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Horticultural systems-engineering and economic evaluations of short-term plant storage techniques as a labor management tool for vegetable grafting nurseries

机译:短期植物存储技术的园艺系统工程和经济评估作为蔬菜嫁接苗圃的劳动管理工具

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摘要

This transdisciplinary study has a three-fold systems approach in evaluating a horticultural technology: 1) horticultural evaluations, 2) economic and resource analyses, and 3) systems engineering analyses, using low temperature storage as an example technology. Vegetable grafting is a technique to produce value-added seedlings but requires labor intensive nursery operations. Low temperature storage of seedlings for a short period of time can reduce peak production, but has not been evaluated at the extent demonstrated in this paper. Seedlings of 22 genotypes of Cucurbitaceae (cucurbit family) and Solanaceae (nightshade family) were evaluated for storability under selected temperatures and photosynthetic photon flux. Storability of Cucurbitaceous seedlings varied between 2 to 4 weeks at 12°C and 13 μmol m-2 s-1. Solanaceous seedlings were generally storable for 4 weeks at 12°C and 13 μmol m-2 s-1, but tomato seedlings could be stored for 4 weeks at 10°C and 5 μmol m-2 s-1. Capital and weekly operational costs of a low temperature storage system with a design that meets environmental requirements were estimated as $671 to $708 per m2 footprint and $0.79 to $2.21 per m2 footprint per week, respectively. Electricity costs per plant was less than 0.1 cents for 2 to 4 weeks of storage. Using a schedule-optimization heuristic and a logistics simulator previously developed for grafting nursery operations, six production scenarios consisting of two crops (tomato or watermelon) and three production peak patterns were examined to evaluate the impact of including low temperature storage. While the overall average costs of grafting labor were not significantly different, maximum labor demand and grafting labor cost during the peak production week were reduced by 31% to 50% and 14% to 30% by using storage, respectively. Therefore, low temperature storage can be an effective means to address the issue of labor management in grafting nurseries.
机译:这项跨学科研究采用三种系统方法来评估园艺技术:1)园艺评估,2)经济和资源分析,以及3)系统工程分析,以低温存储为例。蔬菜嫁接是生产增值苗木的技术,但需要大量劳动的苗圃操作。短时间将幼苗低温保存可降低峰值产量,但尚未在本文证明的范围内进行评估。在所选温度和光合作用光子通量下,评估了22个基因型的葫芦科(葫芦科)和茄科(茄科)的幼苗的耐贮性。葫芦科幼苗在12°C和13μmolm -2 s -1 的贮藏时间为2至4周。茄型幼苗通常在12°C和13μmolm -2 s -1 的条件下可保存4周,而番茄幼苗可在10°C和60°C的温度下保存4周。 5μmolm -2 s -1 。设计满足环境要求的低温存储系统的资本和每周运营成本估计为$ 671至$ 708每m 2 足迹和$ 0.79至$ 2.21每m 2 足迹每周。每2到4周的存储,每家工厂的电力成本不到0.1美分。使用计划优化启发式方法和先前为嫁接苗圃操作开发的物流模拟器,检查了由两种作物(番茄或西瓜)和三种生产高峰模式组成的六个生产场景,以评估包括低温存储在内的影响。虽然嫁接劳动力的总体平均成本没有明显差异,但在高峰生产周期间,通过使用存储,最大劳动力需求和嫁接劳动力成本分别降低了31%至50%和14%至30%。因此,低温储存可以成为解决嫁接苗圃人工管理问题的有效手段。

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