首页> 外文期刊>ACS Sustainable Chemistry & Engineering >A Green Approach to Copper-Containing Pesticides: Antimicrobial and Antifungal Activity of Brochantite Supported on Lignin for the Development of Biobased Plant Protection Products
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A Green Approach to Copper-Containing Pesticides: Antimicrobial and Antifungal Activity of Brochantite Supported on Lignin for the Development of Biobased Plant Protection Products

机译:一种含铜农药的绿色方法:对木质素的抗菌和抗真菌活性用于生物植物保护产品的开发

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摘要

After cellulose, lignin is the most abundant plant-derived polymer in nature. It provides mechanical support to plants, but it has also a defense role against pests and diseases, thanks to antioxidant, bactericidal, and antifungal properties, deriving from its polyphenolic nature. Huge quantities of technical lignins are obtained during several industrial processes and they actually represent a waste of paper pulp and bioethanol industry. Although in the last decades many efforts have been directed to obtain lignin valorization in several fields and for diverse applications, this biobased polymer is still largely underutilized. In particular, very little is known about the possibility to exploit its antioxidant, antifungal, and antibacterial properties in the agronomical field. On the other hand, pest control is often achieved by using copper-based pesticides, but environmental and health issues urge for novel solutions implying reduced copper content. We here describe novel hybrid organic-inorganic materials obtained by combining copper(II) salts with two types of technical lignins. Cu-containing materials (lignin@Cu) have been characterized by different techniques, including X-ray powder diffraction and transmission electron spectroscopy analyses, revealing nanocrystals of brochantite (Cu4SO4(OH)(6)) grown in the lignin matrix. Lignin@Cu was tested for its antifungal and antibacterial profile against a vast panel of pathogens of agronomical interest. Furthermore, preliminary tests on crops in a greenhouse were performed: lignin@Cu had better performances than a commercial pesticide based on copper(II) hydroxide on tomato plants against Rhizoctonia solani, indicating a great potential of these materials as plant protection products.
机译:纤维素后,木质素是本质上最丰富的植物衍生的聚合物。它为植物提供机械支持,但由于抗氧化剂,杀菌和抗真菌性,它也对害虫和疾病的防御作用,源于其多酚性质。在几种工业过程中获得了大量的技术木质素,其实际上代表了纸浆和生物乙醇行业的浪费。虽然在过去的几十年中,许多努力都曾经在几个领域获得木质素贪污,但这种生物化聚合物仍然很大程度上未充分利用。特别是,众所周知,有可能利用该农艺领域的抗氧化剂,抗真菌和抗菌性质的可能性。另一方面,通过使用基于铜的农药来往往实现害虫控制,但新的解决方案促使暗示铜含量降低的新溶液的环境和健康问题。我们在此描述通过将铜(II)盐与两种类型的技术木质素组合而获得的新型杂种有机无机材料。含Cu的材料(Lignin @ Cu)的特征在于不同的技术,包括X射线粉末衍射和透射电子光谱分析,揭示在木质素基质中生长的铜锰(Cu4SO4(OH)(6))的纳米晶体。对其抗真菌病原体的抗真菌和抗菌概况进行了测试,对其抗真菌和抗菌概况进行了测试。此外,进行了温室中的作物的初步试验:木质素@ Cu基于基于番茄植物的铜(II)氢氧化铜对抗Rhizoctonia Solani的铜(II),表明这些材料的巨大潜力是植物保护产品的巨大潜力。

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