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首页> 外文期刊>HortScience >Analysis of Economic and Social Costs of Growing Petunia x hybrida in a Greenhouse Production System Using Alternative Containers
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Analysis of Economic and Social Costs of Growing Petunia x hybrida in a Greenhouse Production System Using Alternative Containers

机译:使用替代集装箱的温室生产系统中种植豆类X Hybrida的经济和社会成本分析

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摘要

Greenhouse growers find themselves under increasing pressure to respond to consumer preferences to use environmentally sustainable practices and materials while maintaining profitable operations. These consumer preferences reflect a mounting awareness of the environmental issues, such as climate change and their associated social costs. Ideally, sustainable horticultural production accounts for both traditional economic considerations and such social costs, some of which can be explained through the calculation of global warming potential (GWP). An obvious candidate for a sustainable intervention is the traditional plastic pot, which growers can replace with alternative biocontainers with varying degrees of GWP. This study calculates the variability of direct costs of production using alternative containers to offer a comparison of social and economic costs. We evaluated these direct costs of producing petunia (Petunia x hybrida) grown in pots made of traditional plastic, bioplastic, coir, manure, peat, bioplastic sleeve, slotted rice hull, solid rice hull, straw, wood fiber, and recycled reground plastic containers used in a previous assessment of GWP. Our analysis of the costs when using a traditional plastic pot showed that the highest contributors to GWP were different from the highest contributors to direct costs, revealing that the price does not reflect the environmental impact of several inputs. Electricity, the plastic shuttle tray, and the plastic pot contributed most to GWP, whereas labor, the plastic container, and paclobutrozol growth regulator contributed most to direct cost of production (COP). At 64% of total cost, labor was the most expensive input. Watering by hand added another $0.37-$0.54 per plant in labor. When we analyzed input costs of each alternative container separately, container type had the largest impact on total direct costs. Before adding container costs, the direct COP ranged from $0.56 to $0.61 per plant. After adding containers, costs ranged from $0.61 to $0.97 per plant. Wood fiber pots were the most expensive and recycled reground plastic pots were the least expensive in this study. Based on our assessment and the observed small variation in GWP between alternative containers, growers would benefit from selecting a container based on price and consumer demand. Some social costs that we are not aware of yet may be associated with some or all biocontainers.
机译:大棚种植户发现自己承受着越来越大的压力来响应消费者的喜好,同时保持盈利的业务使用环境可持续发展的做法和材料。这些消费者的喜好反映的环境问题,如气候变化及其相关的社会成本的安装意识。理想的情况下,持续园艺生产占传统的经济因素和社会等成本,其中一些可以通过全球变暖潜能值(GWP)的计算来解释。对于可持续的干预明显的候选者是传统的塑料盆,其种植者可以具有不同程度的GWP的具有替代生物器皿替换。这项研究计算使用替代容器提供的社会和经济成本的比较生产的直接成本的变化。我们评估了生产矮牵牛花(Petunia x矮牵牛)中制成的传统塑料,生物塑料,椰,粪便,泥煤,生物塑料套筒,开槽稻壳,固体稻壳,稻草,木材纤维的罐中生长的这些直接成本,并再研磨回收的塑料容器在GWP的一次评估中。我们使用传统的塑料壶时的成本分析表明,最高贡献者GWP是从最高贡献者直接成本不同,其显露的价格并不反映的几个输入对环境的影响。电,塑料托盘穿梭,并且塑料锅贡献最大GWP,而劳动,塑料容器,和paclobutrozol生长调节贡献最大的产量(COP)的直接费用。在总成本的64%,劳动力是最昂贵的投入。手工浇水又增加了$ 0.37- $ 0.54每厂劳动。当我们分别分析各方案容器的投入成本,容器类型对总直接成本的影响最大。将容器成本之前,直接COP范围从$ 0.56至每株0.61 $。加入容器后,费用介乎$ 0.61至每株0.97 $。木纤维盆中是最昂贵的和再循环的重新研磨的塑料盆在这项研究中最便宜的。根据我们的评估,并在GWP替代容器之间所观察到的微小变化,种植者将受益于选择基于价格和消费者需求的容器。一些社会成本,我们是不知道的还可能与一些或所有生物器皿相关。

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  • 来源
    《HortScience》 |2018年第8期|共7页
  • 作者单位

    Rutgers State Univ Dept Agr Food &

    Resource Econ 55 Dudley Rd New Brunswick NJ 08901 USA;

    Rutgers State Univ Dept Agr Food &

    Resource Econ 55 Dudley Rd New Brunswick NJ 08901 USA;

    Univ Calif Davis Dept Land Air &

    Water Resources 1 Shields Ave Davis CA 95616 USA;

    Univ Florida Gulf Coast Res &

    Educ Ctr Dept Environm Hort Ctr Landscape Conservat &

    Ecol IFAS 14625 Cty Rd 672 Wimauma FL 33598 USA;

    West Virginia Univ Davis Coll Agr Nat Resources &

    Design 4100 Agr Sci Bldg POB 6108 Morgantown WV 26506 USA;

    Rutgers State Univ Dept Environm Sci 14 Coll Farm Rd New Brunswick NJ 08901 USA;

    Mississippi State Univ Dept Plant &

    Soil Sci Mississippi State MS 39762 USA;

    Univ Illinois Dept Crop Sci 1009 Plant Sci Lab 1201 S Dorner Dr Urbana IL 61801 USA;

    Brigham Young Univ Dept Plant &

    Wildlife Sci 4105 Life Sci Bldg Provo UT 84602 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 园艺;
  • 关键词

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