首页> 外文期刊>Soil Science and Plant Nutrition >Relationships between microbial biomass nitrogen, nitrate leaching and nitrogen uptake by corn in a compost and chemical fertilizer-amended regosol
【24h】

Relationships between microbial biomass nitrogen, nitrate leaching and nitrogen uptake by corn in a compost and chemical fertilizer-amended regosol

机译:玉米堆肥和化肥改良麦芽酚对微生物量氮,玉米硝态氮淋失与氮吸收的关系

获取原文
获取原文并翻译 | 示例
           

摘要

To determine the relationships between microbial biomass nitrogen (N), nitrate-nitrogen leaching (NO_3-N leaching) and N uptake by plants, a field experiment and a soil column experiment were conducted. In the field experiment, microbial biomass N, 0.5 mol L~(-1) K_2SO_4 extractable N (extractable N), NO_3-N leaching and N uptake by corn were monitored in sawdust compost (SDC: 20 Mg ha~(-1) containing 158 kg N ha~(-1) of total N [approximately 50% is easily decomposable organic N]), chemical fertilizer (CF) and no fertilizer (NF) treatments from May 2000 to September 2002. In the soil column experiment, microbial biomass N, extractable N and NO_3-N leaching were monitored in soil treated with SDC (20 Mg ha~(-1)) + rice straw (RS) at five different application rates (0, 2.5, 5, 7.5 and 10 Mg ha~(-1) containing 0, 15, 29, 44 and 59 kg N ha~(-1)) and in soil treated with CF in 2001. Nitrogen was applied as (NH_4)_2SO_4 at rates of 220 kg N ha~(-1) for SDC and SDC + RS treatments and at a rate of 300 kg N ha~(-1) for the CF treatment in both experiments. In the field experiment, microbial biomass N in the SDC treatment increased to 147 kg N ha~(-1) at 7 days after treatment (DAT) and was maintained at 60-70 kg N ha~(-1) after 30 days. Conversely, microbial biomass N in the CF treatment did not increase significantly. Extractable N in the surface soil increased immediately after treatment, but was found at lower levels in the SDC treatment compared to the CF treatment until 7 DAT. A small amount of NO_3-N leaching was observed until 21 DAT and increased markedly from 27 to 42 DAT in the SDC and CF treatments. Cumulative NO_3-N leaching in the CF treatment was 146 kg N ha~(-1), which was equal to half of the applied N, but only 53 kg N ha~(-1) in theSDC treatment. In contrast, there was no significant difference between N uptake by corn in the SDC and CF treatments. In the soil column experiment, microbial biomass N in the SDC + RS treatment at 7 DAT increased with increased RS application. Conversely, extractable N at 7 DAT and cumulative NO_3-N leaching until 42 DAT decreased with increased RS application. In both experiments, microbial biomass N was negatively correlated with extractable N at 7 DAT and cumulative NO_3-N leaching until 42 DAT, and extractable N was positively correlated with cumulative NO_3-N leaching. We concluded that microbial biomass N formation in the surface soil decreased extractable N and, consequently, contributed to decreasing NO_3-N leaching without impacting negatively on N uptake by plants.
机译:为了确定微生物生物量氮(N),硝态氮淋溶(NO_3-N淋溶)与植物吸收氮之间的关系,进行了田间试验和土壤柱试验。在田间试验中,监测了木屑堆肥中微生物生物量氮,0.5 mol L〜(-1)K_2SO_4可萃取氮(可萃取氮),NO_3-N淋失和玉米对氮的吸收(SDC:20 Mg ha〜(-1))。从2000年5月至2002年9月,共处理了158千克N ha〜(-1)的总氮[约50%易分解的有机氮],化学肥料(CF)和无肥料(NF)处理。在SDC(20 Mg ha〜(-1))+稻草(RS)处理的土壤中,以五种不同的施用量(0、2.5、5、7.5和10 Mg)监测微生物生物量N,可萃取氮和NO_3-N的淋失ha〜(-1)分别含有0、15、29、44和59 kg N ha〜(-1)),并于2001年在CF处理过的土壤中。氮以(NH_4)_2SO_4的形式施用,氮肥用量为220 kg N ha〜(-1)。 (-1)用于SDC和SDC + RS处理,两个实验中CF处理的速率为300 kg N ha〜(-1)。在田间试验中,SDC处理中的微生物生物量氮在处理(DAT)后第7天增加到147 kg N ha〜(-1),并在30天后保持在60-70 kg N ha〜(-1)。相反,CF处理中的微生物量N并未显着增加。处理后,表层土壤中的可萃取氮立即增加,但直到7 DAT为止,与CF处理相比,在SDC处理中发现的含量较低。在SDC和CF处理中,观察到少量的NO_3-N浸出直至21 DAT,并从27 DAT显着增加到42 DAT。 CF处理中NO_3-N的累积淋失量为146 kg N ha〜(-1),相当于施氮量的一半,但SDC处理中只有53 kg N ha〜(-1)。相反,在SDC和CF处理中玉米的氮吸收量之间没有显着差异。在土壤柱试验中,在7 DAT下SDC + RS处理中的微生物量N随着RS施用量的增加而增加。相反,随着RS施用量的增加,在7 DAT处可提取的N和累积的NO_3-N浸出直至42 DAT减少。在两个实验中,微生物生物量氮与7 DAT和累积NO_3-N淋溶直至42 DAT呈负相关,而可提取N与累积NO_3-N淋溶呈正相关。我们得出的结论是,表层土壤中微生物生物量氮的形成减少了可提取氮的含量,因此有助于减少NO_3-N的淋失,而不会对植物对氮的吸收产生负面影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号