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Optimizing biochar application to improve soil physical and hydraulic properties in saline-alkali soils

机译:优化生物炭应用,以改善盐碱土壤土壤物理和液压特性

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摘要

Biochar application has been a promising approach to improve soil quality but their optimal amount in improving physical and hydraulic properties remains contradictory and inconclusive. The objective of this study was to examine and propose an optimal biochar application amount in saline alkali soil considering their impact on soil physical and hydraulic properties. A three-year field experiment was conducted in the saline-alkali soils under plastic film-mulched drip irrigation in Xinjiang, China. The studied physical and hydraulic properties included bulk density, soil porosity, saturated soil water content (θ_s), permanent wilting point (PWP), field capacity (FC), plant available water (PAW), spatial distribution of soil water content, planar soil water storage (PSWS), and soil evaporation. The treatments included biochar application amounts of 0 (CK), 10 (B10),50 (B50), and 100 t ha~(-1) (B100) in 2018. Additional two treatments with 25 t ha~(-1) (B25) and 301 ha~(-1) (B30) were added in 2019 and 2020, respectively. A four-parameter Gaussian function was fitted to the single-peak curves of the studied hydraulic properties vs. biochar application amounts to determine the most optimal biochar application amount. The results indicated that: (1) All of the biochar treatments significantly decreased bulk density and increased soil porosity over CK; (2) B10 and B25 treatments significantly increased θ_s, FC, PAW, PWP, and PSWS of root zones in the film-mulched zones over CK, but reverse results were observed in the B50 and B100 treatments; (3) Daily and cumulative soil evaporation were increased in no mulch zones of all biochar treatments over CK; (4) A dose of 21.9 t ha~(-1) was recommended as the most optimal biochar application amount for improving physical and hydraulic properties of saline-alkali soil. This research provided useful information on biochar application amounts for improving physical and hydraulic properties in saline-alkali soil.
机译:生物炭应用是一种有望的方法来提高土壤质量,但改善物理和液压性能方面的最佳金额仍然是矛盾和不确定的。考虑到它们对土壤物理和液压特性的影响,本研究的目的是检查并提出盐碱土壤中最佳的生物炭施用量。在中国新疆塑料薄膜覆盖滴灌的盐水 - 碱土壤中进行了三年的田间实验。所研究的物理和液压性能包括堆积密度,土壤孔隙率,饱和土壤含水量(θ_s),永久性点(PWP),现场容量(Fc),植物可用水(爪子),土壤含水量的空间分布,平面土壤储水(PSW)和土壤蒸发。该处理包括2018年的0(CK),10(B10),50(B50),50(B50)和100吨HA〜(B100)的生物炭施用量。另外两种治疗方法25吨(-1)(在2019年和2020年中加入B25)和301A〜(-1)(B30)。四参数高斯函数安装在研究液压特性的单峰曲线上方与生物炭申请金额,以确定最佳的BioChar应用量。结果表明:(1)所有生物炭治疗显着降低了堆积密度,并在CK上增加了土壤孔隙率; (2)B10和B25治疗显着增加了CK上的薄膜覆盖区中根带的θ_,Fc,PAW,PWP和PSW,但在B50和B100治疗中观察到逆转结果; (3)每日和累积土壤蒸发在CK上的所有生物炭治疗中没有覆盖物区增加; (4)建议使用21.9 T HA〜(-1)作为改善盐碱土壤物理和液压性能的最佳Biochar应用量。该研究提供了有关生物炭施用量的有用信息,用于改善盐碱土壤中的物理和液压性能。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|144802.1-144802.15|共15页
  • 作者单位

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    College of Water Resources and Architecture Engineering Northwest A&F University Yangling 712100 PR China Key Lab of Agricultural Water and Soil Engineering of Education Ministry Northwest A&F University Yangling 712100 PR China;

    Xinjiang Institute of Water Resources and Hydropower Research Urumqi 830049 Xinjiang PR China;

    School of Environmental Sciences University of Guelph Cuelph Ontario N1G 2W1 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Saline-alkali soil; Field capacity; Plant available water; Planar soil water storage; Soil evaporation;

    机译:生物炭;盐碱土壤;现场容量;植物可用水;平面土壤储水;土壤蒸发;

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