The Effect of Water–Zeolite Amount–Burial Depth on Greenhouse Tomatoes with Drip Irrigation under Mulch

Author:

Zhang Ming1,Lei Tao1,Guo Xianghong1ORCID,Liu Jianxin2,Gao Xiaoli1,Lei Zhen1,Ju Xiaolan1

Affiliation:

1. College of Water Resource Science and Engineering, Taiyuan University of Technology, Taiyuan 030024, China

2. College of Chemical Engineering and Technology, Taiyuan University of Technology, Taiyuan 030024, China

Abstract

The water–zeolite amount–burial depth coupling regulation strategy of high-quality and high-yield tomatoes was explored with drip irrigation under mulch. Greenhouse planting experiments were performed to monitor and analyze the tomato growth, physiology, yield, quality, and water use efficiency (WUE). The suitable amounts of the water–zeolite amount–burial depth for the tomato growth were determined through the analytic hierarchy process (AHP). The results showed that the effects of increasing the water of the intercellular CO2 concentration (Ci), nitrate content (NO), vitamin content (VC), and soluble solids (SS), increasing the WUE, increasing the zeolite amount of the NO, and increasing the zeolite burial depth of the Ci and SS, were inhibited. The effects of increasing the zeolite amount of the plant height (Kh), stem thickness (Kt), total root length (Rl), total root volume (Rv), root average diameter (Rd), net photosynthetic rate (Pn), stomatal conductivity (Gs), organic acid (OA), VC, yield (Ay), and WUE, and of increasing the zeolite burial depth of the Kh, OA, dry matter quality (Ad), and WUE, were promoted first and then inhibited. The other indicators showed a positive response to increasing the water, zeolite amount, and burial depth. The influence of the water (W), zeolite amount (Z), and zeolite depth (H) on the Kt, Tr, Rl, and Rd, was W > H > Z, and that of the Kh, Gs, Pn, Ci, Ra, Rv, OA, VC, NO, SS, Ad, Ay, and WUE was W > Z > H. The order of weight of each index, based on the AHP, is as follows: Ay > WUE > NO > OA > Ad > Kh > Kt > VC > SS > Pn > Rv > Rd > Tr. The highest comprehensive score was W70–90Z6H15, and the most suitable water conditions for the tomato planting under drip irrigation were 70–90% field capacity, 6 t/hm2 zeolite, and 15 cm depth of zeolite.

Funder

National Natural Science Foundation Program

China Postdoctoral Science Foundation

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference53 articles.

1. Nutritional value of tomatoes (Solanum lycopersicum L.) grown in greenhouse by different agronomic techniques;Erba;J. Food Compos. Anal.,2013

2. Influence of different types of fertilisers on the major antioxidant components of tomatoes;Toor;J. Food Compos. Anal.,2006

3. An improved water footprint methodology linking global consumption to local water resources: A case of Spanish tomatoes;Chapagain;J. Environ. Manag.,2009

4. Effects of high temperature and drought stress on growth, nutrient concentration, and nutrient use efficiency of tomato seedlings;Wang;Acta Ecol. Sin.,2019

5. Effects of sub-low temperature and drought stress on water transport and morphological anatomy of tomato plant;Xiao;J. Appl. Ecol.,2020

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