首页> 外文期刊>Communications in Soil Science and Plant Analysis >Soil organic carbon and nitrogen fractions in temperate alley cropping systems.
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Soil organic carbon and nitrogen fractions in temperate alley cropping systems.

机译:温带小巷种植系统中的土壤有机碳和氮组分。

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摘要

Alley cropping may promote greater sequestration of soil organic carbon. The objective of this study was to examine spatial variability of soil organic carbon (C) and nitrogen (N) fractions relative to tree rows in established alley cropping systems in north central Missouri. Soils were collected to a depth of 30 cm from two alley cropped sites, a 19-yr-old pecan (Carya illinoinensis)/bluegrass (Poa trivialis) intercrop (pecan site) and an 11-yr-old silver maple (Acer saccharinum)/soybean (Glycine max)-maize (Zea mays) rotation (maple site). Particulate organic matter (POM) C constituted 15-65% and 14-41% of total organic C (TOC) at the pecan and maple sites respectively, whereas POM N comprised 3 to 24% of total N (TKN). TOC and TKN were on average 13% and 18% higher at the tree row than at the middle of the alley for surface soils (0-10 cm) at the pecan site, respectively. Similarly, POM C was two to three times higher at the tree row than the alley for subsurface soils at the maple site. No differences in microbial biomass C and N between positions were observed. Observed results suggest the existence of spatially dependent patterns for POM C, TOC, and TKN, relative to tree rows in alley cropping..
机译:胡同种植可以促进土壤有机碳的更多固存。这项研究的目的是要检查密苏里州中部北部已建立的小巷种植系统中土壤有机碳(C)和氮(N)相对于树木行的空间变异性。从两个胡同种植区,一个19岁的山核桃(Carya illinoinensis)/ bluegrass(Poa trivialis)间作(山核桃位)和一个11岁的银枫(Acer saccharinum)收集土壤至30 cm深度/大豆(Glycine max)-玉米(Zea mays)轮换(枫树站点)。山核桃和枫树部位的颗粒有机物(POM)C分别占总有机碳(TOC)的15-65%和14-41%,而POM N占总氮(TKN)的3至24%。山核桃站点表层土壤(0-10厘米)处,树行的TOC和TKN平均分别比胡同中高13%和18%。同样,在树行,POM C比枫树场地地下土壤的小巷高两到三倍。位置之间没有观察到微生物生物量碳和氮的差异。观察到的结果表明,相对于胡同种植中的树木行,POM C,TOC和TKN存在空间相关的模式。

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