Science and Engineering Faculty, Queensland University of Technology (QUT), GPO Box 2434, Brisbane, Qld 4001, Australia.
Environ Pollut. 2018 Mar;234:480-486. doi: 10.1016/j.envpol.2017.11.096. Epub 2017 Dec 21.
Changes in land use have a direct impact on receiving water quality. Effective mitigation strategies require the accurate prediction of water quality in order to enhance community well-being and ecosystem health. The research study employed Bayesian Network modelling to investigate the validity of using cross-sectional and longitudinal data on water quality and land use for predicting water quality in a mixed use catchment and the role it plays in the generation of blue-green algae in the receiving marine environment. Bayesian Network modelling showed that cross-sectional and longitudinal data analyses generate contrasting information about the influence of different land uses on surface water pollution. The modelling outcomes highlighted the lack of reliability in cross-sectional data analysis, based on the indication of spurious relationships between water quality and land use. On the other hand, the longitudinal data analysis, which accounted for changes in water quality and land use over a ten-year period, informed how catchment water quality varies in response to temporal changes in land use. The longitudinal data analysis further revealed that the types of anthropogenic activities have a more significant influence on pollutant generation than the change in the area extent of different land uses over time. Therefore, the careful interpretation of the findings derived solely from cross-sectional data analysis is important in the design of long-term strategies for pollution mitigation.
土地利用变化对受纳水体水质有直接影响。为了提高社区福祉和生态系统健康,需要采取有效的缓解策略来准确预测水质。本研究采用贝叶斯网络模型来研究使用水质和土地利用的横断面和纵向数据来预测混合用途集水区水质的有效性,以及其在生成受纳海洋环境中蓝绿藻中的作用。贝叶斯网络模型表明,横断面和纵向数据分析生成了关于不同土地利用对地表水污染影响的相互矛盾的信息。基于水质和土地利用之间存在虚假关系的指示,模型结果突出了横断面数据分析缺乏可靠性。另一方面,纵向数据分析考虑了十年间水质和土地利用的变化,说明了集水区水质如何响应土地利用的时间变化而变化。纵向数据分析还表明,与不同土地利用类型随时间的面积变化相比,人为活动的类型对污染物生成的影响更为显著。因此,在设计长期污染缓解策略时,需要对仅基于横断面数据分析得出的结果进行仔细解释。