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首页> 外文期刊>Journal of Environmental Management >Effect of biochar addition on CO_2 exchange in paddy fields under water-saving irrigation in Southeast China
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Effect of biochar addition on CO_2 exchange in paddy fields under water-saving irrigation in Southeast China

机译:中国东南省节水灌溉下稻田CO_2交换对CO_2交换的影响

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摘要

Biochar has been widely applied to paddy fields to improve soil fertility, crop productivity and carbon sequestration, thereby leading to variations in the CO_2 exchange between the paddy fields under flooding irrigation and the atmosphere, as indicated by many previous reports. However, few relevant reports have focused on paddy fields under water-saving irrigation. This study conducted a field experiment to investigate the effects of three biochar addition rates (0, 20 and 40 t ha~(-1)) on the CO_2 exchange between paddy fields under controlled irrigation (CI, a water-saving irrigation technique) and the atmosphere in the Taihu Lake region of Southeast China. Our results showed that biochar addition increased the paddy field ecosystem respiration (R_(eco)) and the soil respiration rate (R_s) in the CI paddy fields. And biochar application increased the total CO_2 emissions and the total soil CO_2 emissions, especially at a rate of 40 t ha~(-1). In contrast, gross primary productivity (GPP) was decreased and the net ecosystem exchange of CO_2 (NEE) was increased with biochar addition. However, biochar addition at a rate of 20 t ha~(-1) significantly increased the total CO_2 absorption and the net CO_2 absorption of the CI paddy fields (p < 0.05), whereas biochar addition at a rate of 40 t ha~(-1) had no effect on the total CO_2 absorption and decreased the total net CO_2 absorption. At the same time, biochar addition significantly increased soil catalase, invertase and urease activities and contributed substantially to the increase in soil invertase activity. In addition, the soil bacterial, fungal and actinomycetal abundances were evidently increased with biochar addition, of which the soil fungal abundance showed the greatest increase. A high correlation was observed between soil catalase and invertase activities and soil microbial abundance. R_(eco) was highly correlated with air and soil temperatures and soil enzyme activity. A significant quadratic polynomial correlation was observed between GPP and leaf area index (p < 0.01). The combination of biochar addition at a rate of 20 t ha~(-1) and water-saving irrigation has the potential to increase the size of the carbon sink and promote soil enzyme and microbial activities in paddy field ecosystems.
机译:BioChar已被广泛应用于稻田,以改善土壤肥力,作物生产力和碳封存,从而导致稻田和大气下的稻田之间的CO_2交换变化,如前以前的许多报道所示。但是,很少有相关报告专注于节水灌溉下的稻田。本研究进行了一个现场实验,以研究三种生物炭加入率(0,20和40吨HA〜(-1))对受控灌溉(CI,节水灌溉技术)和稻田之间的CO_2交换的影响中国东南太湖地区的氛围。我们的研究结果表明,Biochar加入了CI稻田中的稻田生态系统呼吸(R_(ECO))和土壤呼吸速率(R_S)。 BioChar应用程序增加了总CO_2排放和总土壤CO_2排放,特别是以40ta〜(-1)的速率。相比之下,初级生产率(GPP)减少,并且通过生物炭加入增加了CO_2(NEE)的净生态系统交换。然而,Biochar以20ta〜(-1)的速率加入显着增加CI稻田的总CO_2吸收和净CO_2吸收(P <0.05),而Biochar以40 t ha〜( -1)对总CO_2的吸收没有影响并降低总净CO_2吸收。同时,生物炭加入显着增加土壤过敏酶,转化酶和脲酶活性,并基本上促进土壤转化酶活性的增加。此外,土壤细菌,真菌和放线性丰度明显增加了生物炭加入,其中土壤真菌丰度显示出最大的增加。土壤过缩酶与逆变酶活性和土壤微生物丰度之间观察到高相关。 R_(ECO)与空气和土壤温度和土壤酶活性高度相关。在GPP和叶面积指数之间观察到显着的二次多项式相关(P <0.01)。 Biochar的组合以20tHA〜(-1)和节水灌溉的速率增加,有可能增加碳汇的尺寸并促进稻田生态系统中的土壤酶和微生物活动。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第1期|111029.1-111029.10|共10页
  • 作者单位

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Hohai University Nanjing PR China College of Agricultural Engineering Hohai University Nanjing PR China;

    College of Agricultural Engineering Hohai University Nanjing PR China;

    College of Agricultural Engineering Hohai University Nanjing PR China;

    College of Agricultural Engineering Hohai University Nanjing PR China;

    College of Agricultural Engineering Hohai University Nanjing PR China;

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Hohai University Nanjing PR China College of Agricultural Engineering Hohai University Nanjing PR China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Controlled irrigation; Rice field; CO_2 emissions; Soil enzyme activity; Soil microbial abundance;

    机译:生物炭;受控灌溉;稻田;CO_2排放;土壤酶活性;土壤微生物丰富;

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