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Soil quality and carbon sequestration under conservation agriculture with balanced nutrition in intensive cereal-based system

机译:基于密集谷物系统的均衡营养保护农业土壤质量和碳依赖

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Conventional tillage practices and imbalanced use of inorganic fertilizers is well known to result in poor soil health. Alternative tillage and precision nutrient management are important strategies for tackling the issues of soil health deterioration, particularly in cereal-based intensive cropping systems. Therefore, we conducted a 4-year study with the objective of (a) monitoring the changes in soil physical, biological and chemical properties and crop productivity, (b) development of soil quality index-SQI, and monitor its' changes against system productivity as management goal, and (c) studying the changes in soil organic carbon-SOC in relation to annual C input. The experiment was laid out in a split-plot design with 3-tillage practices [zero tillage-ZT; permanent beds-PB; and conventional tillage-CT] and 4-nutrient management strategies [Control (unfertilized), farmers' fertilizer practice-FFP, recommended fertilizers doses-Ad-hoc and site specific nutrient management-SSNM] under a continuous maize (Zea mays L.) - wheat (Triticum aestivum L.)- mungbean (Vigna radiata L. Wilczek) rotation in a sandy loam soil (Typic Haplustept) of north-western Indo-Gangetic plains (NW-IGP) of India. The ZT/PB with SSNM/Ad-hoc nutrient management resulted in higher values of a) physical parameters viz., water stable aggregates> 250 mu m, saturated hydraulic conductivity (K-sat) and mean weight diameter-MWD, b) chemical parameters viz., SOC, available N, P, and K, and c) biological parameters viz., microbial biomass carbon and enzyme activities (fluorescein diacetate hydrolase, dehydrogenase, beta-glucosidase and alkaline phosphatase) compared with CT and unfertilized treatments. The CA practices recorded an increase in WSA (12-21%), MWD (14-29%), and Ksat (11-14%) compared with CT at the 0-0.15 m and 0.15-0.30 m soil depths, respectively. The PB-SSNM registered (44.1%) higher SOC content as compared to CT-unfertilized plots. Values for MBC, FDA and beta GA declined in the order SSNM=Ad-hoc> FFP> Control. While, the DHA declined in the order SSNM> Ad-hoc=FFP> Control. Principal component analysis included MWD, SOC and available K in the minimum data set (MDS) as the soil quality indicators. Adoption of PB/ZT resulted similar to 22.5% higher SQI compared with CT. The SSNM plots improved SQI by similar to 19.3% and similar to 5.3% over unfertilized and FFP. The SSNM based CA practices attained a significantly higher annual C sequestration rate than other treatments. Therefore, adoption of CA with SSNM and Ad-hoc nutrient management in intensive cereal based systems of NW-IGP is essential for improving nutrient cycling, soil quality, crop productivity and C-sequestration potential.
机译:众所周知,常规耕作措施和无机肥料的不平衡使用导致土壤健康状况不佳。替代耕作和精密养分管理是解决土壤健康状况问题的重要策略,特别是在基于谷物的密集种植系统中。因此,我们进行了4年的研究,目的是(a)监测土壤物理,生物学和化学性质和作物生产力的变化,(b)土壤质量指数的发展,并监测其对系统生产率的变化作为管理目标,(c)研究土壤有机碳 - SOC与年度C输入的变化。该实验以3耕作实践[零耕作 - ZT;永久床-PB;和常规的耕作-CT]和4营养管理策略[控制(未受精),农民的肥料实践-FFP,推荐肥料剂量 - ad-hoc和位点特异性营养管理-SSNM]在连续玉米(Zea Mays L.) - 小麦(Triticum aestivum L.) - 莫西(Vigna Radiata L.Wilczek)在印度西北西北地区的桑迪壤土(典型Haplustept)旋转。具有SSNM / ad-hoc营养管理的ZT / PB导致较高的a)物理参数viz值,水稳定的聚集体>250μm,饱和液压导电(k-sat)和平均直径-mwd,b)化学参数viz,SoC,可用N,P和K,C)生物参数Ziz,与CT和未受精处理相比,微生物生物质碳和酶活性(荧光素二乙酸水解酶,脱氢酶,β-葡糖苷酶和碱性磷酸酶)。与0-0.15米和0.15-0.30米的CT相比,CA措施录制了WSA(12-21%),MWD(14-29%)和KSAT(11-14%)的增加。与CT-Unferized图相比,PB-SSNM注册(44.1%)高的SOC含量。 MBC,FDA和Beta GA的值在SSNM = AD-HOC> FFP>控制中拒绝。虽然,DHA在SSNM> Ad-Hoc = FFP>控制中拒绝了。主成分分析包括MWD,SOC和可用k,以最小数据集(MDS)为土壤质量指标。通过PB / ZT的采用导致与CT相比,SQI相似达到22.5%。 SSNM局部通过类似于19.3%,类似于未受精和FFP的5.3%改善SQI。基于SSNM的CA实践达到了比其他治疗更高的年度C螯合率。因此,在NW-IGP的强烈基于麦片系统中使用SSNM和Ad-Hoc营养管理的Ca,对于提高营养循环,土壤质量,作物生产力和C封存潜力至关重要。

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