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不同氮源施肥条件下普通菜豆(Phaseolus vulgaris L.)种植土壤中二氧化碳和一氧化二氮的排放。

Emission of CO2 and N2O from soil cultivated with common bean (Phaseolus vulgaris L.) fertilized with different N sources.

作者信息

Fernández-Luqueño F, Reyes-Varela V, Martínez-Suárez C, Reynoso-Keller R E, Méndez-Bautista J, Ruiz-Romero E, López-Valdez F, Luna-Guido M L, Dendooven L

机构信息

Laboratory of Soil Ecology, Department of Biotechnology and Bioengineering, Cinvestav, Mexico D.F, C.P. 07360, Mexico.

出版信息

Sci Total Environ. 2009 Jul 1;407(14):4289-96. doi: 10.1016/j.scitotenv.2009.04.016. Epub 2009 May 2.

Abstract

Addition of different forms of nitrogen fertilizer to cultivated soil is known to affect carbon dioxide (CO(2)) and nitrous oxide (N(2)O) emissions. In this study, the effect of urea, wastewater sludge and vermicompost on emissions of CO(2) and N(2)O in soil cultivated with bean was investigated. Beans were cultivated in the greenhouse in three consecutive experiments, fertilized with or without wastewater sludge at two application rates (33 and 55 Mg fresh wastewater sludge ha(-1), i.e. 48 and 80 kg N ha(-1) considering a N mineralization rate of 40%), vermicompost derived from the wastewater sludge (212 Mg ha(-1), i.e. 80 kg N ha(-1)) or urea (170 kg ha(-1), i.e. 80 kg N ha(-1)), while pH, electrolytic conductivity (EC), inorganic nitrogen and CO(2) and N(2)O emissions were monitored. Vermicompost added to soil increased EC at onset of the experiment, but thereafter values were similar to the other treatments. Most of the NO(3)(-) was taken up by the plants, although some was leached from the upper to the lower soil layer. CO(2) emission was 375 C kg ha(-1) y(-1) in the unamended soil, 340 kg C ha(-1) y(-1) in the urea-amended soil and 839 kg ha(-1) y(-1) in the vermicompost-amended soil. N(2)O emission was 2.92 kg N ha(-1) y(-1) in soil amended with 55 Mg wastewater sludge ha(-1), but only 0.03 kg N ha(-1) y(-1) in the unamended soil. The emission of CO(2) was affected by the phenological stage of the plant while organic fertilizer increased the CO(2) and N(2)O emission, and the yield per plant. Environmental and economic implications must to be considered to decide how many, how often and what kind of organic fertilizer could be used to increase yields, while limiting soil deterioration and greenhouse gas emissions.

摘要

已知向耕地土壤中添加不同形态的氮肥会影响二氧化碳(CO₂)和一氧化二氮(N₂O)的排放。在本研究中,调查了尿素、废水污泥和蚯蚓堆肥对种植豆类的土壤中CO₂和N₂O排放的影响。在温室中连续进行了三个实验来种植豆类,分别以两种施用量(33和55 Mg新鲜废水污泥公顷⁻¹,即考虑40%的氮矿化率时为48和80 kg氮公顷⁻¹)添加或不添加废水污泥、添加源自废水污泥的蚯蚓堆肥(212 Mg公顷⁻¹,即80 kg氮公顷⁻¹)或尿素(170 kg公顷⁻¹,即80 kg氮公顷⁻¹),同时监测土壤的pH值、电导率(EC)、无机氮以及CO₂和N₂O排放。添加到土壤中的蚯蚓堆肥在实验开始时提高了电导率,但此后的值与其他处理相似。大部分硝酸盐(NO₃⁻)被植物吸收,不过有一些从上层土壤层淋溶到了下层土壤层。未改良土壤中的CO₂排放量为375 C kg公顷⁻¹ 年⁻¹,尿素改良土壤中的CO₂排放量为340 kg C公顷⁻¹ 年⁻¹,蚯蚓堆肥改良土壤中的CO₂排放量为839 kg公顷⁻¹ 年⁻¹。用55 Mg废水污泥公顷⁻¹改良的土壤中N₂O排放量为2.92 kg氮公顷⁻¹ 年⁻¹,但未改良土壤中的N₂O排放量仅为0.03 kg氮公顷⁻¹ 年⁻¹。CO₂排放受植物物候期的影响,而有机肥料增加了CO₂和N₂O排放以及单株产量。在决定使用多少、多频繁以及何种有机肥料来提高产量,同时限制土壤退化和温室气体排放时,必须考虑环境和经济影响。

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