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浓度依赖型石墨烯对玉米幼苗发育和土壤养分的影响。

Effects of concentration-dependent graphene on maize seedling development and soil nutrients.

机构信息

College of Agriculture, Heilongjiang Bayi Agriculture University, Daqing, 163319, China.

Suihua Branch, Heilongjiang Academy of Agricultural Machinery Sciences, Suihua, 152054, China.

出版信息

Sci Rep. 2023 Feb 14;13(1):2650. doi: 10.1038/s41598-023-29725-3.

Abstract

The long-term use of chemical fertilizers to maintain agricultural production has had various harmful effects on farmland and has greatly impacted agriculture's sustainable expansion. Graphene, a unique and effective nanomaterial, is used in plant-soil applications to improve plant nutrient uptake, reduce chemical fertilizer pollution by relieving inadequate soil nutrient conditions and enhance soil absorption of nutrient components. We investigated the effects of graphene amendment on nutrient content, maize growth, and soil physicochemical parameters. In each treatment, 5 graphene concentration gradients (0, 25, 50, 100, and 150 g kg) were applied in 2 different types (single-layer and few-layers, SL and FL). Soil aggregates, soil accessible nutrients, soil enzyme activity, plant nutrients, plant height, stem diameter, dry weight, and fresh weight were all measured throughout the maize growth to the V3 stage. Compared to the control (0 g kg), we found that graphene increased the percentage of large agglomerates (0.25-10 mm) in the soil and significantly increased the geometric mean diameter (GMD) and mean weight diameter (MWD) values of > 0.25 mm water-stable agglomerates as the increase of concentration. Soil available nutrient content (AN, AP, and AK) increased, peaking at 150 g kg. Graphene boosted nutrient absorption by maize plants, and aboveground total nitrogen (TN), total phosphorus (TP), and total potassium (TK) contents rose with the increasing application, which raised aboveground fresh weight, dry weight, plant height, and stalk thickness. The findings above confirmed our prediction that adding graphene to the soil may improve maize plant biomass by enhancing soil fertility and improving the soil environment. Given the higher manufacturing cost of single-layer graphene and the greater effect of few-layer graphene on soil and maize plants at the same concentration, single-layer graphene and few-layer graphene at a concentration of 50 g kg were the optimal application rates.

摘要

长期使用化肥来维持农业生产对农田造成了各种有害影响,极大地影响了农业的可持续扩张。石墨烯是一种独特而有效的纳米材料,用于植物-土壤应用,以提高植物对养分的吸收,缓解土壤养分不足的状况,减少化肥污染,并增强土壤对养分成分的吸收。我们研究了石墨烯改良剂对养分含量、玉米生长和土壤理化参数的影响。在每个处理中,在两种类型(单层和少层,SL 和 FL)中分别应用了 5 个石墨烯浓度梯度(0、25、50、100 和 150 g kg)。在玉米生长到 V3 阶段的整个过程中,测量了土壤团聚体、土壤可利用养分、土壤酶活性、植物养分、株高、茎直径、干重和鲜重。与对照(0 g kg)相比,我们发现石墨烯增加了土壤中大团聚体(0.25-10 mm)的百分比,并随着浓度的增加,显著增加了> 0.25 mm 水稳团聚体的几何平均直径(GMD)和平均重量直径(MWD)值。土壤有效养分含量(AN、AP 和 AK)增加,在 150 g kg 时达到峰值。石墨烯促进了玉米植株对养分的吸收,地上部总氮(TN)、总磷(TP)和总钾(TK)含量随着应用的增加而增加,从而提高了地上部鲜重、干重、株高和茎粗。上述发现证实了我们的预测,即在土壤中添加石墨烯可以通过提高土壤肥力和改善土壤环境来提高玉米植物生物量。鉴于单层石墨烯的制造成本较高,而在相同浓度下少层石墨烯对土壤和玉米植物的影响更大,因此 50 g kg 的单层石墨烯和少层石墨烯浓度是最佳的应用率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c57f/9929218/04f8dc945cd4/41598_2023_29725_Fig1_HTML.jpg

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