI determination and reporting in VGS.
The leaf area index (LAI) is a key dynamic parameter in Vertical Greening Systems (VGS). It quantifies the total amount of leaf area in the canopy and largely determines the extent of co-benefits of VGS. Whereas many studies on VGS discuss the importance of the LAI, only few elaborate on the parameter itself, how it is determined and what the current limitations are in VGS. Moreover, although there is scientific consensus on the importance of LAI in VGS, specific non-destructive monitoring techniques for continuous LAI monitoring appear to be absent, which results in limited overall data on the LAI of VGS under different spatial and temporal conditions and problems in quantifying the benefits of VGS in practice. To fill these gaps, this paper specifically focuses on the LAI of VGS and its monitoring techniques. An overview of existing LAI monitoring techniques in the field of VGS is presented. To arrive at dedicated techniques, this is complemented by a thorough analysis of LAI monitoring techniques used in other research fields, e.g. agriculture and forestry. It is established that two indirect techniques for LAI monitoring are currently available in the VGS sector, but a proper standardized sampling methodology currently lacks. Monitoring techniques used in other sectors offer opportunities for developing dedicated monitoring methods for VGS, but require further research due to the specific features of VGS systems. Furthermore, guidelines are proposed for a more standardized LAI determination of reporting of LAI values in VGS.

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