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生物除草剂的应用技术:干菌剂和液体喷雾制剂面临的挑战与机遇

Application technology for bioherbicides: challenges and opportunities with dry inoculum and liquid spray formulations.

作者信息

Hewitt Andrew J, Galea Victor J, O'Donnell Christopher

机构信息

The University of Queensland, School of Agriculture and Food Sustainability, Gatton, Queensland, Australia.

出版信息

Pest Manag Sci. 2024 Jan;80(1):72-80. doi: 10.1002/ps.7823. Epub 2023 Nov 29.

Abstract

Bioherbicides offer many potential benefits as part of an integrated weed management system or a totally biological or organic cropping system. A key factor for success is the selection of appropriate formulation and delivery systems for each target weed and cropping/climatic region. For dry inoculum products, we discuss direct implantation as an example for successful control of woody weeds, with benefits in control extending beyond the treated weeds to surrounding weeds. These applications do not require water and will become less labor-intensive with future robotic application platforms. Indeed, all bioherbicide applications are likely to improve and become more cost-effective with the advance of new application platforms with sensors and targeted control at lower application volume rates. Unmanned aerial vehicles, as new application platforms, are one of several such potential progressive application systems for liquid formulations, and we discuss product design to maintain optimum conditioning of the active ingredient(s) and storage stability. The delivery system must not adversely affect the products and the application volume rate must be appropriate for coverage on the target. Where applied with other products, compatibility must be ensured and appropriate mixing orders observed to assure performance and avoid precipitation or settling. Droplet size is important for allowing the active materials to be included in the spray, which may require droplets with diameter >150 μm for some larger particle biologically active agents. However, droplet size should not be too large to achieve target coverage. In some cases, that may be plant stems rather than leaves, or narrow grass weeds which tend to have highest spray collection efficiency for small droplets. Narrow droplet size spectrum nozzles may help optimize droplet size. We propose spray calculators to help optimize performance for coverage, retention and avoidance of drift losses, bounce, shatter and runoff. These include regulatory-supported, validated models. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

摘要

作为综合杂草管理系统或完全生物或有机种植系统的一部分,生物除草剂具有许多潜在益处。成功的一个关键因素是为每个目标杂草以及种植/气候区域选择合适的制剂和施药系统。对于干接种剂产品,我们以直接植入为例讨论其成功防治木本杂草的情况,其防治效果不仅限于处理过的杂草,还能扩展到周围杂草。这些应用不需要水,并且随着未来机器人施药平台的出现,劳动强度将会降低。事实上,随着具有传感器且能以较低施药量进行精准控制的新施药平台的发展,所有生物除草剂应用都可能得到改进并变得更具成本效益。无人驾驶飞行器作为新的施药平台,是液体制剂几种潜在的先进施药系统之一,我们讨论了产品设计以保持活性成分的最佳状态和储存稳定性。施药系统不得对产品产生不利影响,施药量必须适合目标覆盖范围。与其他产品混合使用时,必须确保兼容性并遵循适当的混合顺序,以保证性能并避免沉淀或沉降。液滴大小对于使活性物质包含在喷雾中很重要,对于一些较大颗粒的生物活性剂,可能需要直径大于150μm的液滴。然而,液滴大小也不应过大以至于无法实现目标覆盖。在某些情况下,目标可能是植物茎干而非叶片,或者是窄叶杂草,对于小液滴而言,窄叶杂草往往具有最高的喷雾收集效率。窄液滴大小谱喷嘴可能有助于优化液滴大小。我们建议使用喷雾计算器来帮助优化覆盖、滞留以及避免漂移损失、弹跳、破碎和径流的性能。这些包括得到监管支持的经过验证 的模型。© 2023作者。《害虫管理科学》由约翰·威利父子有限公司代表化学工业协会出版。

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