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加纳西部地区以地下水和城市垃圾为主的溪流灌溉的叶菜类和非叶菜类蔬菜中重金属的质量评估及潜在健康风险

Quality assessment and potential health risk of heavy metals in leafy and non-leafy vegetables irrigated with groundwater and municipal-waste-dominated stream in the Western Region, Ghana.

作者信息

Affum Andrews Obeng, Osae Shiloh Dede, Kwaansa-Ansah Edward Ebow, Miyittah Michael K

机构信息

Nuclear Chemistry and Environmental Research Centre, National Chemistry and Environmental Research Centre, Ghana Atomic Energy Commission, P.O. Box LG 80, Legon, Accra, Ghana.

Chemistry Department, Kwame Nkrumah University of Science and Technology, Kumasi, Ghana.

出版信息

Heliyon. 2020 Dec 29;6(12):e05829. doi: 10.1016/j.heliyon.2020.e05829. eCollection 2020 Dec.

Abstract

Vegetables cultivated in soil irrigated with untreated groundwater and municipal-waste-dominated (MWD) stream can elevate the concentration of heavy metals (Cd, Fe, Zn, Hg, Cr, and Ni) in edible parts of the crop, affecting food safety and public health worldwide. This study assessed the quality, sources, and distribution of heavy metals in surface soils, MWD stream and groundwater, and edible tissues of leafy and non-leafy vegetables from a major urban farm in the Sekondi-Takoradi metropolis, Ghana. Human health risk due to exposure to the metals in frequently consumed vegetables were investigated. Indigenous leafy vegetables ( and ), exotic leafy vegetables (, , and ), and non-leafy vegetables (, , , and ) were collected from the urban farm. The mean concentration of Cd, Hg, and Fe ranged from 0.008 - 0.027, 0.001-0.013, and 4.517-36.178 mg/kg fw in edible parts of non-leafy vegetables, respectively and 0.011-0.035, 0.002-0.011, and 3.617-13.695 mg/kg fw in exotic or indigenous leafy vegetables. The vegetables were less impacted with the metals if compared to similar vegetables produced from other urban farms, locally and in some countries in Africa, Asia, and Europe. Water resource on the farm were not suitable for vegetable crop irrigation since mean concentration of (200 cfu/mL), Hg (0.009 mg/L), and Cd (0.019 mg/L) in the MWD stream and 80 % of the groundwater sources exceeded the safe limits recommended by the Food and Agriculture Organization. Geo-accumulation index for each metal in soil was ≤0, however, enrichment factor indicated a high anthropic enriched soil for Cr and Ni. Principal component analysis-multiple linear regression of the metals in soil identified mixed household waste/fertilizer, fertilizer, and crustal material as main sources for the heavy metal load in soil for which geogenic sources accounted for 74.3 %. Preferentially, Cd and Hg accumulated and . The estimated daily intake of each metal in the vegetables were below local and international daily dietary intake levels. At the 95 percentile concentration of each metal, target hazard quotient and the hazard index was <1 for adult male or female who consume the vegetables. Finally, appropriate agri-horticultural practices must be enforced to mitigate Cd, Ni, Cr, and Hg accumulation in the soil-vegetable system since the metals have profound adverse effect on human health.

摘要

用未经处理的地下水和以城市垃圾为主的溪流灌溉土壤中种植的蔬菜,会提高作物可食用部分的重金属(镉、铁、锌、汞、铬和镍)浓度,影响全球食品安全和公众健康。本研究评估了加纳塞康第 - 塔科拉迪大都市一个主要城市农场的表层土壤、以城市垃圾为主的溪流、地下水以及叶菜类和非叶菜类蔬菜可食用组织中重金属的质量、来源和分布。调查了因经常食用蔬菜而接触这些金属对人体健康造成的风险。从城市农场采集了本土叶菜类蔬菜(和)、外来叶菜类蔬菜(、、和)以及非叶菜类蔬菜(、、、和)。非叶菜类蔬菜可食用部分中镉、汞和铁的平均浓度分别为0.008 - 0.027、0.001 - 0.013和4.517 - 36.178毫克/千克鲜重,外来或本土叶菜类蔬菜中分别为0.011 - 0.035、0.002 - 0.011和3.617 - 13.695毫克/千克鲜重。与非洲、亚洲和欧洲一些国家以及当地其他城市农场生产的类似蔬菜相比,这些蔬菜受金属影响较小。该农场的水资源不适合蔬菜作物灌溉,因为以城市垃圾为主的溪流中大肠杆菌(200菌落形成单位/毫升)、汞(0.009毫克/升)和镉(0.019毫克/升)的平均浓度以及80%的地下水源超过了联合国粮食及农业组织推荐的安全限值。土壤中每种金属的地累积指数≤0,然而,富集因子表明铬和镍的土壤受人类活动影响高度富集。土壤中金属的主成分分析 - 多元线性回归确定混合家庭垃圾/肥料、肥料和地壳物质是土壤中重金属负荷的主要来源,其中地质来源占74.3%。优先地,镉和汞在和中积累。蔬菜中每种金属的估计每日摄入量低于当地和国际每日膳食摄入量水平。在每种金属的第95百分位数浓度下,食用这些蔬菜的成年男性或女性的目标危害商和危害指数<1。最后,必须实施适当的农业园艺措施,以减轻土壤 - 蔬菜系统中镉、镍、铬和汞的积累,因为这些金属对人体健康有深远的不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13cb/7785835/2357123d61cb/gr1.jpg

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