施肥方式与施用生物质炭对设施菜地氨排放的影响
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S153

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大气重污染成因与治理攻关项目(DQGG0208-02)、北京市自然科学基金项目(8192007)和北京市教委项目(SQKM201810020004)资助。


Effects of Fertilization and Biochar Addition on Ammonia Emission from Greenhouse Vegetable Fields
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    摘要:

    采用通气法对设施菠菜和黄瓜在施用生物质炭与翻耕措施下土壤氨气(NH3)排放进行观测,探索设施菜地NH3减排的有效途径。观测表明,设施菠菜与黄瓜土壤NH3排放主要发生在施肥后一周内。在施化肥氮总量300 kg/hm2条件下,设施菠菜不施生物质炭和表施生物质炭处理的NH3排放量分别占总氮投入量的8.00%和10.15%,而翻耕措施分别降低各处理NH3排放38.34%和56.22%(P<0.05)。在施化肥氮总量600 kg/hm2条件下,设施黄瓜不施生物质炭和表施生物质炭的NH3排放量分别占总氮投入量的3.03%和4.80%,而翻耕措施分别降低各处理NH3排放9.45%和37.61%。设施菜地表施生物质炭增加土壤NH3排放,其中菠菜和黄瓜单位产量的NH3排放量分别增加52.58%和78.17%(P<0.05)。根据设施菜地NH3排放特点和不同处理的减排效果,建议减少基肥投入以控制NH3排放,并利用翻耕措施消除表施生物质炭对NH3排放的促进效应。

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    In order to explore paths to reduce ammonia (NH3) emission in protected spinach and cucumber plots, a field experiment was conducted on the dynamics of ammonia emission fluxes under treatments of biochar addition and ploughing cultivation using aeration method. The results showed that NH3 emissions mainly occurred within one week after fertilization in both spinach and cucumber plots. Under the condition of 300 kg/hm2 of total inorganic nitrogen input, the proportion of NH3 emission in the total nitrogen input was 8.00% under non-additional biochar treatment, and 10.15% under biochar addition treatments from spinach field, respectively. NH3 emission after surface fertilization with ploughing cultivation was reduced by 38.34% under the treatments of non-additional biochar, and by 56.22% under the treatments of biochar addition, respectively. Under the condition of 600 kg/hm2 of total nitrogen input rate, the proportion of NH3 emission in the total nitrogen input was 3.03% under the non-additional biochar treatment, and 4.80% under the treatments of biochar addition from cucumber field, respectively. NH3 emissions after surface fertilization with ploughing cultivation was reduced by 9.45% under the treatments of non-biochar addition, and 37.61% under the treatments of biochar addition, respectively. Surface-applied biochar has positive effect on NH3 emission in vegetable soils. NH3 emissions per unit yield after biochar addition were increased by 52.58% for spinach and by 78.17% for cucumber, respectively. According to the characteristics of NH3 emission and the mitigation effect, it is suggested to reduce the base fertilizer input to control NH3 emission from protected soils, and perform ploughing cultivation after biochar addition to eliminate the promoting effect on NH3 emission.

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史冬伟,刘衎,孙志华,黄梓恩,梁琼,刘云,段碧华,石生伟.施肥方式与施用生物质炭对设施菜地氨排放的影响[J].土壤,2022,54(2):255-261. SHI Dongwei, LIU Kan, SUN Zhihua, HUANG Zien, LIANG Qiong, LIU Yun, DUAN Bihua, SHI Shengwei. Effects of Fertilization and Biochar Addition on Ammonia Emission from Greenhouse Vegetable Fields[J]. Soils,2022,54(2):255-261

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  • 收稿日期:2021-05-08
  • 最后修改日期:2021-07-17
  • 录用日期:2021-07-19
  • 在线发布日期: 2022-04-15
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