用于可持续农业的厨余生物炭:对土壤酶、微生物群落、莴苣和蚯蚓的影响。

Chemosphere Pub Date : 2024-10-01 Epub Date: 2024-10-16 DOI:10.1016/j.chemosphere.2024.143552
Athanasie Akumuntu, Eun Hea Jho, Seong-Jik Park, Jin-Kyung Hong
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引用次数: 0

摘要

本研究调查了食物垃圾生物炭(FWB)对土壤生物特性的影响,包括微生物群落结构、酶活性、莴苣生长和蚯蚓生态毒性。这项对各种土壤生物的整体评估被用来评估 FWB 作为土壤改良策略的潜力。利用土壤中不同的 FWB 浓度(0-3% w/w)进行了为期 28 天的盆栽实验。枸杞多糖的存在提高了碱性磷酸酶和β-葡萄糖苷酶的活性,与枸杞多糖的浓度成正比。同样,28 天后脱氢酶的活性与 FWB 浓度呈正相关。值得注意的是,施用 FWB 改善了土壤中细菌的多样性,尤其是烃噬菌体,同时也促使真菌群落结构在类别水平上发生变化。添加 FWB 后,莴苣的生长状况(包括总鲜重、芽长和叶片数)也普遍得到改善,尤其是在浓度较高的情况下。重要的是,FWB 不会对蚯蚓的存活率或体重产生不利影响。总之,这些研究结果表明,FWB 可以增强土壤微生物酶的活性,支持促进植物生长的根瘤菌,从而有可能提高作物产量。这凸显了 FWB 作为一种生态友好型土壤改良策略的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Food waste biochar for sustainable agricultural use: Effects on soil enzymes, microbial community, lettuce, and earthworms.

This study investigates the effects of food waste biochar (FWB) on the biological properties of soil, including the microbial community structure, enzyme activities, lettuce growth, and earthworm ecotoxicity. This holistic assessment of various soil organisms was used to assess the potential of FWB as a soil amendment strategy. Pot experiments were carried out over a 28-d period using various FWB concentrations in soil (0-3% w/w). The presence of FWB enhanced the activity of alkaline phosphatase and beta-glucosidase in proportion to the FWB concentration. Similarly, the dehydrogenase activity after 28 d was positively correlated with the FWB concentration. Notably, the application of FWB improved the bacterial diversity in the soil, particularly among hydrocarbonoclastic bacteria, while also prompting a shift in the fungal community structure at the class level. Measures of lettuce growth, including total fresh weight, shoot length, and leaf number, also generally improved with the addition of FWB, particularly at higher concentrations. Importantly, FWB did not adversely affect the survival or weight of earthworms. Collectively, these findings suggest that FWB can enhance soil microbial enzyme activity and support plant growth-promoting rhizobacteria, potentially leading to increased crop yields. This highlights the potential of FWB as an eco-friendly soil amendment strategy.

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