Suppr超能文献

酸处理生物固体的施用对万寿菊(孔雀草)生长发育的影响。

Effect of the application of acid treated biosolids on marigold (Tagetes erecta) development.

作者信息

Díaz-Avelar J, Barrios J A, Jiménez B

机构信息

Institute of Engineering, National University of Mexico (UNAM). Apartado Postal 70-472, Coyoacan 04510, Mexico, DF, Mexico.

出版信息

Water Sci Technol. 2004;50(9):33-40.

Abstract

The use of biosolids for land restoration and crop production is a potential solution to improve food production worldwide. However, the microbial content usually restricts its application in crops that are consumed uncooked. An alternative practice is their use in floriculture. In this study, the effects of acid treated sludge on the development of marigold (Tagetes erecta) plants were evaluated under green house conditions. Biosolids were applied at the agronomic rate (AR) based on nitrogen requirements of the marigold. In addition, higher rates (10 and 20xAR) were applied to study their effect on the plants. Biosolids were mixed with tepetate (hard volcanic indurate layers). Due to its origin, tepetate lacks nutrients and organic matter to adequately support plant development. The best treatment for marigold development was 10xAR, as plants reached an average height of 107 cm, with a growing speed of 1.01 cm/d, which is 20 times more than the control. Plants that received no biosolids produced 0.25 buds and 0.5 flowers per plant. In contrast, AR and 10xAR showed a production that ranged from 2 to 29 buds/plant and 4 to 15 flowers/plant, respectively. These results indicate the viability of reusing acid treated biosolids to improve marigold development.

摘要

将生物固体用于土地修复和作物生产是提高全球粮食产量的一种潜在解决方案。然而,微生物含量通常限制了其在未经烹饪食用的作物中的应用。另一种做法是将它们用于花卉种植。在本研究中,在温室条件下评估了酸处理污泥对万寿菊(Tagetes erecta)植株生长的影响。根据万寿菊的氮需求,以农艺速率(AR)施用生物固体。此外,还施用了更高的速率(10倍和20倍AR)来研究其对植株的影响。生物固体与 tepetate(坚硬的火山硬结层)混合。由于其来源,tepetate缺乏足够的养分和有机质来充分支持植物生长。对万寿菊生长最好的处理是10倍AR,因为植株平均高度达到107厘米,生长速度为1.01厘米/天,是对照的20倍。未施用生物固体的植株每株产生0.25个芽和0.5朵花。相比之下,AR和10倍AR的产量分别为每株2至29个芽和4至15朵花。这些结果表明,回用酸处理的生物固体以促进万寿菊生长是可行的。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验