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锌与生物聚合物涂层减缓氮素释放,减少尿素氨挥发并提高向日葵生产力。

Zinc Plus Biopolymer Coating Slows Nitrogen Release, Decreases Ammonia Volatilization from Urea and Improves Sunflower Productivity.

作者信息

Sadiq Maqsood, Mazhar Usama, Shah Ghulam Abbas, Hassan Zeshan, Iqbal Zahid, Mahmood Imran, Wattoo Fahad Masoud, Khan Niazi Muhammad Bilal, Bran Atiku, Arthur Kamusiime, Ali Nadeem, Rashid Muhammad Imtiaz

机构信息

Department of Agronomy, Pir Mehr Ali Shah Arid Agriculture University, Rawalpindi 46000, Pakistan.

College of Forestry, Sichuan Agriculture University, Chengdu 611120, China.

出版信息

Polymers (Basel). 2021 Sep 18;13(18):3170. doi: 10.3390/polym13183170.

Abstract

Currently, the global agriculture productivity is heavily relied on the use of chemical fertilizers. However, the low nutrient utilization efficiency (NUE) is the main obstacle for attaining higher crop productivity and reducing nutrients losses from these fertilizers to the environment. Coating fertilizer with micronutrients and biopolymer can offer an opportunity to overcome these fertilizers associated problems. Here, we coated urea with zinc sulphate (ZnS) and ZnS plus molasses (ZnSM) to control its N release, decrease the ammonia (NH) volatilization and improve N utilization efficiency by sunflower. Morphological analysis confirmed a uniform coating layer formation of both formulations on urea granules. A slow release of N from ZnS and ZnSM was observed in water. After soil application, ZnSM decreased the NH emission by 38% compared to uncoated urea. Most of the soil parameters did not differ between ZnS and uncoated urea treatment. Microbial biomass N and Zn in ZnSM were 125 and 107% higher than uncoated urea, respectively. Soil mineral N in ZnSM was 21% higher than uncoated urea. Such controlled nutrient availability in the soil resulted in higher sunflower grain yield (53%), N (80%) and Zn (126%) uptakes from ZnSM than uncoated fertilizer. Hence, coating biopolymer with Zn on urea did not only increase the sunflower yield and N utilization efficiency but also meet the micronutrient Zn demand of sunflower. Therefore, coating urea with Zn plus biopolymer is recommended to fertilizer production companies for improving NUE, crop yield and reducing urea N losses to the environment in addition to fulfil crop micronutrient demand.

摘要

目前,全球农业生产力严重依赖化肥的使用。然而,养分利用效率低是实现更高作物产量以及减少这些肥料向环境中养分流失的主要障碍。用微量营养素和生物聚合物包裹肥料可为克服与这些肥料相关的问题提供契机。在此,我们用硫酸锌(ZnS)以及硫酸锌加糖浆(ZnSM)包裹尿素,以控制其氮素释放,减少氨(NH)挥发,并提高向日葵对氮的利用效率。形态分析证实两种配方在尿素颗粒上均形成了均匀的包裹层。在水中观察到ZnS和ZnSM中的氮素缓慢释放。土壤施用后,与未包膜尿素相比,ZnSM使NH排放量降低了38%。ZnS处理和未包膜尿素处理之间的大多数土壤参数没有差异。ZnSM中的微生物生物量氮和锌分别比未包膜尿素高125%和107%。ZnSM中的土壤矿质氮比未包膜尿素高21%。土壤中这种可控的养分有效性使得与未包膜肥料相比,ZnSM处理的向日葵籽粒产量更高(53%),氮素(80%)和锌素(126%)吸收量更大。因此,在尿素上用锌包裹生物聚合物不仅提高了向日葵产量和氮素利用效率,还满足了向日葵对微量营养素锌的需求。因此,建议肥料生产公司用锌加生物聚合物包裹尿素,以提高养分利用效率、作物产量,减少尿素氮向环境中的流失,同时满足作物对微量营养素的需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/403a/8472901/49e56e1d71aa/polymers-13-03170-g001.jpg

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