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首页> 外文期刊>HortTechnology >Reducing Time and Expense to Recycle Perlite for Repeat Use in Greenhouse Tomato Operations
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Reducing Time and Expense to Recycle Perlite for Repeat Use in Greenhouse Tomato Operations

机译:减少时间和费用来回收珍珠岩,以便在温室番茄操作中重复使用

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摘要

Planting greenhouse tomatoes (Solanum lycopersicum) in the same perlite more than once without reconditioning to restore medium loose structure, desalination to remove excess salt, and disinfection to guard against pest contamination is risky, and replacing the perlite to produce every new crop is costly. Reconditioning and treating perlite with hot water at a minimum cost provides a favorable solution for both problems and saves natural resources. A study was conducted in a 30 x 96-ft greenhouse in Spring 2007, 2008, and 2009 (January-July) to evaluate three methods for perlite recycling cost, desalination efficiency, and effects on tomato yield at three or four fruit per cluster. Each recycling method consisted of two components: the reconditioning action and the hot water treatment. The three recycling methods included no stir/sift then disinfect, stir then disinfect, and sift then disinfect. Per lite recycled with the no stir/sift then disinfect method was not reconditioned before the hot water treatment. Instead, it was agitated with a nozzle mounted on a pressure washer wand during the hot water treatment. Per lite recycled with the stir then disinfect method was reconditioned first with an auger mounted on an electric drill and then treated with hot water. Per lite recycled with the sift then disinfect method was reconditioned first by sifting the perlite with a homemade apparatus and was then treated with hot water. Recycling perlite with the no stir/sift then disinfect method reduced labor input by 49% and 81% compared with the stir then disinfect and the sift then disinfect methods, respectively. The no stir/sift then disinfect method reduced recycling cost by 22% and 50% compared with the other two methods, respectively. Per lite that was not reconditioned (no stir/sift) had higher nitrate-nitrogen (NO3-N) before hot water treatment than the stirred perlite and equal NO3-N to the sifted perlite. Hot water treatment significantly reduced medium electrical conductivity, NO3-N, potassium, and sodium. Tomatoes grown in perlite recycled with any of the three methods produced similar marketable and cull yields and fruit weight. Pruning fruit to three per cluster increased marketable yield, fruit weight, and reduced cull yield. There was no significant recycling method x cluster pruning interaction for yield components, indicating that all recycling methods had similar effects on tomato yield at three or four fruit per cluster. We conclude that the no stir/sift then disinfect method is less time consuming, more economical, and has no negative impact on yield. Tomatoes grown with three fruit per cluster in perlite recycled with any of the three methods produced greater marketable yield, less cull yield, and heavier fruit than tomatoes grown with four fruit per cluster.
机译:在同一珍珠岩中多次种植大棚番茄(Solanum lycopersicum),而无需进行翻新以恢复中等松散的结构,进行脱盐处理以去除过量的盐分以及进行消毒以防止有害生物污染是有风险的,而更换珍珠岩来生产每种新作物的成本很高。用热水以最低的成本对珍珠岩进行修复和处理,为解决这两个问题提供了一个理想的解决方案,并节省了自然资源。在2007年春季,2008年和2009年(1月至7月)的30 x 96英尺温室中进行了一项研究,评估了三种方法的珍珠岩回收成本,脱盐效率以及对每簇三或四个水果的番茄产量的影响。每种回收方法均由两个部分组成:修复作用和热水处理。三种回收方法包括不先搅拌/过筛然后消毒,先搅拌再消毒,过筛然后消毒。在不进行搅拌/过滤的情况下对珍珠岩进行再循环,然后在热水处理之前不对消毒方法进行重新调整。取而代之的是,在热水处理过程中,用安装在高压清洗棒上的喷嘴搅拌。通过搅拌循环再灭菌的珍珠岩首先通过安装在电钻上的螺旋钻进行修复,然后再用热水进行处理。先用筛子回收珍珠岩,然后用自制设备筛分珍珠岩,然后对消毒方法进行修复,然后用热水处理。与先搅拌再消毒和先过滤再消毒的方法相比,采用不搅拌/不过滤然后消毒的珍珠岩回收方法分别减少了49%和81%的人工投入。与其他两种方法相比,无搅拌/筛分然后消毒的方法分别将回收成本降低了22%和50%。在热水处理之前,未经修复的珍珠岩(不进行搅拌/筛分)比搅拌的珍珠岩具有更高的硝酸盐氮(NO3-N),并且与筛分的珍珠岩具有相等的NO3-N。热水处理显着降低了介质的电导率,NO3-N,钾和钠。用这三种方法中的任何一种回收的珍珠岩种植的番茄,其可销售和剔除的单果产量和水果重量相似。将水果修剪成每簇三个可增加适销的产量,果实重量和减少的剔除产量。对于产量成分,没有显着的回收方法x群集修剪相互作用,表明所有回收方法对每个群集三个或四个水果的番茄产量具有相似的影响。我们得出的结论是,先搅拌后不消毒的方法耗时少,更经济,并且对产量没有负面影响。与使用每簇四个水果种植的西红柿相比,使用三种方法中的任何一种回收的珍珠岩中每簇三个水果种植的西红柿产生的可销售产量更高,剔除​​产量更低,并且果实更重。

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