首页> 外文期刊>Soil & Tillage Research >Assessment of crop residue and palm shell biochar incorporation on greenhouse gas emissions during the fallow and crop growing seasons of broccoli (Brassica oleracea var. italics)
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Assessment of crop residue and palm shell biochar incorporation on greenhouse gas emissions during the fallow and crop growing seasons of broccoli (Brassica oleracea var. italics)

机译:农作物残留和棕榈壳生物炭加入温室气体排放过程中的休耕和作物生长季节(Brassica Oleracea Var。斜体)

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摘要

The impact of broccoli crop residues on greenhouse gas (GHG) emissions may vary with post-harvest management. The incorporation of biochar together with broccoli residues could have a GHG mitigation potential in soil. A field experiment was conducted to evaluate the combined effect of broccoli crop residues and palm shell biochar (PSB) incorporation on GHG emissions during the fallow (post-harvest) and crop growing seasons of broccoli. We also evaluated the plant biomass, N uptake, and soil chemical properties after harvest. The treatments included; No-residues (NR), Residues (R), Residues + 10 t ha(-1) PSB (R10), Residues + 20 t ha(-1) PSB (R20) and Residues + 40 t ha(-1) PSB (R40), arranged in a completely randomized block design. The fallow season had significantly higher GHG emissions than the crop growing season. Incorporation of crop residues in soil significantly increased N2O and CO2 emissions but did not significantly affect CH4 emissions when compared to those of the NR treatment. PSB amendment did not significantly affect N2O, CO2 and CH4 emissions from crop residues and also the biomass and N uptake of the crop residues remaining after broccoli harvest. The application of PSB at 40 t ha(-1) significantly increased the total N, total C, C/N ratio and exchangeable K but did not significantly affect soil pH, EC, available P, exchangeable Ca and Mg, and CEC. The large amounts of N2O and CO2 emissions emitted from broccoli crop residues during the fallow season may necessitate higher biochar application rates to achieve the GHG mitigation potential of biochar while maintaining a high soil nutrient status. The combined incorporation of broccoli crop residues with biochar requires further evaluation in terms of GHG emissions, soil nutrient status and broccoli crop yield in different soil types and tillage systems.
机译:硬甘蓝作物残留对温室气体(GHG)排放的影响可能因收获后管理而变化。将生物炭与西兰花残留物的掺杂可以在土壤中具有温室气体缓解潜力。进行了田间实验,以评估西兰花茶叶残留物和棕榈壳生物炭(PSB)在休耕期间GHG排放的综合作用及其作物生长的西兰花。我们还在收获后评估了植物生物质,N吸收和土壤化学性质。包括的治疗;无残基(NR),残留物(R),残基+ 10 T HA(-1)PSB(R10),残基+ 20 T HA(-1)PSB(R20)和残基+ 40 T HA(-1)PSB (R40),以完全随机的块设计排列。休息季节比作物生长季节显着高的温室气体排放。在土壤中掺入土壤中的作物残留量显着增加了N2O和二氧化碳排放,但与NR治疗相比,没有显着影响CH4排放。 PSB修正案没有显着影响来自作物残留物的N2O,CO 2和CH 4排放,以及西兰花收获后剩余的庄稼残留物的生物质和N吸收。 PSB在40tHa(-1)下的施加显着增加了总N,总C,C / N比和可更换的K,但没有显着影响土壤pH,EC,可用的P,可交换的CA和MG和CEC。在休耕期间,在西兰花植物残留物中排出的大量N2O和二氧化碳排放可能需要更高的生物炭应用率,以实现生物炭的温室气体缓解潜力,同时保持高土壤养分状态。使用Biochar的硬花甘蓝作物残留物的组合掺入需要在不同土壤类型和耕作系统中的温室气体排放,土壤养分状态和西兰花的产量方面进一步评价。

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