首页> 外文期刊>Journal of Environmental Management >Rice straw biochar application to soil irrigated with saline water in a cotton-wheat system improves crop performance and soil functionality in north-west India
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Rice straw biochar application to soil irrigated with saline water in a cotton-wheat system improves crop performance and soil functionality in north-west India

机译:稻草生物炭应用于棉花 - 小麦系统中盐水灌溉土壤的应用,提高了印度西北部的作物性能和土壤功能

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Applications of biochar to degraded soils have attracted considerable interest because of its capacity to enhance nutrients availability to the plants, sequester C and immobilize organic and inorganic pollutants. A five-year field experiment was conducted in a cotton-wheat system to investigate the effect of different levels of irrigation water salinity (0.3, 5, 10, and 15 dS m~(-1)) and rice straw biochar (0, 2, 4, and 8 t ha~(-1)) on the crop yield and soil functions. Rice straw-derived biochar was applied every year to cotton and its residual effect was observed on wheat. Results of the study indicated that regular irrigation with saline water (5-15 dS m~(-1)) reduced both seed cotton (12-44%) and wheat grain (7-27%) yield. However, application of biochar (2-8 t ha~(-1)) to plots irrigated with saline water showed 6-23% and 13-27% greater seed cotton and wheat grain yield compared with un-amended plots, respectively. Likewise, biochar application to soil irrigated with canal or saline water showed significant beneficial effects on soil pH, EC, nutrient metabolism and availability, bulk density, infiltration rate and microbial biomass carbon. Our results indicated that biochar amendment especially at the optimum rate of 4 t ha~(-1) effectively promoted crop performance by ameliorating soil physical, chemical, and biological properties. In the absence of any chemical amendment for alleviating salinity stress, the results of the present study established that the biochar holds promising potential as a soil amendment in ameliorating soil functions and promoting plant productivity under saline water irrigated conditions.
机译:生物炭对降解的土壤的应用引起了相当大的兴趣,因为它可以增强植物的营养物质,螯合C和固定有机和无机污染物的能力。在棉质 - 小麦系统中进行了五年的田间实验,以研究不同水平的灌溉水分(0.3,5,10和15ds m〜(-1))和稻草生物炭(0,2 4和8 T ha〜(-1))作物产量和土壤功能。每年施加稻草衍生的生物炭,并在小麦上观察到其残留效果。该研究的结果表明,盐水的规则灌溉(5-15ds m〜(-1))降低种子棉(12-44%)和小麦谷物(7-27%)产率。但是,与盐水灌溉的Biochar(2-8 T ha〜(-1)的施用分别与未修正的图相比,施用盐水灌溉的灌溉淋浴显示6-23%和13-27%。同样地,生物炭应用于用管道或盐水灌溉的土壤施用对土壤pH,EC,营养代谢和可用性,堆积密度,渗透率和微生物生物质碳具有显着的有益效果。我们的结果表明,Biochar修正案尤其是通过改善土壤物理,化学物质和生物学性能的4 T HA〜(-1)的最佳速率。在没有任何用于缓解盐度应激的化学修正的情况下,本研究的结果确定了生物炭持有可能作为改善土壤功能的土壤修正和促进盐水灌溉条件下的植物生产率的有希望的潜力。

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