宰坑结合综合养分管理改善肯尼亚东部旱地土壤团聚体稳定性、水分含量和微生物生物量

Cheruto Kebenei Mercy, Mucheru-Muna Monicah, Muriu-Ng’ang’a Felista
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引用次数: 0

摘要

这项研究试图评估选定的土壤保持和集水技术作为缓解肯尼亚东部旱地土壤水分危机、提高土壤肥力和减少土壤侵蚀的有希望的选择的影响。通过试验研究了土壤团聚体稳定性、土壤水分含量和土壤微生物量碳氮(SMBC和SMBN)对“仔”技术联合选择性养分综合改良剂的响应。井坑技术是指在旱地利用不同直径的孔或盆地进行农业活动。实验采用完全随机分组设计。采用前人研究建议的各种方法,对8个处理(0 ~ 15cm)土壤进行了实验室分析,分别为:无输入仔(ZNO)、单肥仔(ZM60)、全量化肥仔(ZF60)、有机肥+矿肥仔(ZM30F30)、常规单肥仔(CM60)、常规全量矿肥仔(CF60)、常规有机肥+矿肥仔(CM30F30)和对照仔(CNO)。与CM60相比,ZM60的稳定聚集率显著高25% (p < 0.05)。LR2019播后32 d, ZM30F30土壤含水量显著高于CM30F30 34%。ZM60的SMBC和SMBN值最高,分别比CM60高17.1%和36.5%。本研究的结果表明,将Zai技术与有机和无机改良剂结合使用作为农业干预措施的重要性,可以提高土壤团聚体稳定性,土壤水分含量和土壤微生物生物量,从而有助于整体改善土壤健康和肥力。关键词:骨料稳定性,平均重径,土壤含水量,体积含水量,载坑技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zai pit combined with integrated nutrient management for improving soil aggregate stability, moisture content and microbial biomass in drylands of Eastern Kenya
This study sought to assess the impact of selected soil conservation and water harvesting technologies as promising options for alleviating soil moisture crisis, enhancing soil fertility and reducing soil erosion in the drylands of Eastern Kenya. An experiment was set up to investigate the responses of soil aggregate stability, moisture contents and soil microbial biomass carbon and nitrogen (SMBC and SMBN) to Zai technology combined with selected integrated nutrient amendment. Zai pit technology involves the use of holes or basins with varying diameters for farming activities in drylands.  The experiment was done in a completely randomized block design. Soils (0 to 15cm) from eight treatments (replicated thrice): Zai with no input (ZNO), Zai with sole manure (ZM60), Zai with full rate chemical fertilizer (ZF60), Zai with manure and mineral fertilizer (ZM30F30), conventional with sole manure (CM60), conventional with full rate mineral fertilizer (CF60), conventional with manure and mineral fertilizer (CM30F30) and control (CNO), were subjected to laboratory analyses using various methods as suggested by previous studies. ZM60 recorded 25% significantly high (p<0.05) stable aggregation compared to CM60. 32 days after sowing in the LR2019 season, ZM30F30 recorded 34% significantly high soil moisture content than CM30F30. ZM60 recorded the highest values for SMBC and SMBN which were 17.1% and 36.5% significantly higher that value recorded CM60. The results of this study demonstrate the importance of using Zai technology combined with organic and inorganic amendments as an agricultural intervention that can improve soil aggregate stability, soil moisture content and soil microbial biomass, thus contributing in the overall improvement of soil health and fertility. Key words: Aggregate stability, Mean weight diameter, Soil moisture content, Volumetric water content, Zai pit technology.
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来源期刊
African Journal of Agricultural Research
African Journal of Agricultural Research 农林科学-农业综合
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0.00%
发文量
95
审稿时长
2.6 months
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