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堆肥沼气残渣和废弃蘑菇基质作为番茄和辣椒幼苗的生长基质。

Composted biogas residue and spent mushroom substrate as a growth medium for tomato and pepper seedlings.

机构信息

Center of Biomass Engineering, Collage of Agronomy and Biotechnology, China Agriculture University, Beijing, 100193, China.

Center of Biomass Engineering, Collage of Agronomy and Biotechnology, China Agriculture University, Beijing, 100193, China.

出版信息

J Environ Manage. 2018 Jun 15;216:62-69. doi: 10.1016/j.jenvman.2017.09.056. Epub 2017 Sep 27.

Abstract

A composted material derived from biogas production residues, spent mushroom substrate (SMS) and pig manure was evaluated as a partial or total replacement for peat in growth medium for tomato and pepper seedlings. Five different substrates were tested: T1, compost + perlite (5:1, v:v); T2, compost + peat + perlite (4:1:1, v:v:v); T3, compost + peat + perlite (2.5:2.5:1, v:v:v); T4, compost + peat + perlite (1:4:1, v:v:v); and CK, a commercial peat + perlite (5:1, v:v). The physical-chemical characteristics of the various media were analyzed, and the germination rate and morphological growth were also measured. Real-time Quantitative PCR (qPCR) was used to quantify Fusarium concentrations. The addition of compost to peat-based growth medium increased the pH, electrical conductivity, air porosity, bulk density, and nutrition (NPK), and decreased the water holding capacity and total porosity. The use of compost did not affect the percent germination at day 15 of the tomato and pepper seedlings. The addition of compost resulted in better or comparable seedling quality compared with CK and fertilized CK. The best growth parameters were seen in tomato and pepper seedlings grown in T1 and T2, with higher morphological growth in comparison with CK and fertilized CK. However, T2 showed the highest Fusarium concentration compared to compost and all growth media. Fusarium concentrations in T1, T3, and T4 did not differ significantly from those in CK for tomato seedlings, and those in T1 and T4 were also similar to those in CK for pepper seedlings. The results suggest that biogas residues and SMS compost is a good alternative to peat, allowing 100% replacement, and that 20-50% replacement produces tomato and pepper seedlings with higher morphological growth and lower Fusarium concentrations.

摘要

一种由沼气生产残渣、废蘑菇基质(SMS)和猪粪组成的合成材料被评估为在番茄和辣椒幼苗生长介质中替代部分或全部泥炭。测试了五种不同的基质:T1,堆肥+珍珠岩(5:1,v:v);T2,堆肥+泥炭+珍珠岩(4:1:1,v:v:v);T3,堆肥+泥炭+珍珠岩(2.5:2.5:1,v:v:v);T4,堆肥+泥炭+珍珠岩(1:4:1,v:v:v);和 CK,一种商业泥炭+珍珠岩(5:1,v:v)。分析了各种介质的物理化学特性,并测量了发芽率和形态生长。实时定量 PCR(qPCR)用于定量尖孢镰刀菌浓度。在基于泥炭的生长介质中添加堆肥会增加 pH 值、电导率、空气孔隙率、体密度和营养(NPK),并降低持水能力和总孔隙率。堆肥的添加对番茄和辣椒幼苗第 15 天的发芽率没有影响。与 CK 和施肥 CK 相比,添加堆肥可提高幼苗质量。与 CK 和施肥 CK 相比,T1 和 T2 中番茄和辣椒幼苗的生长参数最好,形态生长较高。然而,与堆肥和所有生长介质相比,T2 显示出最高的尖孢镰刀菌浓度。T1、T3 和 T4 中番茄幼苗的尖孢镰刀菌浓度与 CK 无显著差异,T1 和 T4 中辣椒幼苗的尖孢镰刀菌浓度与 CK 相似。结果表明,沼气残渣和 SMS 堆肥是泥炭的良好替代品,可实现 100%替代,20-50%替代可产生形态生长更高、尖孢镰刀菌浓度更低的番茄和辣椒幼苗。

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