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第 1 期 孙一帆 等:生态功能转化导向下的城乡园林绿化高质量发展路径 9
规划与管理的全过程;提升园林绿化建设互动式体 E,et al. Exposure to airborne bacteria depends upon vertical
验功能,增强市民参与园林绿化管理的便捷性与主 stratification and vegetation complexity[J/OL]. Scientific re‐
动性,将形成覆盖园林绿化规划、建设、管护、监测、 ports,2021,11:9516[2025-09-14].https://doi.org/10.1038/
s41598-021-89065-y.
服务全流程的智慧化解决方案。
[5] HERATH P,BAI X M. Benefits and co-benefits of urban
4 讨 论 green infrastructure for sustainable cities:six current and
emerging themes[J]. Sustainability science,2024,19(3):
城乡区域社会经济的发展与自然系统相互依 1039-1063.
赖,城乡园林绿化能够为居民提供多种生态系统服 [6] SILVA V H D,GOMES I N,BOSENBECKER C,et al.One
务,从而促进城乡的可持续发展。面对日益严峻的 for all,all for one?pollinator groups differ in diversity and spe‐
cialization of interactions across urban green spaces[J/OL].
城乡生态环境挑战,推动城乡园林绿化向高质量发
Landscape and urban planning,2025,259:105361[2025-09-
展转型已成为核心命题。因此,城乡园林绿化的建
14].https://doi.org/10.1016/j.landurbplan.2025.105361.
设与管理将建立于发展最优系统等相关理论,否则
[7] HALECKI W,STACHURA T,FUDAŁA W,et al.Assess‐
其产出将比预期小得多,尤其对经济欠发达地区更 ment and planning of green spaces in urban parks:a review[J/
为明显。因此,维护城乡绿地生态系统服务的完整 OL]. Sustainable cities and society,2023,88:104280[2025-
性将成为自然系统可持续管理中的主要挑战。本研 09-14].https://doi.org/10.1016/j.scs.2022.104280.
究采用 Citespace 文献计量和知识图谱分析,系统梳 [8] LIU O Y,RUSSO A. Assessing the contribution of urban
green spaces in green infrastructure strategy planning for urban
理了城乡园林绿化生态功能转化的关键研究焦点,
ecosystem conditions and services[J/OL]. Sustainable cities
明确了以生态价值外释与人类福祉增进为核心的综
and society,2021,68:102772[2025-09-14].https://doi.org/
合性体系,构建了“功能机制-传导路径-福祉效益”理 10.1016/j.scs.2021.102772.
论框架,揭示了城乡园林绿化从生态功能到人类福 [9] FERZOCO I M C,MCCAULEY S J.Novel habitats for biodi‐
祉的价值转化全过程,从城市绿地生态系统环境友 versity? a systematic review and meta-analysis of freshwater
好直接关联的空气污染、热环境、生物种间关系等方 biodiversity in stormwater management ponds[J/OL].Science
of the total environment,2024,942:173467[2025-09-14].
面,建立多功能协同的城市园林绿化高质量发展共
https://doi.org/10.1016/j.scitotenv.2024.173467.
适性建设模式,将着力深化福祉效益转化机制,即推
[10] SAGRELIUS P Ö,BLECKEN G,HEDSTRÖM A,et al.
动人类福祉从基础保障向感知增益的深层实现,促 Sustainability performance of bioretention systems with vari‐
进城市园林绿化从绿量向绿质、融绿、人本转变,为 ous designs[J/OL]. Journal of environmental management,
城乡园林绿化的高质量建设形成有力支撑。最后, 2023,340:117949[2025-09-14]. https://doi. org/10.1016/j.
建立“规划引领-过程监测-系统评估-动态管理”的实 jenvman.2023.117949.
[11] PILLE L,SÄUMEL I.The water-sensitive city meets biodi‐
施路径,可为生态价值转化导向下的城乡园林绿化
versity:habitat services of rain water management measures in
高质量发展提供理论参考和实践指引。
highly urbanized landscapes[J/OL]. Ecology and society,
2021,26(2):23[2025-09-14]. https://doi. org/10.5751/ES-
参考文献 References
12386-260223.
[1] COHEN-SHACHAM E,WALTERS G,JANZEN C,et al. [12] GODDARD M A,DOUGILL A J,BENTON T G. Scaling
Nature-based solutions to address global societal challenges up from gardens:biodiversity conservation in urban environ‐
[M].Gland,Switzerland:International Union for Conservation ments[J].Trends in ecology & evolution,2010,25(2):90-98.
of Nature,2016. [13] TZOULAS K,KORPELA K,VENN S,et al.Promoting eco‐
[2] VENTER Z S,HASSANI A,STANGE E,et al.Reassessing system and human health in urban areas using green infrastruc‐
the role of urban green space in air pollution control[J/OL]. ture:a literature review[J]. Landscape and urban planning,
PANS,2024,121(6):e2306200121[2025-09-14]. https:// 2007,81(3):167-178.
doi.org/10.1073/pnas.2306200121. [14] GROTE R,SAMSON R,ALONSO R,et al.Functional traits
[3] ZHANG X G,HUANG H S,TU K,et al.Effects of plant com‐ of urban trees:air pollution mitigation potential[J].Frontiers in
munity structural characteristics on carbon sequestration in ur‐ ecology and the environment,2016,14(10):543-550.
ban green spaces[J/OL]. Scientific reports,2024,14:7382 [15] ARMSON D,STRINGER P,ENNOS A R. The effect of
[2025-09-14].https://doi.org/10.1038/s41598-024-57789-2. street trees and amenity grass on urban surface water runoff in
[4] ROBINSON J M,CANDO-DUMANCELA C,ANTWIS R Manchester,UK[J].Urban forestry & urban greening,2013,

