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Extractability, plant yield and toxicity thresholds for boron in compost.

机译:堆肥中硼的可萃取性,植物产量和毒性阈值。

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Boron (B) is a trace element essential to crop growth in small soil concentrations (0.2-1.5 ppm), yet may produce plant toxicity symptoms readily as the amount in the soil solution increases over 2 ppm. Boron is present in significant amounts in recycled materials such as municipal solid waste (MSW) and coal fly ash, and therefore composts containing these ingredients may potentially exceed agronomic B levels, especially when used at heavy rates. Boron requirements and expression of toxicity vary widely among varying plant types. Furthermore, boron behavior in organic soils (high organic matter) is more dependent on pH than in mineral soils, thus boron effects from compost-based media may be very variable and difficult to predict. Our study examined commercial compost made with coal fly-ash used to prepare growing media for cultivars of varying sensitivity (corn, beans, cucumber, peas). We examined total vs. extractable boron content and relate final visual symptoms of B-toxicity to yields and tissue concentrations. Visual toxicity effects included tip burn (corn), leaf mottling and necrosis (beans and peas) and leaf mottling and cupping (cucumbers). Fly ash added to compost increased hot-water soluble (HWS) B in proportion to rate and in dependence on pH, with 30% and 10% of total-B expressed as HWS-B at a media pH of 6 and 7.5, respectively. Biomass for bean and cucumber was significantly reduced by 45 to 55%, respectively, by addition of 33% fly-ash compost to growing media (28 ppm total-B) while plant tissue-B increased by 6- to 4-fold, respectively. Economic yield depressions in compost media are evident for all crops and appeared at levels of HWS-B in compost media exceeding 5 ppm. The study underscores the need for careful management of exogenous factors that may be present in composts and suggests detailed understanding of media-pH and cultivar preferences may be required in preparation of growing media in order to reduce potential negative growth effects.
机译:硼(B)是在小土壤浓度(0.2-1.5 ppm)中对作物生长必不可少的微量元素,但由于土壤溶液中的硼含量超过2 ppm,可能容易产生植物毒性症状。硼大量存在于诸如城市固体废物(MSW)和粉煤灰等可循环利用的材料中,因此含有这些成分的堆肥可能会超过农艺B含量,尤其是在大量使用时。在不同的植物类型中,硼的需求量和毒性表达差异很大。此外,有机土壤(高有机质)中的硼行为比矿质土壤中的pH值更依赖于pH值,因此,基于堆肥的培养基中的硼效应可能变化很大且难以预测。我们的研究检查了用煤粉煤灰制成的商业堆肥,该堆肥用于为敏感性不同的品种(玉米,豆类,黄瓜,豌豆)准备生长培养基。我们检查了总硼含量与可提取硼含量的关系,并将B毒性的最终视觉症状与产量和组织浓度联系起来。视觉毒性影响包括烙铁头烧伤(玉米),叶斑驳和坏死(豆类和豌豆)以及叶斑驳和拔罐(黄瓜)。添加到堆肥中的粉煤灰与比率和pH值成比例地增加了热水可溶性B(HWS)B,其中总B的30%和10%在培养基pH为6和7.5时表示为HWS-B。通过向生长培养基中添加33%的粉煤灰堆肥,豆类和黄瓜的生物量分别显着减少了45%至55%(总B含量为28 ppm),而植物组织B的生物量分别增加了6至4倍。 。在所有作物中,堆肥培养基中的经济产量下降都很明显,并且在堆肥培养基中的HWS-B水平超过5 ppm时出现。这项研究强调了对堆肥中可能存在的外源因素进行仔细管理的必要性,并建议在制备生长培养基时可能需要对培养基的pH值和品种偏好的详细了解,以减少潜在的负面生长影响。

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