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基于生物质的微量营养素肥料与树莓果实的生物强化

Biomass-based micronutrient fertilizers and biofortification of raspberries fruits.

作者信息

Samoraj Mateusz, Izydorczyk Grzegorz, Krawiec Paweł, Moustakas Konstantinos, Chojnacka Katarzyna

机构信息

Department of Advanced Material Technologies, Faculty of Chemistry, Wroclaw University of Science and Technology, Smoluchowskiego 25, Wroclaw, 50-372, Poland.

Department of Advanced Material Technologies, Faculty of Chemistry, Wroclaw University of Science and Technology, Smoluchowskiego 25, Wroclaw, 50-372, Poland.

出版信息

Environ Res. 2022 Dec;215(Pt 1):114304. doi: 10.1016/j.envres.2022.114304. Epub 2022 Sep 12.

Abstract

The increasing amount of bio-waste creates the need to develop a method for efficient management based on processes that are more environmentally friendly than incineration and composting. This research aimed to utilize the waste of raspberry seeds after supercritical CO2 extraction. The biomass was enriched with micronutrients by the biosorption process to prepare micronutrient fertilizers for organic farming and biofortification of raspberries fruits. It was observed that at 100% dose of micronutrients, raspberry crop yield increased by 3%, and transfer of micronutrients to fruit biomass increased by 4.7%, 6.4%, and 8.8% (Cu, Mn, Zn, respectively) compared to commercial fertilizer. The supply of micronutrients at a dose of 150% led to a significant increase in micronutrient content of 3%, 41%, and 8% (Cu, Mn, and Zn, respectively) compared to commercial fertilizer. Research shows that the application of higher doses of micronutrients leads to the enrichment of edible parts of fruits, and fertilizers ensure environmental safety. The fruits contained on average 11.5% more microelements compared to the groups fertilized with the commercial product. The fruit yield (9.09-10.4 Mg per hectare) and the sugar content (9.82-10.2%) were also the highest. The micronutrients released from fertilizers and available to plants throughout the vegetation period affect the increase in yield, especially in the case of plants fruiting several times a year.

摘要

生物废弃物数量的不断增加,使得有必要开发一种基于比焚烧和堆肥更环保的工艺的高效管理方法。本研究旨在利用超临界二氧化碳萃取后剩余的树莓籽废弃物。通过生物吸附过程使生物质富含微量营养素,以制备用于有机农业的微量营养素肥料,并对树莓果实进行生物强化。据观察,与商业肥料相比,在100%微量营养素剂量下,树莓作物产量提高了3%,微量营养素向果实生物质的转移分别增加了4.7%、6.4%和8.8%(分别为铜、锰、锌)。与商业肥料相比,以150%的剂量供应微量营养素导致微量营养素含量显著增加,分别为3%、41%和8%(分别为铜、锰和锌)。研究表明,施用更高剂量的微量营养素会使果实可食用部分富集,并且肥料确保了环境安全。与施用商业产品施肥的组相比,果实平均含有多11.5%的微量元素。果实产量(每公顷9.09 - 10.4公吨)和含糖量(9.82 - 10.2%)也最高。在整个植被期从肥料中释放并可供植物利用的微量营养素会影响产量的增加,尤其是对于一年多次结果的植物而言。

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