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Variability of dry matter loss rates of 18 moisture soybeans at 35°C

机译:35°C下的干物质损失率为18%水分大豆的变异性

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Soybeans are biologically active after harvest, continuing to respire during storage andpostharvestprocessing. The soybeans 'respiration is affected by moisture content and temperature, and directly relate to deterioration, or dry matter loss (DML), rates. Several corn storage experiments have been conducted using respiration rates as a measure of DML rates. These data were used to develop ASABE Standard D535 which presents a maximum allowable storage time (MAST) table to provide safe storage time guidelines for shelled corn at 16.4-34% moisture and 1.7-48.9°C. This type of table would be valuable in understanding and minimizing losses during handling and storage of soybeans, especially in low-latitude countries where infrastructure for harvest, transportation, storage, and handling of soybeans are often rudimentary. But before such a table can be developed, several tests need to be conducted to understand better the variance in respiration or DML rates measurements. From literature, grain respiration rates have ranged from 0-2040 mg CO 2 kg1 d'1 (0-0.14 % DML d'1) for test moisture contents ranging from 9-23% and storage temperatures 15-30°C. It is unclear how much of this reported variability is due to measurement method vs. underlying naturalvariability. Historically, data were often collected on 2-3 replications. Therefore, in this paper, we explored the variance of replicated DML rates of soybeans at 18% moisture and 35°C and use this information to better design future experiments to develop a MAST table for soybeans appropriate to low-latitude countries. Results showed that DML rates ranged from 0.235-0.339 % d1. Variance of DML rates was ± 0.013% d'. Statistical power analysis revealed that, for a future experiment testing DML ratesofsoybeans at three moisture contents and one storage temperature, a minimum of four replications are necessary for robust experimental design.
机译:大豆在收获后在生物学上活跃,在储存过程中继续呼吸和孢子体进行处理。大豆呼吸受水分含量和温度的影响,直接涉及劣化,或干物质损失(DML)。使用呼吸速率作为DML速率的量度进行了几个玉米储存实验。这些数据用于开发ASABE标准D535,它呈现最大允许的储存时间(桅杆)表,以提供壳玉米的安全储存时间指南,其水分为16.4-34%和1.7-48.9°C。这种类型的表在理解和最小化储存和储存大豆期间的损失,特别是在低纬度国家,其中大豆的基础设施通常是基本的。但是在这种表格开发之前,需要进行几种测试以了解更好的呼吸方差或DML速率测量。从文献中,谷物呼吸速率从0-2040mg CO 2 KG1 d'1(0-0.14%DML D'1),用于测试水分含量,范围为9-23%,储存温度15-30℃。目前尚不清楚这些报道的多大是由于测量方法与潜在的自然性。从历史上看,经常收集数据在2-3个复制中。因此,在本文中,我们探讨了大豆的复制DML率的差异在18%的水分和35°C中,并使用这些信息来更好地设计未来的实验,以开发适合低纬度国家的大豆的桅杆表。结果表明,DML速率范围为0.235-0.339%d1。 DML率的方差为±0.013%d'。统计功率分析显示,对于未来的实验测试DML Ratesofsoybeans,在三种水分含量和一个储存温度下,鲁棒实验设计至少需要四种复制。

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