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Impact of organic no-till vegetables systems on soil organic matter in the Atlantic Forest biome

机译:有机免耕蔬菜系统对大西洋森林生物群落中土壤有机质的影响

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Soil organic matter is widely recognized as a strategy used to improve soil quality and reduce carbon emissions to the atmosphere. A field study was carried out to investigate the effects of cover crops in organic no-till vegetables systems on changes in soil organic matter and CO2-C emissions, in dry and rainy seasons. We hypothesized that CO2-C emissions are higher in conventional till as compared with no-till, and that no-till increases soil C sink. The crop rotation comprised a 3-year cropping sequence involving two crops per year-cabbage (Brassica oleracea L.) in winter and eggplant (Solanum melongena L) in summer time. Treatments were no-till on dead mulch of grass (Avena strigosa Schreb. and Zea mays L.), leguminous (Lupinus albus L and Crotalaria juncea L.), intercrop (grass and leguminous) and conventional till (no dead mulch) with rotary hoe arranged in a randomized block design on a clayey Oxisol (Typic Haplustox) at Domingos Martins-ES, Brazil. On 2012 and 2013, disturbed soil samples at three different layers (0-5,5-15 and 15-30 cm) and undisturbed samples at 0-10, 10-20 and 20-30 cm, for chemical and organic matter characterization were taken. CO2-C emissions and soil temperature were measured in situ on March, May, August and October 2012 and February 2013 (after 3 years of experiment). Conventional till site showed the lowest microporosity values and the highest macroporosity, followed by lower soil bulk density at 0-10 cm layer. Total organic C ranged from 34.94 to 50.48 g kg(-1) in intercrop and 27.11 to 43.74 g kg(-1) in conventional till. Total N ranged from 2.81 to 5.34 g kg(-1) in grass and 2.54 to 4.51 g kg(-1) in conventional till. Highest C stock was recorded in intercrop. Conventional till showed lower labile C values while recalcitrant C was higher in the intercrop treatment. The annual average of CO2-C emissions (mu mol CO2 m(-2) s(-1)) followed the order: grass (15.89) > intercrop (13.77) > leguminous (13.09) > conventional till (11.20). Highest annual average of soil temperature was recorded in conventional till (23.95 degrees C). Lowest annual mean of soil water content, microbial biomass C, and highest metabolic quotient were recorded in conventional till. These results suggest that the use of cover crops and organic compost in pre-planting promote C increments. The contribution of organic residues increases the water holding capacity and reduces soil temperature. No-till reduces soil disturbance and promotes a positive balance of C. Organic no-till vegetable systems is a strategy to increase soil C and should be encouraged in order to increase soil quality in the Atlantic Forest Biome in Brazil. (C) 2014 Elsevier B.V. All rights reserved.
机译:土壤有机物被广泛认为是改善土壤质量和减少向大气排放碳的一种策略。进行了一项田间研究,以调查干旱和雨季有机免耕蔬菜系统中的覆盖作物对土壤有机质和CO2-C排放量变化的影响。我们假设在常规耕作之前,CO2-C排放量要比免耕方式高,而免耕方式会增加土壤碳汇。轮作包括3年的种植顺序,冬季每年白菜(Brassica oleracea L.)和夏季茄子(Solanum melongena L)两种作物。处理包括免耕法死草覆盖(Avena strigosa Schreb。和Zea mays L.),豆科(羽扇豆Lupinus L和猪屎豆属Crucearia L.),间作(草和豆科)和常规耕作(无死膜) Do头在巴西Domingos Martins-ES的黏土Oxisol(典型的Haplustox)上以随机区组设计排列。在2012年和2013年,分别对三个不同层(0-5、5-15和15-30 cm)的扰动土壤样品和0-10、10-20和20-30 cm的未扰动样品进行了化学和有机物表征采取。在3年的实验后,分别于2012年3月,5月,8月和10月以及2013年2月对CO2-C排放量和土壤温度进行了测量。传统的耕地显示出最低的微孔率值和最高的大孔率,其后是0-10 cm层的较低的土壤容重。间作中有机碳的总含量为34.94至50.48 g kg(-1),常规耕作中的总有机C为27.11至43.74 g kg(-1)。在草地上,总氮含量在2.81至5.34 g kg(-1)之间,而在常规耕作中,总N在2.54至4.51 g kg(-1)之间。间作记录了最高的C储量。常规耕作在间作中表现出较低的不稳定C值,而顽固性C较高。每年的平均CO2-C排放量(μmol CO2 m(-2)s(-1))依次为:草(15.89)>间作(13.77)>豆科(13.09)>常规耕作(11.20)。在常规耕作之前(23.95摄氏度),土壤温度的年平均值最高。在常规耕作中,最低的年土壤平均水含量,微生物生物量碳和最高的代谢商被记录下来。这些结果表明,在种植前使用覆盖作物和有机堆肥可促进碳的增加。有机残留物的贡献增加了持水量并降低了土壤温度。免耕可减少土壤扰动并促进C的正平衡。有机免耕蔬菜体系是提高土壤C的一项策略,应鼓励在巴西大西洋森林生物群落中提高土壤质量。 (C)2014 Elsevier B.V.保留所有权利。

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