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Comparison of Pallet Cover Systems to Maintain Strawberry Fruit Quality During Transport

机译:托盘覆盖系统在运输过程中保持草莓果实品质的比较

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The efficacy of several proprietary plastic pallet cover systems to maintain strawberry (Fragaria x ananassa) fruit quality during commercial shipment was determined. 'Albion' fruit were harvested from farms near Watsonville, CA. Fruit in vented plastic clamshells were palletized and forced-air cooled to 33-35 degrees F. Different cover systems (CO2 West, PEAKfresh, Prime Pro, Tectrol) were placed over the pallets. Pads that released carbon dioxide (CO2) gas were placed inside the CO2 West cover. The Tectrol cover was sealed to the pallet base, a partial vacuum was applied, and pressurized CO2 gas was injected inside. The systems other than Tectrol remained open at the base. Six separate shipments of palletized fruit were transported in refrigerated (32-39 degrees F) truck trailers to distribution centers in either Florida or Georgia in 2.3-4.7 days. CO2 concentrations within pallets at the beginning and end of transport were highest (11% to 16%) in the sealed Tectrol system and relatively low (0.06% to 0.30%) in the open CO2 West, PEAKfresh, and PrimePro cover systems. Relative to noncovered control fruit, which lost 0.8% fresh weight during shipment, the pallet covers reduced the transport-related weight loss by 38% to 52%. The incidence of fruit decay was low (1.0% to 1.4%) after transport but increased substantially following a 2-day shelf life at 68 degrees F. However, fruit from the Tectrol pallets exhibited significantly less decay (36%) after shelf life than the CO2 West (39%), noncovered control (41%), PrimePro (42%), and PEAKfresh (43%) pallets. Fruit sensory quality was unaffected by the different pallet cover systems. Our findings show that transporting strawberries in the sealed Tectrol pallet cover system, in which CO2 concentrations were elevated to 11% to 16%, was most effective in complementing current low temperature management practices to maintain fruit quality.
机译:确定了几种专有的塑料托盘盖系统在商业运输过程中保持草莓(Fragaria x ananassa)水果质量的功效。 “白化病”果实是从加利福尼亚州沃森维尔附近的农场收获的。将装有排气孔的塑料翻盖中的水果放在托盘上,并强制风冷至33-35华氏度。将不同的覆盖系统(CO2 West,PEAKfresh,Prime Pro,Tectrol)放置在托盘上。将释放二氧化碳(CO2)气体的垫板放置在CO2西盖内。将Tectrol盖密封到托盘底座,施加部分真空,然后将压缩的CO2气体注入内部。除Tectrol以外的系统仍在基地开放。在冷藏(32-39华氏度)的卡车拖车中,六轮装运的水果分别在2.3-4.7天内运到佛罗里达或乔治亚州的配送中心。在密封的Tectrol系统中,运输开始和结束时托盘内的CO2浓度最高(11%至16%),而在开放式CO2 West,PEAKfresh和PrimePro盖板系统中,二氧化碳浓度相对较低(0.06%至0.30%)。相对于未覆盖的对照水果,该水果在运输过程中失去了0.8%的新鲜重量,因此托盘盖将与运输相关的重量减少了38%至52%。运输后果实腐烂的发生率较低(1.0%至1.4%),但在68华氏度下放置2天后,其腐烂率显着增加。但是,与货架期相比,Tectrol托盘上的果实腐烂的发生率(36%)明显低于西部CO2(39%),未覆盖对照(41%),PrimePro(42%)和PEAKfresh(43%)托盘。水果感官质量不受不同的托盘覆盖系统的影响。我们的研究结果表明,在密封的Tectrol托盘盖系统中运输草莓(其中CO2浓度提高到11%至16%)对补充当前的低温管理方法以保持水果质量最为有效。

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