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水炭相较于热炭,在土柱实验中并未减少稻田 NH 的挥发。

Hydrochar did not reduce rice paddy NH volatilization compared to pyrochar in a soil column experiment.

机构信息

Jiangsu Vocational College of Agriculture and Forestry, Jurong, 212400, China.

Key Laboratory of Agro-Environment in Downstream of Yangtze Plain, Ministry of Agriculture and Rural Affairs/Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing, 210014, China.

出版信息

Sci Rep. 2020 Nov 5;10(1):19115. doi: 10.1038/s41598-020-76213-z.

Abstract

Pyrochar (PC) is always with high pH value, and improper application might increase rice paddy ammonia volatilization (PAV), which is the main nitrogen loss through air during rice production. Differently, hydrochar (HC) takes the advantages of high productive rate and always with lower pH value compared with PC. However, effect pattern and mechanism of HC on PAV are still unclear. In the present study, soil column experiments were conducted to investigate the effect of PC and HC application on PAV. In total, treatments with four types of biochar (WPC, SPC, WHC and SHC, i.e., PC and HC prepared with wheat straw and sawdust, respectively) and two application rates (0.5% and 1.5%, w/w) were set up and non-biochar application was used as control. Results showed that, application of HC with low pH value could not reduce PAV compared with PC. Total PAV increased significantly as the increase of HC application rate (especially for WHC). The increment of PAV under high rate HC application might be due to the strong buffer capacity of soil, the aging of biochar, the high nitrogen from HC. The results indicated that HC should be pretreatment before utilization in agricultural environment considering PAV reduction.

摘要

热解炭(PC)通常具有较高的 pH 值,应用不当可能会增加稻田氨挥发(PAV),这是水稻生产过程中氮通过空气损失的主要途径。而水热炭(HC)的生产速率高,且 pH 值通常低于 PC。然而,HC 对 PAV 的影响模式和机制尚不清楚。本研究通过土柱实验,研究了 PC 和 HC 施用于稻田对 PAV 的影响。共设置了四种生物炭(小麦秸秆制备的 WPC 和 SPC、木屑制备的 WHC 和 SHC,即 PC 和 HC)和两种施用量(0.5%和 1.5%,w/w)的处理,并以不施生物炭为对照。结果表明,低 pH 值的 HC 应用并不能像 PC 那样减少 PAV。随着 HC 施用量的增加,总 PAV 显著增加(尤其是 WHC)。高用量 HC 应用下 PAV 的增加可能是由于土壤的强缓冲能力、生物炭的老化、HC 中的高氮含量。结果表明,在将 HC 应用于农业环境以减少 PAV 之前,应先进行预处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e35e/7644716/5f19bcde6a17/41598_2020_76213_Fig1_HTML.jpg

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