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在太阳能温室番茄植株上应用 PBAT/PLA 腐殖酸可生物降解膜可增加番茄红素含量,降低总酸含量。

PBAT/PLA humic acid biodegradable film applied on solar greenhouse tomato plants increased lycopene and decreased total acid contents.

机构信息

Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences, Beijing 100081, China.

Shandong Agricultural University, Tai'an, Shandong 271018, China.

出版信息

Sci Total Environ. 2023 May 1;871:162077. doi: 10.1016/j.scitotenv.2023.162077. Epub 2023 Feb 9.

Abstract

This work aims to resolve residual film pollution in farmlands and improve tomato quality. The mechanical properties and degradation of PBAT/PLA lignin (MZS) and PBAT/PLA humic acid (FZS) composite biodegradable film were analyzed, and its effect on soil temperature and humidity, soil microorganisms, soil physical and chemical properties, tomato yield, and quality was studied. Polyethylene film (PE) was used as a control. The results demonstrate a higher degradation degree of FZS film than of MZS film. The degradation degree of FZS and MZS films reached level 2 and level 1, respectively, after 131 days of film covering. The weight loss rate of FZS and MZS films reached 52.74 % and 57.82 %, respectively, when buried for 160 days. Compared to the coverings of PE and MZS films, FZS film could significantly increase the soil's electric conductivity and organic matter content (p < 0.05). The relative abundance of soil fungi Chaetomium also increased. The yield, soluble solids, vitamin C (Vc), soluble sugar, and lycopene of tomato plants covered with FZS film significantly increased by 6.74 %, 8.75 %, 15.41 %, 8.30 %, and 27.27 % compared to plants covered with PE film, and the total acid and hardness significantly decreased by 24.95 % and 8.46 %, respectively (p < 0.05). Using 10 μm PBAT/PLA humic acid biodegradable film for tomato cultivation in autumn and winter increased the lycopene and decreased the total acid content by changing the soil's physical and chemical characteristics and increasing the content of Chaetomium soil.

摘要

本研究旨在解决农田残留地膜污染问题,提高番茄品质。分析了 PBAT/PLA 木质素(MZS)和 PBAT/PLA 腐殖酸(FZS)复合可生物降解膜的力学性能和降解性能,并研究了其对土壤温度和湿度、土壤微生物、土壤理化性质、番茄产量和品质的影响。以聚乙烯膜(PE)为对照。结果表明,FZS 膜的降解程度高于 MZS 膜。在覆盖薄膜 131 天后,FZS 和 MZS 薄膜的降解程度分别达到 2 级和 1 级。当埋地 160 天时,FZS 和 MZS 薄膜的失重率分别达到 52.74%和 57.82%。与 PE 和 MZS 薄膜的覆盖相比,FZS 薄膜可显著提高土壤电导率和有机质含量(p < 0.05)。土壤真菌 Chaetomium 的相对丰度也增加。用 FZS 薄膜覆盖的番茄植株的产量、可溶性固形物、维生素 C(Vc)、可溶性糖和番茄红素分别比用 PE 薄膜覆盖的植株增加了 6.74%、8.75%、15.41%、8.30%和 27.27%,总酸和硬度分别降低了 24.95%和 8.46%(p < 0.05)。在秋冬季节使用 10 μm 的 PBAT/PLA 腐殖酸可生物降解膜进行番茄种植,通过改变土壤的物理化学特性和增加土壤中 Chaetomium 的含量,增加了番茄红素,降低了总酸含量。

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