The residual impact of straw mulch and biochar amendments on soil physiochemical properties and yield of maize under rainfed system

生物炭 农学 护根物 稻草 阳离子交换容量 土壤碳 环境科学 土壤水分 土壤质量 土壤pH值 固碳 斜线和字符 营养物 土壤有机质 化学 土壤科学 二氧化碳 生物 有机化学 热解
作者
Ismail Khan,Taotao Chen,Muhammad Farooq,Ce Luan,Qi Wu,Dai wanning,Xu Su,Wang Li‐xue
出处
期刊:Agronomy Journal [Wiley]
卷期号:113 (2): 1102-1120 被引量:20
标识
DOI:10.1002/agj2.20540
摘要

Abstract Global warming and climate alterations have adversely affected agricultural production systems. The application of biochar can help mitigate climate change impacts and enhance the production and quality of agriculture. The field experiments were conducted during 2018 and 2019 to evaluate the effects of straw mulch (0 and 8 tons ha −1 ) and biochar (0, 4, 12, and 36 tons ha −1 ) on soil temperature, soil pH, bulk density, electric conductivity, cation exchange capacity, soil organic carbon, soil nutrient status (available P, K, NO 3 − , and NH 4 + ) at various soil depth (10, 20, and 30 cm), and yield and yield‐related traits of rainfed maize ( Zea mays L.). The results showed that addition of biochar regulated the soil temperature, pH, electrical conductivity, cation exchange capacity, and increased the soil organic carbon, soil nutrient status (available P, K, NO 3 − , and NH 4 + ) compared to non‐biochar‐treated soils. In contrast, the higher amount of biochar (36 tons ha −1 ) application decreased the soil bulk density compared to control. However, the combined application of straw mulch and biochar improved the grain yield and yield contributing traits of maize. In conclusion, either straw mulch and biochar or combined straw mulch + biochar‐based soil management techniques regulate the temperature and physiochemical properties of soil. These improvements in soil properties increased the grain yield of rainfed maize and help to mitigate global warming.
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