Yin Xinhan, Feng Lei, Gong Yi
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing University, Chongqing 400044, China.
Toxics. 2023 Apr 10;11(4):360. doi: 10.3390/toxics11040360.
Ornamental plants such as floriculture and nurseries, have become increasingly popular, but their growth relies heavily on the use of many different types of pesticides. The widespread and inefficient use of these pesticides causes environmental pollution and damage to non-target organisms. Despite these impacts, there has been little research conducted on potential agrochemical pollution in the ornamental plant industry. To address this gap, a life cycle assessment (LCA) was conducted to evaluate the pesticide-related freshwater ecotoxicity impact of the US ornamental plant industry in comparison to that of major field crops. The study analyzed 195 pesticide active ingredients used in 15 major ornamental plant and four field crops. Results showed that the freshwater ecotoxicity per area (PAF m d/ha) of ornamental plants was significantly higher than that of field crops due to the high pesticide intensity (kg/ha) and ecotoxicity of insecticides and fungicides used in floriculture and nurseries. To mitigate environmental stress, minimizing the use of highly toxic pesticides is recommended. A ban on low-dose, high-toxicity pesticides could reduce pesticide-driven ecotoxicity by 34% and 49% for floriculture and nursery plants, respectively. This study is among the first to quantify the pesticide-driven ecotoxicity impacts of horticultural ornamental plants and proposes feasible ways to reduce these impacts, thus making the world more sustainable while still preserving its beauty.
花卉种植和苗圃等观赏植物越来越受欢迎,但其生长严重依赖多种不同类型农药的使用。这些农药的广泛且低效使用导致环境污染以及对非目标生物的损害。尽管有这些影响,但针对观赏植物产业潜在的农用化学品污染的研究却很少。为填补这一空白,开展了一项生命周期评估(LCA),以评估美国观赏植物产业与主要大田作物相比与农药相关的淡水生态毒性影响。该研究分析了15种主要观赏植物和4种大田作物中使用的195种农药活性成分。结果表明,由于花卉种植和苗圃中使用的杀虫剂和杀菌剂的高农药强度(千克/公顷)和生态毒性,观赏植物每面积的淡水生态毒性(PAF m d/公顷)显著高于大田作物。为减轻环境压力,建议尽量减少高毒农药的使用。禁止低剂量、高毒性农药可分别使花卉种植和苗圃植物因农药导致的生态毒性降低34%和49%。本研究是首批量化园艺观赏植物农药驱动的生态毒性影响并提出减少这些影响的可行方法的研究之一,从而在保持世界美丽的同时使其更具可持续性。