4.7 Article

Effects of surface-modified biochars and activated carbon on the transformation of soil inorganic nitrogen and growth of maize under chromium stress

期刊

CHEMOSPHERE
卷 227, 期 -, 页码 124-132

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2019.04.042

关键词

Chromium stress; Soil inorganic nitrogen; Nitrogen cycling enzyme; Maize; Amendment

资金

  1. National Key R&D Program of China [2017YFD0801300]
  2. Science and Technology Key Program of Shanxi Province of China [20140311008-6]
  3. Open Foundation of Key Laboratory of Industrial Ecology and Environmental Engineering, MOE [KLIEEE-16-03]

向作者/读者索取更多资源

Elevated chromium (Cr) level is challenging agricultural production and affecting soil biochemical process. This study evaluated the effect of amendments including surface-modified biochars (HBC: acid washing, Fe(III)-HBC: ferric iron loading, nZVI-HBC: nanoscale zero-valent iron loading) and activated carbon on hexavalent chromium (Cr(VI)) removal in soil and on N cycling enzyme activities, transformation of soil inorganic nitrogen, and growth of maize under Cr stress. The results showed that amendments increased Cr(VI) removal by 72.9%-96.34% at three levels of spiked Cr(VI) (low: 125 mg kg(-1), moderate: 250 mg kg(-1), high: 500 mg kg(-1)). Under low Cr stress, amendments generally significantly decreased urease and nitrite reductase activities but increased nitrate reductase activity (p <0.05). The NHZ-N content had a significant positive correlation with urease activity (p <0.01), while both NO2--N and NO3--N were absent correlations with N cycling enzyme studied. Amendments decreased NH4+-N/NO3--N ratio under low Cr stress but increased it under moderate Cr stress, although the difference was not significant. Under high Cr stress, only Fe(lll)-HBC significantly increased NH4+-N/ NO3--N ratio (p < 0.05). The decrease and increase of NH4+-N/NO3--N ratios indicate the enhancement of nitrification and denitrification, respectively. The increase in Cr(VI) removal by amendments contributed to the increase in the migration of NO3--N from roots to shoots. Amendments (except for nZVI-HBC in soil under low Cr stress) increased maize height by 20%-59%. Under low Cr stress, however, nZVI-HBC significantly decreased maize height by 65% (p < 0.05), indicating the toxic effect of nZVI on maize growth overwhelmed low Cr stress. (C) 2019 Published by Elsevier Ltd.

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