首页> 外文期刊>Journal of the Indian Society of Soil Science >Soil and Water Conservation Measures Improve Soil Microbial Activity and Carbon Sequestration: A Study on High Density Cashew in West Coast Region of India
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Soil and Water Conservation Measures Improve Soil Microbial Activity and Carbon Sequestration: A Study on High Density Cashew in West Coast Region of India

机译:水土保持措施提高土壤微生物活性与固碳——印度西海岸地区高密度腰果研究

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? 2021, Indian journals. All rights reserved.A 13-years study was conducted from 2001 to 2013 to assess the effect of soil and water conservation (SWC) measures on soil microbial activity and carbon sequestration under high density (4 m × 4 m) cashew nut on 19 sloping land in the west coast region of India. Five SWC measures namely, continuous contour trenches + vegetative barrier (CCT+VB), staggered contour trenches + vegetative barrier (SCT+VB), crescent shape trench + vegetative barrier (CST+VB), vegetative barrier (VB), and control with no SWC measures were evaluated. The CCT+VB showed the best performance with significantly higher soil organic carbon (SOC) (1.41 to 2.02) and SOC stock (SOCS) (44.9-57.8 Mg C ha-1) compared to control up to a depth of 0-0.9 m. The same treatment had significantly higher SOC sequestration rate (SOCSR) of 1.5 Mg C ha-1 yr-1 with significantly (p0.05) lower SOCSR (0.9 Mg C ha-1 yr-1). Compared to other SWC measures and control, the highest average soil microbial biomass carbon (33.9 mg kg-1) and lowest metabolic quotient (qCO2) (0.52 mg CO2-C g-1 h-1) was obtained in CCT+VB indicating better soil biological activity and alleviation of environmental stress on microbes. The study indicated that SWC measures in cashew could be adopted as a strategy to improve microbial activity and soil carbon sequestration alongside advantages of reduced soil loss, runoff, and nutrient loss.
机译:?2021 年,印度期刊。保留所有权利。从2001年到2013年,一项为期13年的研究评估了水土保持(SWC)措施对印度西海岸地区19%坡地上高密度(4 m×4 m)腰果土壤微生物活性和碳封存的影响。评估了连续等高沟+植被屏障(CCT+VB)、交错等高沟+植被屏障(SCT+VB)、月牙形沟+植被屏障(CST+VB)、植被屏障(VB)和无SWC措施对照5种SWC措施。CCT+VB在0-0.9 m深度的土壤有机碳(SOC)和土壤有机碳储量(44.9-57.8 Mg C ha-1)显著高于对照,表现出最佳性能。同一处理的SOC封存率(SOCSR)显著升高,为1.5 Mg C ha-1 yr-1,SOCSR显著降低(p<0.05)(0.9 Mg C ha-1 yr-1)。与其他SWC措施和对照相比,CCT+VB组土壤微生物生物量碳平均最高(33.9 mg kg-1)和最低代谢商(qCO2)(0.52 mg CO2-C g-1 h-1),表明土壤生物活性更好,环境对微生物的胁迫得到缓解。研究表明,腰果SWC措施可以作为提高微生物活性和土壤固碳的策略,同时具有减少土壤流失、径流和养分流失的优点。

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