首页> 外文期刊>International Research Journal of Pure and Applied Chemistry >Measuring and Monitoring the Impact of Precision Land Levelling and Arable Cropping Systems on Aggregate Associated Carbon Fractions and Soil Carbon Stock in Sub-tropical Ecosystems
【24h】

Measuring and Monitoring the Impact of Precision Land Levelling and Arable Cropping Systems on Aggregate Associated Carbon Fractions and Soil Carbon Stock in Sub-tropical Ecosystems

机译:测量和监测精密陆地平整和耕作种植系统对亚热带生态系统骨料相关碳分数和土壤碳股的影响

获取原文
           

摘要

The Long term experiment (2009-10 to-2018-19) was conducted to study the effects of precision land levelled (PLL) versus traditional land levelled (TLL) systems on aggregate-associated soil organic carbon (SOC) in a farmers participatory fields under sub-tropical ecosystems (Western Uttar Pradesh) of Indian conditions. The significance of this study mainly focus to determine the suitability of various labile carbon fractions as indicators of soil quality and the stability of aggregates plays a vital role in preserving and long term storing of soil organic carbon by implementing Precision Land Levelling under various arable cropping system. The treatment comprised of sixteen alternative arable cropping systems strategies viz. R-WPLL, R-WTLL, S-WPLL, S-WTLL, R-P-MbPLL, R-P-MbTLL, R-P-OPLL, R-P-OTLL, R-C-OPLL, R-C-OTLL, O-W-MbPLL, O-W-MbTLL, M-W-MbPLL, M-W-MbTLL, M-P-MbPLL, and M-P-MbTLL etc were taken with recommended dose of fertilizers and various observations were recorded. The results indicated that the M-P-MbPLL produced 79.5 kgha-1day-1 productivity and used only 110 cm irrigation water which was 48.1 per cent less than irrigation water used for R-WPLL. The land use efficiency under R-P-MbPLL, R-P-OPLL, R-P-MbPLL, R-C-OPLL and M-P-MbPLL were recorded as 86.2, 85.1, 84.8, 84.6 and 83.9%. However, energy value in terms total input energy and energy productivity were 39.9 and 218.5 GJ ha-1 over existing R-W system (32.9and105.7 GJ ha-1). The quantity of water used in the R-C-O, M-W-Mb, M-P-Mb, and O-W-Mb were 46.1, 44.9, 40.1 and 36.3 per cent less than quantity of water used for R-W system. Aggregate-associated SOC contents in 0-15 cm depth were recorded highest SOC at 15-30 cm depth in PLL systems as 9.4% for both M-P-MbPLL and M-W-MbPLL. Highest PON change in arable cropping system (30.9and40.1%) was found in O-W-Mb with precision land levelling (T11) plots followed by R-P-O with precision land levelling (T7) plots (26.1and35.8%) as compared to R-W and S-W system. The values of LFOC in surface soil were 194.7, 187.9, 176.2, 170.9, 168.5, 150.6, 132.8 and 123.8 mgkg?1 in R-P-O, R-C-O, M-W-Mb, O-W-Mb, M-P-Mb, R-P-Mb, R-W and S-W with precision land levelling treatments. Higher SOC sequestration was observed with precision land leveling along with alternative arable cropping systems with O-W-MbPLL, R-C-OPLL, R-P-OPLL, O-W-MbPLL and M-P-MbPLL respectively. Therefore, PLL systems had greater soil surface aggregation and carbon storage, land levelling did not affect SOC patterns across aggregates, but changed the distribution of aggregate size, reflecting that land levelling mainly influenced soil fertility by altering soil structure.
机译:进行了长期实验(2009-10至2018-19),以研究精密土地水平(PLL)与传统土地平等(TLL)系统对农民参与领域的总相关土壤有机碳(SOC)的影响根据印度条件的亚热带生态系统(西部北方邦)。本研究的重要性主要是重点,以确定各种不稳定碳分数的适用性,作为土壤质量的指标,聚集体的稳定性在各种耕作系统下实施精密陆地平衡来保护和长期储存土壤有机碳的重要作用。治疗由十六型替代的耕作种植系统策略致策略。 R-WPLL,R-WTLL,S-WPLL,S-WTLL,RP-MBPLL,RP-MBTLL,RP-OP-OPLL,RP-OTLL,RC-OPLL,RC-OTLL,OW-MBPLL,OW-MBTLL,MW-使用推荐的肥料剂量进行MBPLL,MW-MBTLL,MP-MBPLL和MP-MBTLL等,并记录各种观察。结果表明,M-P-MBPLL生产的79.5 kGHA-1Day-1生产率,仅使用110厘米的灌溉水,其比用于R-WPLL的灌溉水少48.1%。 R-P-MBPL1,R-P-OPL1,R-P-MBPL1,R-C-OPLL和M-P-MBPLL下的土地利用效率被记录为86.2,85.1,84.8,84.6和83.9%。然而,在现有的R-W系统中,总输入能量和能源生产率的能量值为39.9和218.5 GJ HA-1(32.9和105.7 GJ HA-1)。 R-C-O,M-W-MB,M-P-MB和O-W-MB中使用的水量为46.1,44.9,40.1和36.3%,小于用于R-W系统的水量。对于M-P-MBPL1和M-W-MBPLL,PLL系统中的15-30cm深度为0-15cm深度的聚合相关SOC内容在PLL系统中为9.4%。在OW-MB中发现了最高的PON变化(30.9和40.1%),具有精密陆地平整(T11)地块,然后具有精密陆地调平(T7)图(26.1和35.8%),与RW相比和sw系统。表面土壤中LFOC的值为194.7,187.9,176.2,170.9,168.5,150.6,132.8和123.8 mgkg?1在RPO,RCO,MW-MB,OW-MB,MP-MB,RP-MB,RW和SW中具有精密土地平整处理。用精密陆平衡以及具有O-W-MBPL1,R-C-OPLL,R-P-OPL1,O-W-MBPL1和M-P-MBPL1的替代耕地序列,观察到更高的SOC隔离。因此,PLL系统具有更大的土壤表面聚集和碳储存,陆地调平没有影响聚集体的SOC图案,而是改变了总体尺寸的分布,反映了土地水平主要影响土壤结构的土壤肥力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号