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低雾度漫射玻璃对温室番茄和甜椒产量及光分布特性的影响

The Effect of Low-Haze Diffuse Glass on Greenhouse Tomato and Bell Pepper Production and Light Distribution Properties.

作者信息

Holsteens Kristof, Moerkens Rob, Van de Poel Bram, Vanlommel Wendy

机构信息

Division of Crop Biotechnics, Department of Biosystems, University of Leuven, Willem de Croylaan 42, B-3001 Leuven, Belgium.

Fruit vegetable research, Research Centre Hoogstraten, Voort 71, B-2328 Hoogstraten, Belgium.

出版信息

Plants (Basel). 2020 Jun 27;9(7):806. doi: 10.3390/plants9070806.

Abstract

Diffuse greenhouse glass can increase the production and growth of several crops, by scattering the incoming direct sunlight, which results in a better and more homogeneous light distribution in the crop canopy. Tomato and bell pepper growers in Belgium tend to install low-haze diffuse glass with a double anti-reflection (AR) coating. These glass types have a limited diffuse effect but have a higher light transmission compared to standard float glass. Therefore, tomato growers often increase stem density to maximize light interception. However, a denser crop could counteract the positive effects of diffuse glass on the vertical light distribution. In this study, the effect of low-haze diffuse glass with an AR coating was evaluated for different cropping densities for tomato and bell pepper taking into account the vertical light distribution throughout the crop canopy. Tomato plants with two stem densities (3.33 and 3.75 stems.m) and bell pepper plants (with only one stem density of 7.1 stems.m) were evaluated in a greenhouse compartment with diffuse and reference float glass during a full growing season. For tomato, a significant production increase of 7.5% was observed under diffuse glass during the second half of the growing season but only for the low stem density. The benefit of diffuse glass appears most relevant during sunny clear skies and on the sun-side-facing rows of the crop. For bell pepper, no significant production increases were noted between regular float or diffuse glass, because a bell pepper crop is typically covered with thermal screens to prevent sunburn on the fruits during sunny days. The vertical light distribution and the usefulness of AR-coated diffuse glass depends on the crop type and should be optimized accordingly by altering the stem density, leaf pruning strategy, row orientation, or crop variety.

摘要

漫射温室玻璃可以通过散射入射的直射阳光来提高几种作物的产量和促进其生长,这会使作物冠层中的光照分布更好且更均匀。比利时的番茄和甜椒种植者倾向于安装具有双层抗反射(AR)涂层的低雾度漫射玻璃。这些玻璃类型的漫射效果有限,但与标准浮法玻璃相比具有更高的透光率。因此,番茄种植者通常会增加茎密度以最大限度地拦截光照。然而,作物密度增加可能会抵消漫射玻璃对垂直光照分布的积极影响。在本研究中,考虑到整个作物冠层的垂直光照分布,评估了具有AR涂层的低雾度漫射玻璃对不同种植密度的番茄和甜椒的影响。在一个温室隔间中,对具有两种茎密度(3.33和3.75茎/平方米)的番茄植株和甜椒植株(仅一种茎密度为7.1茎/平方米)在漫射玻璃和参考浮法玻璃条件下进行了一个完整生长季节的评估。对于番茄,在生长季节的后半段,仅在低茎密度下,观察到漫射玻璃下产量显著增加了7.5%。漫射玻璃的益处似乎在晴朗的晴天以及作物向阳一侧的行上最为明显。对于甜椒,普通浮法玻璃和漫射玻璃之间未观察到显著的产量增加,因为甜椒作物通常覆盖有隔热幕布以防止晴天时果实晒伤。垂直光照分布以及AR涂层漫射玻璃的效用取决于作物类型,应通过改变茎密度、叶片修剪策略、行向或作物品种来进行相应优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb0f/7412570/3155d95b3c9d/plants-09-00806-g001.jpg

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