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首页> 外文期刊>Compost Science & Utilization >Utilization of Bio-Municipal Solid Waste Improves Saline-Sodic Soils and Crop Productivity in Rice-Wheat
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Utilization of Bio-Municipal Solid Waste Improves Saline-Sodic Soils and Crop Productivity in Rice-Wheat

机译:生物城固体废物的利用改善了水稻小麦的盐水 - 碘土壤和作物生产率

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摘要

Solid waste management and soil degradation are the two main issues faced by the developing countries. The present study is the first effort to use bio-municipal solid waste (MSW) for the amelioration of saline-sodic soils of Pakistan. A pot experiment was conducted to evaluate the effects of MSW, farm yard manure (FM) and gypsum application on nitrate leaching, soil physicochemical characteristics and crop productivity under rice-wheat cropping system. The MSW was aerobically composted alone (MSW compost) or with FM (MSW_manure compost) or buried underground in lined pit for anaerobic decomposition (buried MSW) . Maximum nitrate leaching was observed during rice (84.91 mg L-1) and wheat (46.18 mg L-1) with buried MSW as compared with control treatment. Results showed that buried MSW significantly (p < 0.05) lowered the soil pH(s) (-5.6%), electrical conductivity (-38.8%), calcium carbonate (-45.8%)(,) and sodium adsorption ratio (-51.4%) and significantly increased the organic matter (86.3%) and cation exchange capacity (31.50%) as compared with control treatment. Path analysis showed the highest direct path coefficient during rice and the lowest one during wheat. Soil amelioration with organic amendments was further confirmed with multivariate analysis. This study has proved that buried MSW can be used as an effective solution for MSW disposal thereby improving soil physicochemical properties and crop productivity from saline-sodic soil.
机译:固体废物管理和土壤退化是发展中国家面临的两个主要问题。本研究首要努力使用生物城固体废物(MSW)进行巴基斯坦盐水土壤的改善。进行了盆栽实验,评价MSW,农场粪便粪便(FM)和石膏应用对稻米种植系统下硝酸盐浸出,土壤理化特性和作物生产力的影响。 MSW单独堆肥(MSW COPOST)或FM(MSW_MANURE COPOST)或埋在衬里坑的地下,用于厌氧分解(埋地MSW)。与对照处理相比,在水稻(84.91mg L-1)和小麦(46.18mg L-1)期间观察到最大硝酸盐浸出。结果表明,埋地MSW显着(P <0.05)降低了土壤pH(-5.6%),电导率(-38.8%),碳酸钙(-45.8%)(,)和钠吸附率(-51.4%) )与对照处理相比,有机物(86.3%)和阳离子交换能力(31.50%)显着增加。路径分析显示水稻期间最高的直接路径系数,小麦期间最低。通过多变量分析进一步证实了具有有机修改的土壤改善。本研究证明,埋地MSW可用作MSW处理的有效解决方案,从而改善了盐水钠土壤的土壤物理化学性质和作物生产率。

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