首页> 外文期刊>Journal of Environmental Science and Health, Part B: Pesticides, Food Contaminants, and Agricultural Wastes >Ascorbic acid, β-carotene, sugars, phenols, and heavy metals in sweet potatoes grown in soil fertilized with municipal sewage sludge
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Ascorbic acid, β-carotene, sugars, phenols, and heavy metals in sweet potatoes grown in soil fertilized with municipal sewage sludge

机译:在用市政污水污泥施肥的土壤中生长的甘薯中的抗坏血酸,β-胡萝卜素,糖,酚和重金属

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Municipal sewage sludge (MSS) used for land farming typically contains heavy metals that might impact crop quality and human health. A completely randomized experimental design with three treatments (six replicates each) was used to monitor the impact of mixing native soil with MSS or yard waste (YW) mixed with MSS (YW +MSS) on: i) sweet potato yield and quality; ii) concentration of seven heavy metals (Cd, Cr, Mo, Cu, Zn, Pb, and Ni) in sweet potato plant parts (edible roots, leaves, stem, and feeder roots); and iii) concentrations of ascorbic acid, total phenols, free sugars, and β-carotene in sweet potato edible roots at harvest. Soil samples were collected and analyzed for total and extractable metals using two extraction procedures, concentrated nitric acid (to extract total metals from soil) as well as CaCl2 solution (to extract soluble metals in soil that are available to plants), respectively. Elemental analyses were performed using inductively coupled plasma mass spectrometry (ICP-MS). Overall, plant available metals were greater in soils amended with MSS compared to control plots. Concentration of Pb was greater in YW than MSS amendments. Total concentrations of Pb, Ni, and Cr were greater in plants grown in MSS+YW treatments compared to control plants. MSS+YW treatments increased sweet potato yield, ascorbic acid, soluble sugars, and phenols in edible roots by 53, 28, 27, and 48%, respectively compared to plants grown in native soil. B-carotene concentration (157.5 μg g−1 fresh weight) was greater in the roots of plants grown in MSS compared to roots of plants grown in MSS+YW treatments (99.9 μg g−1 fresh weight). Concentration of heavy metals in MSS-amended soil and in sweet potato roots were below their respective permissible limits.
机译:用于陆地耕作的市政污水污泥(MSS)通常包含重金属,可能会影响作物质量和人体健康。采用三个处理(每个重复六次)的完全随机实验设计来监测将天然土壤与MSS或庭院垃圾(YW)与MSS混合(YW + MSS)混合对以下方面的影响: ii)甘薯植物部位(可食根,叶,茎和饲养者根)中七种重金属(镉,铬,钼,铜,锌,铅和镍)的浓度;和iii)收获时甘薯食用根中的抗坏血酸,总酚,游离糖和β-胡萝卜素的浓度。收集土壤样品并使用两种提取程序分析总金属和可提取金属:浓硝酸(从土壤中提取金属总量)以及CaCl 2 溶液(从土壤中提取可溶性金属)到植物)。使用电感耦合等离子体质谱法(ICP-MS)进行元素分析。总体而言,与对照样区相比,经MSS改良的土壤中植物的有效金属含量更高。 YW中的Pb浓度高于MSS修正案。与对照植物相比,MSS + YW处理中生长的植物中Pb,Ni和Cr的总浓度更高。与天然土壤中种植的植物相比,MSS + YW处理可食根中的甘薯产量,抗坏血酸,可溶性糖和酚含量分别增加了53%,28%,27%和48%。与MSS + YW处理(99.9μgg )中生长的植物的根部相比,MSS中生长的植物根部中的B-胡萝卜素浓度(157.5μgg â1鲜重)更大。 ‘1 新鲜体重)。 MSS改良土壤和甘薯根中的重金属含量均低于其各自允许的限值。

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