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煤矸石作为土壤改良剂:矸石特性评估及其对番茄植株的影响

Coal tailings as a soil conditioner: evaluation of tailing properties and effect on tomato plants.

作者信息

Yong Miing-Tiem, Babla Mohammad, Karan Shawan, Katwal Utsab, Jahandari Soheil, Matta Pushpinder, Chen Zhong-Hua, Tao Zhong

机构信息

School of Science, Western Sydney University, Penrith, NSW 2751 Australia.

Technical Support Services and Mass Spectrometry Facility, Western Sydney University, Campbelltown, NSW 2560 Australia.

出版信息

Plant Growth Regul. 2022;98(3):439-450. doi: 10.1007/s10725-022-00870-5. Epub 2022 Jul 21.

Abstract

The global coal industry yields a vast amount of tailings waste, and the utilisation of these tailings necessitates innovative efforts contributing to the United Nations Sustainable Development Goals. One of such novel initiatives is to reuse coal tailings (CT) safely, ecofriendly, and cost-effectively in agroecosystems as a soil conditioner to enhance the productivity of lands. This study aimed to evaluate the potential utilisation of coal tailings waste in the soil amelioration to improve plant performance. The physico-chemical characteristics of coal tailings from two Australian mining sites (CT1 and CT2) showed that the tailings samples are alkaline with loamy and loamy sand textures, respectively. The tailings have ~ 3% of macronutrients, high carbon (C), and low heavy metals and metalloids (As, Cd, Se, Cu, Zn, and Pb). The germination rate of tomato seeds was improved in the low-rate CT treatment. Greenhouse tomato plants exhibited an increase in leaf's K, Ca, and Mg contents in CT1 and CT2 treatments. More importantly, the CT treatment-induced accumulation of heavy metals in plants was mostly insignificant in both CT treatments. Therefore, we highlight the potential application of coal tailings as a soil conditioner because of the beneficial effect of improved carbon and nutrients (N, P, K, Mg, and Ca) in tomato leaves. Further amendment of the coal tailings should focus on the adjustment of pH and the addition of other beneficial materials for the improvement of soil properties for crops in both the greenhouse and the field.

摘要

全球煤炭行业产生了大量的尾矿废料,而对这些尾矿的利用需要做出创新性努力,以助力联合国可持续发展目标。其中一项新颖举措是在农业生态系统中安全、环保且经济高效地将煤矸石(CT)作为土壤改良剂进行再利用,以提高土地生产力。本研究旨在评估煤矸石废料在土壤改良中提高植物性能的潜在利用价值。来自澳大利亚两个矿区(CT1和CT2)的煤矸石的物理化学特性表明,尾矿样品分别呈碱性,质地为壤土和壤质砂土。尾矿含有约3%的大量营养素、高碳(C)以及低含量的重金属和类金属(砷、镉、硒、铜、锌和铅)。在低剂量CT处理下,番茄种子的发芽率有所提高。温室番茄植株在CT1和CT2处理下,叶片中的钾、钙和镁含量有所增加。更重要的是,在两种CT处理中,CT处理诱导的植物中重金属积累大多不显著。因此,我们强调煤矸石作为土壤改良剂的潜在应用价值,因为它对番茄叶片中的碳和养分(氮、磷、钾、镁和钙)有有益影响。煤矸石的进一步改良应侧重于pH值的调节以及添加其他有益物质,以改善温室和田间作物的土壤性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8da/9302870/3ce2d235181b/10725_2022_870_Fig1_HTML.jpg

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