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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Studies on allelochemical and mineral compounds for sustainable weed control in a pavement filler from brick recycling material
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Studies on allelochemical and mineral compounds for sustainable weed control in a pavement filler from brick recycling material

机译:砖回收材料路面填料可持续杂草控制的等级化学和矿物化合物研究

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摘要

Here, organic and inorganic compounds, most of them naturally occurring, were selected on the basis of their potentially high resistance to leaching, in order to explore their potential to prevent the germination of weed seeds in inert substrates as well as in pavement filler based on brick wall recycling material (BRC). Using the weed species Lolium perenne, Poa pratensis, and Plantago lanceolata, it was shown that the susceptibility to either alkaline or allelochemical environments was plant species-dependent with regard to seed germination. In a cumulative leaching test, where a total of 53 L of water was rinsed through 1 L of filler material, the organic compounds juglone, lactic acid, pelargonic acid, and pelargonaldehyde all lost their initial inhibitory effect within a short time. In contrast, the suppressive effect of 2% w/v boric acid and 20% w/v sodium silicate (with a molar ratio of Si/Na of 3.35) was as persistent as that achieved by the sodium silicate-enriched commercial joint filler Dansand (R). Results reveal sodium silicate as the most promising tested compound to achieve a long-term weed-suppressive effect in BRC with the lowest potential harm to soil invertebrates.
机译:在这里,选择有机和无机化合物,其中大多数是自然产生的,是基于它们潜在的高抗浸出性,以探索它们在惰性基质以及基于砖墙回收材料(BRC)的路面填料中防止杂草种子发芽的潜力。利用杂草黑麦草、草地早熟禾和针叶车前,研究表明,无论是碱性环境还是化感化学环境,其对种子萌发的敏感性都取决于植物物种。在累积浸出试验中,总共53升水通过1升填料进行冲洗,有机化合物胡桃醌、乳酸、白藜芦酸和白藜芦醛都在短时间内失去了最初的抑制作用。相比之下,2%w/v硼酸和20%w/v硅酸钠(硅钠摩尔比为3.35)的抑制效果与富含硅酸钠的商业接缝填料Dansand(R)的抑制效果一样持久。结果表明,硅酸钠是最有希望在BRC中实现长期杂草抑制效果的测试化合物,对土壤无脊椎动物的潜在危害最低。

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