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草木灰和水葫芦炭对温室栽培条件下粘性土壤水分蒸发的影响。

Effect of Pyrochar and Hydrochar on Water Evaporation in Clayey Soil under Greenhouse Cultivation.

机构信息

Research Center of IoT Agriculture Applications/Institute of Agricultural Information, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

Key Laboratory of Agro-Environment in Downstream of Yangtze Plain, Ministry of Agriculture and Rural Affairs/Institute of Agricultural Resources and Environment, Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

出版信息

Int J Environ Res Public Health. 2019 Jul 19;16(14):2580. doi: 10.3390/ijerph16142580.

Abstract

Greenhouse cultivation consumes large volumes of freshwater, and excessive irrigation induces environmental problems, such as nutrient leaching and secondary salinization. Pyrochar (biochar from high-temperature pyrolysis) is an effective soil amendment, and researches have shown that pyrochar application could maintain soil nutrient and enhance carbon sequestration. In addition to pyrochar from pyrolysis, hydrochar from hydrothermic carbonization is considered as a new type of biochar and has the advantages of low energy consumption and a high productive rate. However, the effect of these two biochars on water evaporation in clayey soils under a greenhouse system has seldom been studied. The relationship between water evaporation and biochar properties is still unknown. Thus, in the present study, water evaporation under pyrochar and hydrochar application were recorded. Results showed that both pyrochar and hydrochar application could inhibit water evaporation in clayey soil under greenhouse cultivation. Pyrochar showed a better inhibition effect compared with hydrochar. Correlation analysis indicated that the water evaporation rate was significantly positively correlated with bulk density of biochar ( < 0.05). Overall, application of pyrochar or hydrochar could both reduce soil bulk density and inhibit soil evaporation, and be available for greenhouse cultivation. However, the inhibition effect depends on the properties of the biochar.

摘要

温室种植消耗大量淡水,过度灌溉会导致养分淋失和次生盐渍化等环境问题。热解炭(高温热解得到的生物炭)是一种有效的土壤改良剂,研究表明,施加热解炭可以维持土壤养分并增强碳固存。除了热解炭,水热炭化得到的水炭也被认为是一种新型生物炭,具有能耗低、产率高的优点。然而,这两种生物炭对温室系统中粘性土水分蒸发的影响很少被研究。水分蒸发与生物炭特性之间的关系仍不清楚。因此,本研究记录了施加热解炭和水炭后水分的蒸发情况。结果表明,施加热解炭和水炭均可抑制温室种植粘性土中的水分蒸发。与水炭相比,热解炭的抑制效果更好。相关性分析表明,水分蒸发率与生物炭的容重呈显著正相关(<0.05)。总体而言,施加热解炭或水炭均可降低土壤容重并抑制土壤蒸发,适用于温室种植。然而,抑制效果取决于生物炭的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a681/6678632/dfeabb9d5f19/ijerph-16-02580-g001.jpg

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