葛根的修复潜力[j]。农田土壤镉、砷、铅污染研究[j]。

Q2 Environmental Science
Xiao-Bing Lin, Jian-Rong He, Duo-Ji Wu, Juan Yao, Li-Jun Zhou, Jun Peng, Bin-Qiang Wang, Shao-Lang He, Shang-Shu Huang, Lin Wu, Jian-Fu Wu
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引用次数: 0

摘要

研究了葛根的生长、富集特性及其修复潜力。在不同试验田的大型田间试验中,研究了“花叶革”和“甘葛尔浩”对镉、砷、铅污染土壤的修复潜力。结果表明:汤姆松全株生物量(干重)为4.58 ~ 12.45 t·hm-2,“花叶阁”的生物量高于“干葛尔号”。汤姆逊不同部位Cd、As、Pb含量分别为1.63 ~ 17.04、0.15 ~ 20.97、0.40 ~ 231.12 mg·kg-1。thomsonii对Cd、As和Pb的累积量分别为14.01 ~ 109.06、4.10 ~ 27.59和49.97 ~ 305.69 g·hm-2。对Cd、As和Pb的去除率分别为0.40% ~ 2.57%、0.02% ~ 0.08%和0.06% ~ 0.09%。thomsonii对Cd、As和Pb的生物富集因子分别为0.09 ~ 13.12、0.01 ~ 0.38和0.01 ~ 0.76,易位因子分别为0.50 ~ 4.72、1.27 ~ 15.89和1.19 ~ 35.68。其中,“花叶歌”主藤中Cd、As和Pb的含量及As的积累和去除率均显著高于“甘葛二好”(P <;0.05)。生物量主要集中在块茎中,重金属含量和积累主要集中在茎叶中。相关分析表明,土壤Cd含量与汤姆松主藤和叶片Cd含量呈极显著正相关(P <;0.05)。土壤Pb含量与汤姆松各部位Pb含量呈显著正相关(p < 0.05)。除湘东地区的“花叶阁”外,商品部分(葛)重金属含量均低于药用植物标准限量。综上所述,汤姆松对Cd、As和Pb具有较强的吸收和转运能力。选择“花叶哥”作为修复重度cd复合污染土壤的潜在富集植物源。此外,还选择“葛尔豪”作为一种有潜力的富集植物,用于修复轻度和中度镉污染土壤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Remediation Potential of Pueraria thomsonii Benth. on Farmland Soil Contaminated by Cd, As, and Pb].

This study investigated the growth, enrichment characteristics, and remediation potential of Pueraria thomsonii Benth. ("Hua ye ge" and "Gan ge er hao") on cadmium (Cd), arsenic (As), and lead (Pb)-contaminated soils, the remediation potential of P. thomsonii in a large field experiment under different trial fields. The results showed that the whole plant biomass (dry weight) of P. thomsonii was 4.58-12.45 t·hm-2, and the biomass of "Hua ye ge" was higher than that of "Gan ge er hao." The contents of Cd, As, and Pb in different parts of P. thomsonii were 1.63-17.04, 0.15-20.97, and 0.40-231.12 mg·kg-1, respectively. The accumulations of Cd, As, and Pb of P. thomsonii were 14.01-109.06, 4.10-27.59, and 49.97-305.69 g·hm-2, respectively. The removal rates of Cd, As, and Pb of P. thomsonii were 0.40%-2.57%, 0.02%-0.08%, and 0.06%-0.09%, respectively. The bioconcentration factors of P. thomsonii for Cd, As, and Pb were 0.09-13.12, 0.01-0.38, and 0.01-0.76, respectively, and the translocation factors were 0.50-4.72, 1.27-15.89, and 1.19-35.68, respectively. Among them, the contents of Cd, As, and Pb in the main vine and the As accumulation and removal rate of "Hua ye ge" were all significantly higher than that of "Gan ge er hao" (P < 0.05). The biomass was mainly concentrated in the tuber, while the heavy metal content and accumulation was mainly concentrated in the stem and leaf. Correlation analysis showed a significant positive correlation between soil Cd content and Cd content in the main vine and leaf of P. thomsoniiP < 0.05). A significant positive correlation was observed between soil Pb content and Pb content in all parts of P. thomsoniiP<0.05). Except for "Hua ye ge" in Xiangdong, the content of heavy metals in the commercial P. thomsonii portion (arrowroot) was lower than the standard limit for medicinal plants. In summary, the P. thomsonii showed strong absorption and transport capacity for Cd, As, and Pb. "Hua ye ge" was selected as a potential enrichment plant source for the remediation of severe Cd-based combined contaminated soil. Additionally, "Gan ge er hao" (used as Pueraria powder) was selected as a potential enrichment plant for the remediation of mild and moderate Cd-contaminated soil.

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环境科学
环境科学 Environmental Science-Environmental Science (all)
CiteScore
4.40
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0.00%
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15329
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