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Organic matter fractions within macroaggregates in response to long-term fertilization in calcareous soil after reclamation 被引量:3
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作者 CAO Han-bing XIE Jun-yu +3 位作者 HONG Jie WANG Xiang HU Wei HONG Jian-ping 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第6期1636-1648,共13页
Soil organic carbon(SOC)plays a key role in improving soil quality and optimizing crop yield.Yet little is known about the fate of macroaggregates(>0.25 mm)under long-term fertilization and their relative importanc... Soil organic carbon(SOC)plays a key role in improving soil quality and optimizing crop yield.Yet little is known about the fate of macroaggregates(>0.25 mm)under long-term fertilization and their relative importance in SOC sequestration in reclaimed calcareous soil.Therefore,the effects of mineral fertilizers and organic manure on the mechanisms of organic carbon(OC)stabilization in macroaggregates were investigated in this study.Four treatments were used:unfertilized control(CK),mineral fertilizer(NPK),compost chicken manure alone(M),and mineral fertilizers plus manure(MNPK).Samples from the 0–20 cm layer of soil receiving 11-year-long fertilization were separated into four fractions based on the macroaggregates present(unprotected coarse and fine particulate organic matter,cPOM and fPOM;physically protected intra-microaggregate POM,i POM;and biochemically protected mineral associated OM,MOM)by the physical fractionation method.Compared with the control,the long-term application of NPK had little effect on SOC content,total nitrogen(TN)content,and OC and TN contents of macroaggregate fractions.In contrast,incorporation of organic manure(MNPK)significantly increased SOC(45.7%)and TN(24.3%)contents.Application of MNPK increased OC contents within macroaggregate-extracted fractions of cPOM(292.2%),fPOM(136.0%)and iPOM(124.0%),and TN contents within cPOM(607.1%),fPOM(242.5%)and iPOM(127.6%),but not the mineral associated organic carbon(MOM-C)and nitrogen(MOM-N)contents.Unprotected C fractions were more strongly and positively correlated with SOC increase than protected C fractions,especially for cPOM-C,indicating that SOC sequestration mainly occurred via cPOM-C in the studied calcareous soil.In conclusion,MNPK increased the quantity and stability of SOC by increasing the contents of cPOM-C and cPOM-N,suggesting that this management practice(MNPK)is an effective strategy to develop sustainable agriculture. 展开更多
关键词 long-term fertilization carbon sequestration macroaggregate physical fractionation coarse particulate organic carbon calcareous soil
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减氮覆膜下旱地麦田土壤团聚体中各物理组分的变化
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作者 谢钧宇 白宇嫣 +4 位作者 曹寒冰 张峰茂 史欣歌 刘一凡 李廷亮 《环境科学》 EI CAS CSCD 北大核心 2024年第10期6028-6037,共10页
分析覆膜条件下晋南旱塬土壤团聚体中各物理组分的变化,对于协同提高该区域土壤肥力及作物产能意义重大.依托山西省洪洞县长期定位试验基地,采集7 a的0~20 cm土层原状土壤样品,分析农户施肥(FP)、测控施肥(MF)、测控施肥+垄膜沟播(RF)... 分析覆膜条件下晋南旱塬土壤团聚体中各物理组分的变化,对于协同提高该区域土壤肥力及作物产能意义重大.依托山西省洪洞县长期定位试验基地,采集7 a的0~20 cm土层原状土壤样品,分析农户施肥(FP)、测控施肥(MF)、测控施肥+垄膜沟播(RF)和测控施肥+平膜穴播(FH)这4个处理对小麦籽粒年均产量、土壤有机碳(SOC)含量和团聚体中各物理组分[未受保护的大团聚体中粗颗粒有机碳(M-cPOC)及细颗粒有机碳(M-fPOC)、受物理保护的大团聚体中微团聚体内颗粒有机碳(M-iPOC)、受(生物)化学保护的大团聚体中矿质结合态有机碳(M-MOC)、未受保护的微团聚体中细颗粒有机碳(m-fPOC)、受物理保护的微团聚体中颗粒有机碳(m-iPOC)、受(生物)化学保护的微团聚体中矿质结合态有机碳(m-MOC)]分布比例及其有机碳含量的影响.结果表明,同FP处理相比,MF处理虽然显著降低了SOC含量,但是还能维持小麦籽粒产量,RF和FH处理协同提升了土壤肥力和作物产能,且以FH处理效果更佳,SOC含量和小麦籽粒产量分别提高了8.44%和48.86%.MF处理显著降低了M-cPOC含量,RF处理显著提高了M-iPOC含量,FH处理显著提高了M-fPOC、M-iPOC、M-MOC和m-iPOC含量,增幅分别为64.00%、98.39%、6.16%和17.48%.此外,结合冗余分析发现M-iPOC组分对提高SOC含量和小麦籽粒产量起主要作用,贡献率高达61.5%.因此,晋南旱塬区大团聚体对土壤肥力和作物产能的贡献高于微团聚体,平膜穴播通过提高M-iPOC含量,进而协同增加了土壤有机碳固存和小麦籽粒产量,可以在该区域乃至全国农作旱区推广该项栽培技术. 展开更多
关键词 长期定位试验 小麦籽粒产量 土壤有机碳(SOC) 大团聚体中微团聚体内颗粒有机碳 平膜穴播
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