首页> 外文期刊>Field Crops Research >Organic manure as an alternative to crop residues for no-tillage wheat-maize systems in North China Plain.
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Organic manure as an alternative to crop residues for no-tillage wheat-maize systems in North China Plain.

机译:华北平原免耕小麦-玉米系统使用有机肥替代农作物残留。

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摘要

No-tillage (NT) can provide both environmental and economic benefits and has been recognized as a sustainable land use practice in many areas worldwide. NT has induced some concerns in the North China Plain (NCP), e.g. unstable crop yield and fodder shortage, with regards to the amount of crop residues retained on the soil surface. The objective of this study was to explore whether or not manure inputs are a viable alternative to crop residue in no-till wheat and maize rotation systems in NCP. Field experiments were initiated in October 2004 including three management operations: conventional tillage with residue removed (CTr), NT with crop residue left on soil surface (NTc), and NT with manure inputs (NTm); and two fertilizer application practices: splitting fertilizer inputs (SF) and concentrated fertilizer inputs (CF). These treatments were arranged in a randomized complete block design, with three replications, and continued over a 4-year period. Crop yield, soil properties and weed population were measured in a wheat-maize double crop system. Compared to CTr, NT had a trend of reducing wheat biomass and grain yield which reduced by 4% and 6%, respectively, for NTc, and 5% and 4%, respectively, for NTm. Tillage treatments, thus use of manure instead of residue, had no significant effects on maize biomass and yield. Fertilizer application practices had no significant effects on biomass and yield of both crops. Continuous NT for 4 years significantly increased the bulk density, soil water content, soil organic carbon (SOC) of the surface soil, but decreased the soil electrical conductivity (EC). The increase in SOC in NTm was higher than in NTc. Although soil EC decreased less in NTm than in NTc, the effects of soil EC could be neglected in the study. The NTc or NTm significantly inhibited the dominant weed in wheat field. The CF inhibited the flixweed (Descurainia sophia) growth compared to the SF. The manure inputs were found to be a viable alternative to crop residue in this NT wheat-maize system in the NCP.
机译:免耕(NT)可提供环境和经济效益,并且在世界范围内被公认为可持续的土地使用方式。北领地在华北平原引起了一些担忧,例如就残留在土壤表面的农作物残留量而言,农作物的产量不稳定和饲料短缺。这项研究的目的是探讨在NCP上,在免耕小麦和玉米轮作系统中,粪肥投入是否可以替代作物残留。 2004年10月启动了田间试验,包括三个管理操作:常规耕作,去除残留物(CTr),NT残留在土壤表面的作物残渣(NTc),NT进行肥料输入(NTm);以及两种肥料施用方式:分配肥料投入(SF)和集中肥料投入(CF)。这些治疗以随机完整区组设计安排,一式三份,并持续4年。在小麦-玉米双作物系统中测量了作物产量,土壤特性和杂草种群。与CTr相比,NT有降低小麦生物量和单产的趋势,NTc分别降低4%和6%,NTm降低5%和4%。耕作处理,因此使用肥料代替残留物,对玉米生物量和产量没有显着影响。施肥方式对两种作物的生物量和单产均无显着影响。连续NT 4年显着增加了表层土壤的容重,土壤水分,土壤有机碳(SOC),但降低了土壤电导率(EC)。 NTm中SOC的增加高于NTc中。尽管NTm中的土壤EC下降少于NTc,但是在研究中土壤EC的影响可以忽略。 NTc或NTm显着抑制了麦田的优势杂草。与SF相比,CF抑制了长草的生长。在NCP的这种NT小麦-玉米系统中,发现粪肥投入可以替代农作物残留。

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