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由啤酒厂副产品制成的生物炭的农艺潜力。

Agronomic potential of biochar prepared from brewery byproducts.

机构信息

School of Environmental Engineering, Technical University of Crete, 73100, Chania, Greece.

School of Environmental Engineering, Technical University of Crete, 73100, Chania, Greece.

出版信息

J Environ Manage. 2020 Feb 1;255:109856. doi: 10.1016/j.jenvman.2019.109856. Epub 2019 Nov 22.

Abstract

This work investigated the effect of biochar produced from brewery byproducts, spent grain and surplus yeast on the physicochemical characteristics of a calcareous loam soil and plant growth of maize (Zea mays L.). Maize is a plant which needs high nitrogen fertilization, while the effect of acidic or neutral biochars on alkaline calcareous soils has only been assessed in a few studies. The effect of biochars on dry weight, as well as the level of macro- and micronutrients in soil, and above- and belowground plant tissues, were investigated, in a 30 day experiment after seedling emergence of maize (Zea mays L.), in the presence and absence of nitrogen fertilization. The results indicated that biochar from organic brewery by-products significantly increased the dry weight of the aboveground part of the plant by 59-186%, relative to the control, without the addition of inorganic N fertilization, and by 46-157% with the addition of inorganic N fertilization. The dry weight of the belowground plant tissues significantly increased by 83-92% and 46-106%, relative to the control, with or without the addition of inorganic N fertilization, respectively. Biochar addition, especially at 5% application rate individually or in a mixture, significantly increased the phosphorus content of plant tissues. The content of potassium in the plants was affected mainly by the addition of biochar derived from surplus yeast, while the concentration of calcium and magnesium in plant tissues was positively affected by spent grain biochar, in absence of inorganic nitrogen fertilization. Addition of biochars produced from brewery byproducts improved soil fertility parameters, particularly the contents of total organic carbon (by 133% and 118% with or without fertilization, respectively), total nitrogen (by 120% and 81% respectively) and available phosphorus in the studied loam calcareous soil. Overall, biochar from brewery wastes showed the potential to enhance plant growth and nutrient availability, thus it is a promising organic fertilizer for sustainable agriculture.

摘要

本研究探讨了由啤酒厂副产品(废酒糟和剩余酵母)制成的生物炭对钙质壤土的理化特性和玉米(Zea mays L.)生长的影响。玉米是一种需高氮施肥的作物,而关于酸性或中性生物炭对碱性钙质土壤的影响,仅有少数研究进行了评估。本研究在玉米幼苗出苗 30 天后,调查了生物炭对干重以及土壤中大量和微量元素水平、地上和地下植物组织的影响,实验中有无添加氮肥。结果表明,与对照相比,在不添加无机氮肥的情况下,有机啤酒厂副产品生物炭可使植物地上部分的干重分别增加 59-186%,在添加无机氮肥的情况下,干重增加 46-157%。与对照相比,添加生物炭后,地下植物组织的干重分别增加 83-92%和 46-106%,无论是否添加无机氮肥。生物炭的添加,特别是在 5%的添加率下单独或混合添加,显著增加了植物组织中的磷含量。植物中钾的含量主要受剩余酵母生物炭添加的影响,而在无无机氮肥的情况下,植物组织中钙和镁的浓度则受到废酒糟生物炭的积极影响。生物炭的添加提高了土壤肥力参数,特别是在有或无施肥的情况下,总有机碳(分别增加 133%和 118%)、总氮(分别增加 120%和 81%)和有效磷的含量。总的来说,来自啤酒厂废物的生物炭具有提高植物生长和养分有效性的潜力,因此是可持续农业的一种很有前途的有机肥料。

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