生姜对铅和废发动机油污染土壤中栽培的番茄果实的生长指数和铅生物累积的影响

A. A. Olaniyi, Ezeonu Chukwuma Stephen, Umaru Isaac John
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摘要

本研究对尼日利亚塔拉巴州 Wukari 不同土壤样本(50 毫克/千克模拟污染和非模拟污染)中番茄种植的铅浓度进行了研究,标记为 A-H 组。将两周大的番茄幼苗移植到三重土壤盆中,分别标记为:A:正常土壤;B:生姜处理(阳性对照);三个阴性对照;C:铅污染;D:废发动机油(SEO)污染;E:含铅+SEO土壤;F:铅污染+生姜处理;G:SEO污染+生姜处理;H:铅+SEO污染+生姜处理。随机测量每盆 36 个番茄果实的长度、周长和重量。还评估了各组番茄果实对铅的吸收和生物累积情况。E 组番茄果实的重量最高(15.41±7.81 克),而 H 组番茄果实的重量最低(12.02±6.69 克)。D 组番茄果实的平均周长最长(5.61±2.66 厘米),最高(6.15±2.93 厘米)。相反,H 组番茄平均果实最短(4.19±2.45 厘米),果实周长最小(4.49±2.34 厘米)。E 组番茄中铅的生物累积量最高,为 1.79±0.47ppm,而 A 组:普通土壤中铅的生物累积量最低,平均为 0.68±0.13ppm。所有组的铅浓度都超过了世界卫生组织/粮农组织标准规定的允许浓度(0.01 ppm)以及欧盟规定的最大允许浓度 0.02 ppm 和美国环保局规定的最大允许浓度 0.05 ppm,这表明存在公共卫生问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Ginger on Growth Indices and Pb Bioaccumulation of Tomato Fruits Cultivated in Lead and Spent Engine Oil-Contaminated Soils
Good soil is needed for public health and this research studies lead concentrations of tomato planted in different soil samples in Wukari, Taraba state, Nigeria (with 50mg/kg simulated and non-simulated contamination) labelled groups A-H. Two weeks-old tomato seedlings were transplanted to triplicates of soils pots labelled A: normal soil, B:Ginger treated (positive control), three negative controls; C:lead contaminated; D Spent Engine Oil (SEO) contaminated, and E:Pb+SEO containing soil, F:Lead contaminated+ginger treatment, G: SEO contaminated+ginger treatment, H:lead+SEO contaminated+ginger treatment. The lengths, circumferences and weights of 36 tomato fruits per plant pot were measured at random. Lead uptake and bioaccumulation were also assessed in tomato fruits derived from each group. Tomato fruits in group E weighed highest (15.41±7.81g) while those in group H had the lowest weight (12.02±6.69g). The longest and the highest average tomato fruit circumference were recorded in group D (5.61±2.66cm and 6.15±2.93cm) respectively. Conversely, group H presented the shortest mean tomato fruits with 4.19±2.45cm and lowest fruit circumference (4.49±2.34cm). Bioaccumulation of lead was highest in tomatoes of group E with 1.79±0.47ppm and the lowest was derived from group A:normal soil with 0.68±0.13ppm on average each. The lead concentrations of all groups exceeded permissible limits specified in WHO/FAO Standards (0.01 ppm) as well as the maximum allowable concentration of 0.02 ppm by EU and 0.05 ppm limit set by USEPA suggesting a public health concern.
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