use of the biopore technique to improve soil quality and the growth of beach Casuarina plants on the reclaimed former tin mine land in Bangka Belitung Islands

Q3 Social Sciences
Fadhlan Nugraha, A. Akbar, Jumiati Jumiati
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Abstract

The tin mining process removes soil layers so that the soil becomes dry and nutrient-poor. Reclamation of tin mining in Selingsing, Gantung Sub-district, Belitung Timur Regency, Bangka Belitung Islands Province has been carried out through revegetation using beach Casuarina plants, but plant growth is slow. On of the efforts that can be made to improve plant growth to restore land and forest conditions is using the biopore technique combined with organic litter and bioactivator solution. This study was therefore aimed to elucidate the effect of the biopore technique on soil quality and the growth of beach Casuarina on the reclaimed former tin mine land. Treatments tested were the use of bamboo biopores and without the use of bamboo biopores, with five replications in each treatment. The effect of variation was measured based on nitrogen, phosphorus, potassium, and lead contents in the root zone and plant growth (plant height and diameter). The results showed that compared to those without biopore treatment, the biopore treatment significantly increased nitrogen, phosphorus, and potassium contents by 0.67%, 2.12%, and 19%, respectively. The organic component of biopore treatment influenced the formation of metal bonds, as indicated by a decrease in lead content by 0.35%. The best plant height of 42 cm was observed in the treatment without biopore, and the best plant diameter of 2.9 cm was in the biopore treatment.
利用生物孔隙技术改善土壤质量,促进邦加勿里洞群岛前锡矿开垦地上的海滩红花草植物的生长
锡矿开采过程会带走土壤层,使土壤变得干燥且缺乏营养。Bangka Belitung 群岛省 Belitung Timur 县 Gantung 分区 Selingsing 的锡矿开采复垦工作是通过利用海滩上的 Casuarina 植物重新植被进行的,但植物生长缓慢。改善植物生长以恢复土地和森林状况的方法之一是使用生物孔技术,并结合有机垃圾和生物活化剂溶液。因此,本研究旨在阐明生物孔隙技术对土壤质量的影响,以及在开垦的前锡矿土地上海滩杉的生长情况。测试的处理为使用竹生物孔和不使用竹生物孔,每个处理有五个重复。根据根区的氮、磷、钾和铅含量以及植物生长(株高和直径)测量了变化的影响。结果表明,与未进行生物孔处理相比,生物孔处理显著提高了氮、磷和钾的含量,增幅分别为 0.67%、2.12% 和 19%。生物孔处理的有机成分影响了金属键的形成,铅含量降低了 0.35%。无生物孔处理的最佳株高为 42 厘米,生物孔处理的最佳株径为 2.9 厘米。
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来源期刊
Journal of Degraded and Mining Lands Management
Journal of Degraded and Mining Lands Management Environmental Science-Nature and Landscape Conservation
CiteScore
1.50
自引率
0.00%
发文量
81
审稿时长
4 weeks
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