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Influence of Sedum Spectabile on Cd Concentration in Soil and Runoff
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作者 Hao Zhang Jie He +5 位作者 Chunyu Dong Haichan Yang Yu Han Sijing Sun Naiming Zhang Li Bao 《Journal of Geoscience and Environment Protection》 2022年第11期1-14,共14页
To research how planting Sedum spectabile affects Cd loss, in this experiment, the impact of soil pollution level (low, medium, high), rainfall intensity (30, 60, 90 mm&#183;h<sup>-1</sup>), and slope ... To research how planting Sedum spectabile affects Cd loss, in this experiment, the impact of soil pollution level (low, medium, high), rainfall intensity (30, 60, 90 mm&#183;h<sup>-1</sup>), and slope (6&#176;, 12&#176;, 18&#176;, 24&#176;) on Cd concentration in soil and runoff after planting Sedum spectabile are investigating using an indoor artificial rainfall simulation method. The results showed that: 1) The mean values of agricultural soils in the study area reached 38.52 and 1073.28 mg&#183;kg<sup>-1</sup> for Cd and Zn, respectively, which were 176.70 and 11.96 times higher than the background values of soil environment in southern Yunnan. 2) The decrease of total Cd in the soil after planting Sedum spectabile ranged from 17.52% to 31.09%, and the decrease of effective state Cd ranged from 14.36% to 21.81%. The higher the pollution level, the more significant the decrease of effective state Cd. 3) After 120 days of planting, the Cd concentration in runoff decreased between 22.40% and 89.23% compared to 15 days, with the more significant decrease in low Cd pollution, 90 mm&#183;h<sup>-1</sup> rainfall, medium Cd pollution, 30 mm&#183;h<sup>-1</sup> rainfall, and high Cd pollution, 90 mm&#183;h<sup>-1</sup>, reaching 81.14% - 87.43%, 82.21% - 89.00%, and 37.57% - 89.23%. 4) The pollution level and rainfall intensity were significantly and positively correlated with Cd concentration in runoff at 15 and 120 days of planting Sedum spectabile, with correlation coefficients of 0.498, 0.641, and 0.435, 0.464. Research shows that planting Sedum spectabile can reduce the Cd concentration in soil and runoff, which is essential for the remediation of Cd-contaminated farmland. 展开更多
关键词 Sedum spectabile Pollution Level Rainfall Intensity SLOPE CD
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锌胁迫对长药景天光合特性和保护酶活性的影响 被引量:7
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作者 王莹 刘晶 +2 位作者 纪善博 杨国亭 关旸 《生态学报》 CAS CSCD 北大核心 2016年第22期7422-7427,共6页
以园林植物长药景天(Hylotelephium spectabile)为研究对象,探讨了不同浓度Zn SO4胁迫对长药景天光合特性和保护酶活性的影响。结果表明:长药景天的质膜相对透性、丙二醛含量、过氧化物酶和过氧化氢酶活性随Zn SO4胁迫强度的增加而升高... 以园林植物长药景天(Hylotelephium spectabile)为研究对象,探讨了不同浓度Zn SO4胁迫对长药景天光合特性和保护酶活性的影响。结果表明:长药景天的质膜相对透性、丙二醛含量、过氧化物酶和过氧化氢酶活性随Zn SO4胁迫强度的增加而升高,净光合速率、胞间二氧化碳浓度、气孔导度和蒸腾速率则降低,叶绿素含量先升高后降低,超氧化物歧化酶活性变化不大。长药景天在抵御锌胁迫的过程中,通过保护酶活性的升高、气孔关闭降低水分流失等方式降低了锌的毒害作用,使其具有很强的抵抗锌胁迫的能力。 展开更多
关键词 长药景天(Hylotelephium spectabile) 锌胁迫 光合特性 保护酶活性
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Water-soluble chitosan promotes remediation of Pb-contaminated soil by Hylotelephium spectabile
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作者 Bingxin Guo Yiwei Zhang +8 位作者 Junxing Yang Tianwei Qian Junmei Guo Xiaona Liu Yuan Jiao Tongbin Chen Guodi Zheng Wenjun Li Fei Qi 《Frontiers of Environmental Science & Engineering》 SCIE EI 2024年第7期109-122,共14页
Water-soluble chitosan(WSC)has been studied for its ability to mobilize soil Pb and promote the phytoremediation by Hylotelephium spectabile in Pb-contaminated fields.We aimed to clarify the internal mechanism by whic... Water-soluble chitosan(WSC)has been studied for its ability to mobilize soil Pb and promote the phytoremediation by Hylotelephium spectabile in Pb-contaminated fields.We aimed to clarify the internal mechanism by which wSC impacts phytoremediation by examining plant growth and Pb accumulation performance of H.spectabile as well as the Pb form,functional groups,and mineral phases of Pb-contaminated soil.WSC effectively decreased soil pH and activated Pb migration in rhizosphere soils,with a considerable increase in water-soluble and acid-extractable Pb by 29%-102%and 9%-65%,respectively,and a clear decreasing trend in reducible and oxidizable Pb.Fourier-transform infrared spectroscopy revealed a significant increase in amino and hydroxyl groups in the soil generated by WSC.The coordination of Pb with amino and hydroxyl groups may play an important role in the formation of Pb complexes and activation of Pb in soil.In field trials,the application of WSC significantly increased Pb accumulation in H.spectabile by 125.44%,reaching 92 g/hm^(2).Moreover,the organic matter and nitrogen in the soils were increased by WSc,which improved the growth conditions of H.spectabile.No obvious growth inhibition was observed in either the pot or field trials.Therefore,WSC is a promising chelating agent for mobilizing Pb in soil.Additionally,WSC can be potentially used to boost H.spectabil-mediated phytoremediation of Pb-contaminatedfarmland. 展开更多
关键词 Phytoremediation Pb-contaminated soil Water-soluble chitosan Hylotelephium spectabile Fourier transform infrared spectroscopy
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