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Methane uptake by saline-alkaline soils with varying electrical conductivity in the Hetao Irrigation District of Inner Mongolia, China

机译:盐水碱土壤甲烷摄取,中国内蒙古季茂灌区的电导率不同电导率

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摘要

Soil salinization adversely affects sustainable land use and limitation of greenhouse gas emission. Methane (CH4) uptake and the specific activity of methanotrophs in three saline-alkaline soilsS1, electrical conductivity (EC) 4.80dSm(-1); S2, EC 2.60dSm(-1); and S3, EC 0.74dSm(-1)were observed and measured across crop phenological development in the Hetao Irrigation District of Inner Mongolia, China. There were significant differences in CH4 uptake between the three soil types. The cumulative uptake of CH4 was 97.97mgm(-2), 109.49mgm(-2), and 150.0mgm(-2) in S1, S2, and S3, respectively. Cumulative CH4 uptake was 35%, 35%, and 53% lower in S1 than in S3, and was 27%, 28%, and 19% lower in S2 than in S3 in 2014, 2015, and 2016, respectively. Differences in CH4 uptake were driven by the different specific activities of the methanotrophs in the three soils, of which the key controlling factor was soil EC. The findings demonstrate that saline-alkaline soils with high EC led to low CH4 uptake and thereby significantly increased the total greenhouse effect of CH4.
机译:土壤盐渍化对温室气体排放的可持续土地利用产生不利影响。甲烷(CH4)吸收和三种盐碱污垢中甲蛋白的特异性活性,电导率(EC)4.80Dsm(-1); S2,EC 2.60DSM(-1);和S3,EC 0.74DSM(-1)在中国内蒙古内蒙古季度灌溉区的作物鉴效发展中​​观察和测量。三种土壤类型之间的CH4摄取存在显着差异。 CH4的累积摄取分别为97.97mgm(-2),109.49mgm(-2)和150.0mgm(-2),分别在S1,S2和S3中。 S1中累积CH4摄取量高出35%,35%和53%,分别比S3中的27%,28%和19%低于2014年,2015年和2016年的S3。 CH4摄取的差异是由三种土壤中甲蛋白的不同比例驱动,其中关键控制因子是土壤EC。研究结果表明,具有高EC的盐水 - 碱性土壤导致低CH4摄取,从而显着提高了CH4的总温室效应。

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