Agronomic Comparison of Mechanochemically Synthesized Zinc Borate and Other Boron Sources Granulated with Macronutrient Fertilizers

IF 3.9 3区 农林科学
Bo Zheng, Fien Degryse, Ivan B. Andelkovic, Roslyn Baird, Mike John McLaughlin
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Abstract

Abstract Purpose Boron (B) is an essential micronutrient required throughout the growth cycle of plants so effectively supplying crops with B using fertilizers is challenging. The purpose of this study was to assess the agronomic effectiveness of mechanochemically synthesized zinc borate as a slow release B source and compare it to commonly used B sources after incorporation with different macronutrient carriers. Methods Zinc borate synthesized using a green mechanochemical method as well as commercial B sources (borax, colemanite, and commercial zinc borate) were incorporated with various macronutrient fertilizers (monoammonium phosphate – MAP, muriate of potash – MOP and urea). The fertilizers were evaluated by a) assessing the solubility behaviour of these products; and b) comparing potential leaching losses, plant growth, and plant uptake through a greenhouse study. Results The mechanochemically synthesized zinc borate, commercial zinc borate, and colemanite had similar dissolution rates when MAP was the carrier, but both zinc borates dissolved more B than colemanite when MOP and urea were the carriers. In the pot trial, high losses of B in leachates resulted in low B uptake by plants fertilized with soluble sodium tetraborate. All the slow-release B sources showed less B leaching and greater B uptake compared to the soluble B treatment, but more B was leached for the mechanochemically synthesized than for the commercial zinc borate. Conclusions Our study indicates that mechanochemically synthesized zinc borate could be effective in matching plant demand for B and reducing leaching losses in high rainfall environments, particularly with urea as the carrier, while providing the benefit of lower waste stream production compared to commercial zinc borate sources.
机械化学合成硼酸锌与其他硼源颗粒化与大量养分肥料的农艺比较
硼(B)是植物生长周期中必需的微量元素,因此利用肥料有效地为作物提供B具有挑战性。本研究的目的是评估机械化学合成硼酸锌作为缓释B源的农艺效果,并将其与常用的B源在加入不同的常量营养素载体后进行比较。方法采用绿色机械化学法合成硼酸锌,并将硼源(硼砂、colemanite和硼酸锌)与多种常量营养素肥料(磷酸一铵- MAP、钾肥- MOP和尿素)混合。通过a)评估这些产品的溶解度行为来评价肥料;b)通过温室研究比较潜在的淋失、植物生长和植物吸收。结果以MAP为载体时,机械化学合成的硼酸锌、商品硼酸锌和colemanite的溶出率相似,但以MOP和尿素为载体时,硼酸锌对B的溶出率均高于colemanite。在盆栽试验中,渗滤液中B的大量损失导致施用可溶性四硼酸钠的植株对B的吸收较低。与可溶B处理相比,所有缓释B源均表现出较少的B浸出和较大的B吸收,但机械化学合成的B浸出量大于商业硼酸锌。我们的研究表明,机械化学合成的硼酸锌可以有效地满足植物对B的需求,并减少在高降雨环境下的浸出损失,特别是以尿素为载体,同时与商业硼酸锌源相比,具有更低的废物流产生的好处。
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来源期刊
自引率
10.30%
发文量
331
期刊介绍: The Journal of Soil Science and Plant Nutrition is an international, peer reviewed journal devoted to publishing original research findings in the areas of soil science, plant nutrition, agriculture and environmental science. Soil sciences submissions may cover physics, chemistry, biology, microbiology, mineralogy, ecology, pedology, soil classification and amelioration. Plant nutrition and agriculture submissions may include plant production, physiology and metabolism of plants, plant ecology, diversity and sustainability of agricultural systems, organic and inorganic fertilization in relation to their impact on yields, quality of plants and ecological systems, and agroecosystems studies. Submissions covering soil degradation, environmental pollution, nature conservation, and environmental protection are also welcome. The journal considers for publication original research articles, technical notes, short communication, and reviews (both voluntary and by invitation), and letters to the editor.
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