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Hydroponic Growth Media (Substrate): A Review

机译:水培生长培养基(衬底):综述

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From the reviewed literature, it is observed that scientist’s worked on the various substrate medias used for hydroponic system. They also studied about different combinations of the media and their effect on crop growth. The reviewed literature shows that scientists have studied different organic and inorganic media viz. cocopit, saw dust, rice husk vermiculite, perlite, hydroton, pumice, sand etc. It was also found that these media are not easily, cheaply and locally available for users. Beside this, few scientists studied about physical and chemical properties of media such as particle size, porosity, bulk density, wettability, water holding capacity (WHC), Air filled porosity (AFP), Electrical conductivity, pH of these media. The crop specific suitability of combinations of the different media mixtures were also tested and reported by many scientists. It was revealed from reviewed literature that salinity of media caused linear reduction in the water consumption. The size and shape of particle size distribution are useful for estimating the hydraulic properties of the media The substrate under long cultivation period causes increase of organic matter content and microorganism activity which leads to an increased competition for oxygen in the root environment. The optimal EC levels range from 1.5 to 4.0 dSm-1 according to crop and its sensitivity to different salinity levels. It was also observed that level of growing medium temperature close to that of the surrounding air seems more suitable. The ideal substrate should have a total porosity of over 85 percent. Particles of smaller-sized individual grains have a larger specific surface area.
机译:从审查的文献中,观察到科学家在用于水培系统的各种基板介质上工作。他们还研究了媒体的不同组合及其对作物生长的影响。综述文献表明,科学家们研究了不同的有机和无机媒体viz。椰子,锯尘,米壳蛭石,珍珠岩,水加热器,浮石,砂等。还发现这些媒体不容易,便宜,局部可供用户使用。除此之外,很少有科学家研究介质的物理和化学性质,如粒度,孔隙率,散装密度,润湿性,水持量(WHC),空气填充孔隙度(AFP),导电性,这些介质的pH。许多科学家还测试和报道了不同培养基混合物的组合的作物特异性适用性。从综述的文献中透露了介质的盐度导致水消耗的线性减少。粒度分布的尺寸和形状可用于估计培养基的液压性能在长培养期下的基材导致有机质含量和微生物活性的增加,导致根环境中的氧气竞争增加。根据作物及其对不同盐度水平的敏感度,最佳EC水平范围为1.5至4.0dsm-1。还观察到,近距离周围空气的中间温度的水平更适合。理想的衬底应具有超过85%的总孔隙率。较小的个体晶粒的颗粒具有较大的比表面积。

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