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Environmentally safe release of plant available potassium and micronutrients from organically amended rock mineral powder

机译:植物可用储存的钾盐和微量营养素从有机修正的岩石矿物粉末

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摘要

The staggering production of rock dusts and quarry by-products of mining activities poses an immense environmental burden that warrants research for value-added recycling of these rock mineral powders (RMP). In this study, an incubation experiment was conducted to determine potassium (K) and micronutrients (Zn, Cu, Fe and Mn) release from a quarry RMP to support plant nutrition. Four different size fractions of the RMP were incubated with organic amendments (cow dung and legume straw) under controlled conditions for 90 days. Samples were collected at different intervals (7, 15, 30, 45, 60 and 90 days) for the analysis of available K and micronutrients in the mineral-OM mixtures and leachates. There was a significant (p0.05) increase in pH of leachates from the mineral-OM mixtures. The K release was significantly higher from the finer size fraction of RMP. About 18.7% Zn added as RMP was released during the incubation period. Zn release increased from 4.7 to 23.2% as the particle size of RMP decreased. Similarly, Cu release from RMP increased from 2.9 to 21.6%, with a decrease in the particle size. Fe and Mn recovery from RMP recorded 11.2 and 6.6%, respectively. Combined application of OM and RMP showed significantly higher nutrient release than other treatments. This study indicates that effective blending of RMP with organic amendments could be a potential source of K and micronutrients in agriculture without posing a risk of toxic element contamination to the soil.
机译:岩石粉尘和采石场的惊人的生产生产造成了巨大的环境负担,保证了这些岩石矿物粉末(RMP)的增值回收的研究。在该研究中,进行培养实验以确定从采石场RMP释放的钾(K)和微量营养素(Zn,Cu,Fe和Mn)以支持植物营养。在受控条件下,将RMP的四个不同大小的RMP孵育90天。以不同的间隔(7,15,30,45,60和90天)收集样品,用于分析矿物组混合物和渗滤液中的可用k和微量营养素。从矿物组混合物中存在显着的(P <0.05)的pH值。从RMP的细粒尺寸分数显着升高。在孵育期间释放约18.7%的Zn添加。由于RMP的粒度降低,Zn释放从4.7%增加到23.2%。类似地,从RMP释放的Cu释放从2.9%增加到21.6%,粒度降低。 FE和MN恢复分别从RMP记录11.2和6.6%。 OM和RMP的综合施用显示出比其他治疗的营养释放显着更高。该研究表明,有机rMP的有效混合可以是农业K和微量营养素的潜在来源,而不会对土壤产生有毒元素污染的风险。

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