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Corn stover biochar increased edible safety of spinach by reducing the migration of mercury from soil to spinach

机译:玉米秸秆生物炭通过减少汞从土壤中的迁移到菠菜来增加菠菜的可食用安全性

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摘要

Mercury (Hg) is toxic and can affect human health through soil entering food chain. Spinach absorb easily heavy metals. Corn stover biochar can improve soil structure and physicochemical property. This study wanted to establish a Hg-corn stover biochar-soil-spinach model including 1 control group (without HgCl_2 and corn stover biochar) and 24 treatment groups (with HgCl_2 or/and corn stover biochar). Hg concentration was 0,1,2,4, and 6 mg kg~(-1), respectively. Corn stover biochar contents were 0%, 1%, 3%, 5%, and 7% w/w, respectively. The results showed that residual Hg concentrations was the largest and water soluble and exchangeable Hg as well as carbonate bound Hg concentrations were the lowest among five Hg forms. Hg concentrations in four Hg treatment groups were higher than the control group in dose-dependent manner. The deposition of 6 mg kg~(-1) Hg was the highest. Corn stover biochar decreased Hg migration from soil to leaching solution and spinach, and passivation effect of 7% concentration of corn stover biochar was the best Besides, corn stover biochar relieved the increase of methyl Hg caused by Hg in soil. Moreover, Hg concentration in roots was the highest and Hg concentration in stems was the lowest in spinach. Furthermore, Hg absorbed by roots was more than the sum of Hg absorbed by stems and leaves. In addition, we also found that the measured soil Hg concentrations were coincided with the predicted soil Hg concentrations under 1,2, and 4 mg kg~(-1) Hg concentrations, except 2 mg kg~(-1) Hg at 7% C. Under 6 mg kg~(-1) Hg concentration, measured soil Hg concentrations was lower than that of the predicted soil Hg concentrations. Taken together, our findings indicated that corn stover biochar can increase edible safety of spinach by immobilizing Hg in soil and be used as an organic amendment.
机译:汞(Hg)是有毒的,可以通过进入食物链的土壤来影响人类健康。菠菜容易吸收重金属。玉米秸秆生物炭可以改善土壤结构和物理化学性质。该研究希望建立一个HG-玉米秸秆生物炭土 - 菠菜 - 菠菜模型,包括1个对照组(没有HGCL_2和玉米炭炭,24种治疗组(用HgCl_2或/和玉米橄榄肉)。 Hg浓度分别为0.1,2,4和6mg kg〜(-1)。玉米秸秆生物炭含量分别为0%,1%,3%,5%和7%w / w。结果表明,残留的Hg浓度是最大,水溶性和可交换的Hg以及碳酸盐结合的Hg浓度是五种Hg形式中最低的。四个HG处理组中的Hg浓度高于对照组以剂量依赖性方式。沉积6mg kg〜(-1)hg是最高的。玉米秸秆生物炭降低了从土壤中迁移到浸出溶液和菠菜的迁移和菠菜,7%浓度的玉米橄榄肉生物炭是最佳的,玉米秸秆生物炭加剧了土壤中Hg引起的甲基Hg的增加。此外,根部的Hg浓度是茎中最低的最高,Hg浓度是菠菜中最低的。此外,由根吸收的Hg大于茎和叶子吸收的Hg和。此外,我们还发现,测量的土壤Hg浓度与1,2和4mg kg〜(-1)Hg浓度下的预测的土壤hg浓度一致,除2mg kg〜(-1)hg以为7% C.在6mg kg〜(-1)下的Hg浓度下,测量的土壤Hg浓度低于预测的土壤hg浓度。我们的研究结果表明,玉米秸秆生物炭可以通过固定土壤中的Hg来增加菠菜的可食用安全性,并用作有机修正。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|143883.1-143883.9|共9页
  • 作者单位

    College of Resource and Environment Northeast Agricultural University Harbin 150030 China;

    College of Resource and Environment Northeast Agricultural University Harbin 150030 China;

    No. 6 Middle School of Harbin Harbin 150030 China;

    College of Resource and Environment Northeast Agricultural University Harbin 150030 China;

    College of Animal Science and Technology Northeast Agricultural University Harbin 150030 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Corn Stover biochar; Mercury; Spinach; Migration; Edible safety;

    机译:玉米秸秆生物炭;汞;菠菜;移民;可食用的安全;

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