• Title/Summary/Keyword: $d_s/d_m$

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Morphological Changes of Tissue in Cucumber Seedlings Grown in High Soil EC (높은 토양 EC에서 자란 오이묘 조직의 행태적 변화)

  • Chung, Hee-Don;Choi, Young-Jun
    • Horticultural Science & Technology
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    • v.19 no.4
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    • pp.501-504
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    • 2001
  • The effect of soil EC on tissue morphology of leaf and shoot tip in cucumber (Cucumis sativus L. cv. Euinchim-baekdadagi) seedlings was investigated. Number of trichomes on leaf upper epidermis increased with the increase in soil EC from 1.0 to $3.0dS{\cdot}m^{-1}$, but the shape and number of stomata on lower epidermis remained unchanged. Epidermal cells of cucumbers grown in EC $1.5dS{\cdot}m^{-1}$ soil was occupied mostly by large vacuole whereas those grown in EC $3.0dS{\cdot}m^{-1}$ soil were filled with a nucleus, mitochondria, chloroplast and other micro-organelles. Sponge parenchima cells were also larger and contained fewer chloroplasts at EC $1.5dS{\cdot}m^{-1}$ than those grown at EC $3.0dS{\cdot}m^{-1}$. Leaf thickness decreased at high EC and the color of epidermal cells became significantly darker on the photograph of optical microscope. Normal tissue differentiation was greatly suppressed in plants grown in soils with $3.5dS{\cdot}m^{-1}$ or higher EC.

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Effect of Salt Accumulation on the Germination and Growth of Lettuce(Lactuca Sativa, L.) (염류집적(鹽類集積)이 상추의 발아(發芽) 및 생육(生育)에 미치는 영향(影響))

  • Kang, Bo-Goo;Jeong, In-Myeong;Min, Kyeong-Beom;Kim, Jai-Jeong
    • Korean Journal of Soil Science and Fertilizer
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    • v.29 no.4
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    • pp.360-364
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    • 1996
  • Study on germination ratio and growth of lettuce affected by accumulated salt in vinyl house cultivation soils was investigated by pot test with EC 1.65. 3.50, 5.75. 7.15. 9.50 and 13.57 dS/m. (Germination rate of lettuce in different electric conductivity of 0, 2, 4, 6, 8 and 10 dS/m controlled with KCl were 96.7, 96.7, 87.8, 82.2, 52.2, and 27.8 % respectively. Standing ratio of lettuce in soil below 6 dS/m was more than 60% and in soils of 7.15, 9.50 and 13.57 dS/m they were 45, 32 and 31%, respectively. Growth and fresh weight of lettuces increased significantly in a low EC content soil. The fresh weight of lettuces in the soil of EC 3.50 dS/m was higher than that of the soil EC 1.65 dS/m by 22%, while another soils(EC: 5.75, 7.15, 9.50 and 13.57 dS/m) were decreased 3, 15, 60 and 62%, respectively. Relationship between soil EC and standing ratio of lettuce showed high correlation coefficient($r=-0.9057^{**}$). Therefore, in the field of vinyl houses concentrated salt, standing ratio of lettuce can be foreseen by soil EC [Y = -4.313x+ 82.95 (Y:standing ratio, x:soil EC)], also standing ratio and fresh weight of lettuce showed high correlation coefficient($r=0.8396^{**}$).

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Effect of Nutrient Solution Strength on Growth of Phalaenopsis in an Ebb and Flow System (Ebb and Flow 시스템을 이용한 호접란 수경재배시 생장에 미치는 배양액 농도의 영향)

  • An, Dong-Choon;Park, Seon-Hye;Been, Chul-Gu;Jeong, Byoung-Ryong
    • Journal of Bio-Environment Control
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    • v.16 no.3
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    • pp.199-204
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    • 2007
  • This experiment was conducted to investigate the effect of nutrient solution strength on the growth of miniature multiflora P. amabilis and P. Taisuco Red Jewel at two growth stages during four months cultivation in an ebb and flow system. Early stage plants gained the biggest leaf length and width when nutrient solution strength was EC 0.5 or $1.0dS{\cdot}m^{-1}$ in P. amabilis, and EC $1.5dS{\cdot}m^{-1}$ in P. Taisuco Red Jewel. Root length and weight were the greatest when nutrient solution strength was EC $0.5dS{\cdot}m^{-1}$ in both cultivars and this trend was also found in middle stage plants. Fresh and dry weights of leaves increased as nutrient solution strength was elevated and were the greatest when nutrient solution strength was EC $1.5dS{\cdot}m^{-1}$ in P. amabilis. On the contrary elevation of nutrient solution strength decreased fresh weight of roots, being the greatest when nutrient solution strength was EC $0.5dS{\cdot}m^{-1}$. This trend was also found in P. Taisuco Red Jewel and P. amabilis at middle growth stage. The T/R ratio and chlorophyll content increased with nutrient solution strength and were the greatest regardless of cultivar and growth stage when nutrient strength was EC $1.5dS{\cdot}m^{-1}$.

Native Tree Species of Tolerance to Saline Soil and Salt Spray Drift at the Coastal Forests in the West-Sea, Korea (한국 서해안의 내염성 및 내조성 자생수종)

  • Kim, Do-Gyun
    • Korean Journal of Environment and Ecology
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    • v.24 no.2
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    • pp.209-221
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    • 2010
  • This study was carried out to apply basic data of the native trees for planting in the salinity area by the vegetation ecological selection. Which focused on native woody species to the tolerances of saline soil and salt spray drift on the coastal forests in the West-Sea, Korea. The soil salinity($EC_{1:5}$) was 0.11dS$m^{-1}$, ranging of 0.00dS$m^{-1}$~0.68dS$m^{-1}$. The soil salinity was gradually decreasing from Belt I to Belt Ⅳ except the Belt I in some coastal windbreaks. The order of decreasing soil salinity was Belt I>Belt II>Belt III>Belt Ⅳ and the soil salinity was $EC_{1:5}$ 0.14dS$m^{-1}$, 0.11dS$m^{-1}$, 0.10dS$m^{-1}$, and 0.08dS$m^{-1}$, respectively. The total 181 taxa consisted of 52 families, 104 genus, 157 species, and 24 varieties were recorded as the trees tolerating to both soil salinity and salt spray drift. The trees emerged in the highest degree of salinity($EC_{1:5}$ 0.51dS$m^{-1}$) was nothing but appearanced Pinus thunbergii Parl., Smilax china L., Quercus dentata Thunb. ex Murray, Quercus serrata Thunb. ex Murray and so on at the level of singular and ideal value. The emerged trees in the high salinity of $EC_{1:5}$0.41dS$m^{-1}$~0.50dS$m^{-1}$ were Albizia kalkora Prain, Melia azedarach L., Paederia scandens (Lour.) Merr. var. scandens These species were trees of tolerance to saline soil. The emerged woody species in all belts were Pinus rigida Mill., Pinus densiflora Siebold & Zucc., Pinus thunbergii Parl., Juniperus rigida Siebold & Zucc. and so on. The woody species with high important value(I.V.) were Pinus densiflora Siebold & Zucc., Pinus thunbergii Parl., Pseudosasa japonica (Siebold & Zucc. ex Steud.) Makino, Smilax china L., Platycarya strobilacea Siebold & Zucc. var. strobilacea for. strobilacea and so on, which can be classified as highly tolerant native trees to salt spray drift.

An Experimental Study on the Evaluation of Smear Effect Considering In-situ Conditions (현장여건을 고려한 스미어 영향 평가에 관한 실험적 연구)

  • Park, Yeong-Mog
    • Journal of the Korean GEO-environmental Society
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    • v.13 no.8
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    • pp.85-94
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    • 2012
  • Evaluation of the smear effect caused by mandrel penetration into soft ground for a vertical drain installation is very important to predict the consolidation time of soft ground improvement. 30 kinds of laboratory model tests considering in situ conditions were conducted to investigate the formation of a smear zone and the decrease of coefficient of permeability in the disturbed zone. Three types(C(clay):M(silt)=1:1, 0.5:0.5, and 0:1) of reconstituted samples were used for 3 dimensional smear zone test. An experimental study was performed focusing on length of mandrel penetration, mandrel shape and size, earth pressure, and ground condition(unit weight and grain size distributions). Laboratory test results show that the length of mandrel penetration is the most critical factor for the formation of smear zone. As a result, the ratio between diameter of the smear zone($d_s$) and that of mandrel($d_m$) at field using long mandrel becomes larger than conventional $d_s/d_m$. The ratio between $d_s$ and $d_m$ ranges from 1.89 and 2.48 with the sample at C:M=1:0. It was also found that the $d_s/d_m$ value with the round shape of the mandrel is smaller than that of diamond one. The value of $d_s/d_m$ decreased with larger mandrel size, lower unit weight, and higher earth pressure. However, higher silt content led to increase of $d_s/d_m$. The ratio between coefficient of horizontal permeability in the smear zone($k_{hs}$) and that of undisturbed zone($k_{ho}$) ranged from 0.70 to 0.85. The test results imply that factors and values affecting $k_{hs}/k_{ho}$ show similar tendency with $d_s/d_m$.

Simulating Inflow to Busa Estuary Reservoir Considered Outflows from Boryeong Dam (보령호 방류량을 고려한 부사호 유입량 모의)

  • Noh, Jae-Kyoung;Lee, Jae-Nam
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.368-368
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    • 2012
  • 부사호는 당초 유역면적이 $288km^2$로 이 중에서 상류 유역에 건설된 보령댐 유역면적 $163.6km^2$(57%)가 제외됨에 따라 부사호로 유입량이 급격히 줄어들어 약간의 가뭄에도 수질악화가 반복되고 있다. 부사호의 합리적인 용수 수급 관리를 위해 정확한 부사호 유입량의 추정은 절실하다. 부사호 유입량은 보령호 방류량과 부사호 지류 유역 유입량으로 구성되며, 보령호 방류량은 소수력 발전용수, 관개용수, 하천유지용수, 홍수조절 방류량, 월류량으로 구성된다. 부사호 지류 유역으로부터 자연유량에서 하천에서 취수한 공업용수를 공급하고, 웅천읍의 생활용수 $1,164m^3$/일로부터 회귀수가 유입되고, 보령댐 수혜답 1039.5 ha에 관개용수를 공급하고 회귀수가 유입되고, 부사호에서 양수하여 공급한 부사 유역 수혜답 1,141 ha의 회귀수가 유입되고, 6개 저수지 수혜답 396.5 ha의 회귀수가 유입되는 등 지류 유입량의 구성은 매우 복잡하다. 하천에서 취수하여 공급하는 공업용수는 서해화력 5천 $m^3$/일, 보령화력 15천 $m^3$/일로 구성된다. ONE (One parameter New Exponential) 모형을 근간으로 유입량 모형을 구성하였고, 보령댐 자료로 매개변수를 결정하여, 1966~2011년의 부사호 일 유입량을 모의한 결과를 요약하면 다음과 같다. 첫째, 유역면적 $124.4km^2$인 부사호의 지류 유입량과 보령댐 방류량을 고려한 부사호 유입량 자료로부터 유황을 분석한 결과는 연평균하여 풍수량은 2.1 mm/d, $3.083m^3/s$, 평수량은 0.89mm/d, $1.280m^3/s$, 저수량은 0.48 mm/d, $0.695m^3/s$, 갈수량은 0.30 mm/d, $0.428m^3/s$였으며, 연 유입량은 127.23백만 $m^3$에 이르렀다. 둘째, 유역면적 $288km^2$인 보령호 유역의 포함한 부사호의 자연 유입량 자료로부터 즉 보령댐이 없는 경우 유황을 분석한 결과는 연평균하여 풍수량은 1.4 mm/d, $4.599m^3/s$, 평수량은 0.51 mm/d, $1.689m^3/s$, 저수량은 0.20 mm/d, $0.664m^3/s$, 갈수량은 0.06 mm/d, $0.204m^3/s$, 연 유입량은 197.00백만 $m^3$에 이르렀다. 셋째, 보령호가 있는 경우와 없는 경우 유황을 비교하면 있는 경우에서 부사호의 유입량은 고수위의 유량은 감소하고, 저수위의 유량은 증가하는 전형적 상류에 위치한 댐의 저류효과 영향을 여실히 나타내고 있었다. 넷째, 한국하천 유황곡선식에 의한 유역면적 $288km^2$인 부사호 유입량의 풍수량은 1.29 mm/d, $4.292m^3/s$, 평수량은 0.59 mm/d, $1.964m^3/s$, 저수량은 0.33 mm/d, $1.093m^3/s$, 갈수량은 0.13mm/d, $0.424m^3$이르렀다. 결론하면, 보령댐이 있는 경우 연 유입량은 70백만 $m^3$ 감소하였으나, 평갈수기 유입량은 증가하였다.

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Composition and EC of Nutrient Solution on Growth and Quality of Carrot (Daucus carrota L.) in Hydroponics (당근 수경재배시 생육 및 품질에 미치는 배양액 조성 및 농도)

  • Oh, Dong-Gyu;Cha, Mi-Kyung;Cho, Young-Yeol
    • Journal of Bio-Environment Control
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    • v.26 no.4
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    • pp.340-345
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    • 2017
  • Carrot leaves have many nutrients as well as roots, which will increase the demand for carrot leaves in the future. This study was carried out by dividing into two stages: high temperature and low temperature periods, in order to investigate the possibility of cultivation of carrot leaves and the composition and EC of the nutrient solution for growth and quality of carrot leaves. Composition of nutrient solution($NO_3-N:16.0$, $NH_4-N:1.0$, P: 1.0, K: 11.0, Ca: 2.0, Mg: 1.0, $SO_4-S:1.0mM{\cdot}L^{-1}$) developed by analysis of plant. In the high temperature range (From June $29^{th}$ to Sep. $8^{th}$, 2016), the concentration of the developed nutrient solution (JNU) were 1.0, 2.0, 3.0, and $4.0dS{\cdot}m^{-1}$ and the concentration of nutrient solution of Japanese Horticultural Station(JHS) $2.0dS{\cdot}m^{-1}$ was used for comparison. In the low temperature range (From Dec. $31^{st}$, 2015 to Feb. $29^{th}$, 2016), the concentration of the developed nutrient solution 1.0, 2.0, and $3.0dS{\cdot}m^{-1}$ were used. Growth was investigated in root fresh and dry weights, shoot fresh and dry weights, leaf number, and leaf area of carrot. In the high temperature range, the leaf area and shoot fresh and dry weights were good at 1.0 and $2.0dS{\cdot}m^{-1}$. The sugar content of the root was the highest at the EC $2.0dS{\cdot}m^{-1}$, and the chlorophyll content was the highest at the EC $4.0dS{\cdot}m^{-1}$. In the low temperature range, The shoot fresh and dry weights were the highest at EC 1.0 and $2.0dS{\cdot}m^{-1}$. There was no significant difference in sugar content and chlorophyll content. As a result, from the viewpoint of growth and quality of carrot, it is good to cultivate EC 1.0 and $2.0dS{\cdot}m^{-1}$ in high temperature period and low temperature period, but EC $1.0dS{\cdot}m^{-1}$ is economical perspective such as fertilizer input.

Growth Characteristics and Nutrient Uptake of Kalanchoe Plants (Kalanchoe blossfeldiana 'Marlene') at Different Light Intensities and Nutrient Strengths in Ebb and Flow Subirrigation Systems (Ebb and Flow 저면관수 시스템에서 광강도와 양액농도에 따른 칼랑코에(Kalanchoe blossfeldiana 'Marlene') 생육 및 양분흡수 특성)

  • Noh, Eun-Hee;Jun, Ha-Joon;Son, Jung-Eek
    • Horticultural Science & Technology
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    • v.29 no.3
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    • pp.187-194
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    • 2011
  • The objective of this study was to determine the effects of light intensity and electrical conductivity (EC) of nutrient solution on the growth and nutrient uptake of potted kalanchoe plants (Kalanchoe blossfeldiana 'Marlene') with growth stage in ebb and flow subirrigation systems. The plants were grown at four ECs of 0.5, 1.0, 1.5, and 2.0 $dS{\cdot}m^{-1}$ for seedling stage and four ECs of 1.0, 1.5, 2.0, and 3.0 $dS{\cdot}m^{-1}$ for short day stage under three daily photosynthetic photon flux (PPF) of 6.5, 10.3, 18.2 $mol{\cdot}m^{-2}{\cdot}d^{-1}$. At seedling stage, plant height was the longest under the lowest light intensity, and particularly dry weights and leaf areas were the highest at PPF 10.3 $mol{\cdot}m^{-2}{\cdot}d^{-1}$. Dry weights and leaf areas were the highest at EC 1.5 $dS{\cdot}m^{-1}$ regardless of light intensity. At short day exposure, plant height was the longest under the lowest light intensity. Dry weights, leaf areas, and number of pedicels of the plants significantly increased as light intensity increased. Under all light intensity conditions, dry weights, leaf areas, and number of pedicles increased until EC becomes to 1.0 - 2.0 $dS{\cdot}m^{-1}$. And after reached the highest at EC 2.0 $dS{\cdot}m^{-1}$, they decreased at EC 3.0 $dS{\cdot}m^{-1}$. By comparing the ion uptakes at EC 1.5 $dS{\cdot}m^{-1}$ of seedling stage and EC 2.0 $dS{\cdot}m^{-1}$ of short day stage in which the plants grew better, we confirmed that ion balance of nutrient solution among $NO_3{^-}$-N, $H_2PO_4{^-}$, $K^+$, $Ca^{2+}$, and $Mg^{2+}$ were significantly changed at short day stage compared to seedling stage. For better growth of the plants, both ion balance and EC of nutrient solution should be considered under different light intensities at short day stage while control of EC is enough at seedling stage.

Growth of Mother Plants and Occurrence of Daughter Plants of 'Maehyang' Strawberry as Affected by Different EC Levels of Nutrient Solution during Nursery Period (양액 EC 농도에 따른 육묘기 '매향' 딸기 모주의 생육 및 자묘 발생)

  • Kim, Hyeon Min;Kim, Hye Min;Jeong, Hyeon Woo;Lee, Hye Ri;Jeong, Byoung Ryong;Kang, Nam Jun;Hwang, Seung Jae
    • Journal of Bio-Environment Control
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    • v.27 no.2
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    • pp.185-190
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    • 2018
  • This study was conducted to investigate the optimum electrical conductivity (EC) levels of nutrient solution for growth of mother plants and increasing occurrence of daughter plants of strawberry ($Fragaria{\times}ananassa$ Duch. cv. Maehyang) using hydroponics. The mother plants of strawberry were transplanted in cultivation pot ($61{\times}27{\times}18cm$) filled with coir medium on March 22, 2017. Nutrient solution was supplied by the drip tape at $0.6dS{\cdot}m^{-1}$ of EC levels for rooting during 11 days. After rooting, the mother plants of strawberry was treated at the EC levels of 0.6, 1.2 or $1.8dS{\cdot}m^{-1}$, respectively. Growth characteristics, such as mother plants and daughter plants of strawberry were measured at 100 days after transplanting. The plant height of mother plant was significantly higher at $0.6dS{\cdot}m^{-1}$ treatment, and the crown diameter of mother plant was significantly greater at $1.8dS{\cdot}m^{-1}$ treatment. The fresh and dry weights of shoot were higher at both 0.6 and, $1.2dS{\cdot}m^{-1}$ treatments. The number of runners was not significantly different in all treatments. The fresh and dry weights of runner were heavier at $0.6dS{\cdot}m^{-1}$ than other treatments. The number of daughter plants was the highest, 16.7 at the $1.2dS{\cdot}m^{-1}$ treatment. However, the fresh and dry weights of third daughter plant were the heaviest at $0.6dS{\cdot}m^{-1}$ treatment. Although the daughter plants were a large of production at $1.2dS{\cdot}m^{-1}$ treatment, the low EC levels of strawberry were positive in terms of seedling quality during nursery. These results indicated that growth of mother plant and occurrence of daughter plants were greater at the EC $0.6dS{\cdot}m^{-1}$ nutrient solution for hydroponic cultivation of 'Maehyang' strawberry during nursery period.

Assessment of Salt Damage for Upland-Crops in Dae-Ho Reclaimed Soil (대호 간척지 토양의 염농도별 밭작물의 염해 평가)

  • Lee, Seung-Heon;Yoo, Sun-Ho;Seol, Su-Il;An, Yeoul;Jung, Yeong-Sang;Lee, Sang-Mo
    • Korean Journal of Environmental Agriculture
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    • v.19 no.4
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    • pp.358-363
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    • 2000
  • This study was carried out to obtain the basic data for selecting the applicable crops in reclaimed land during desalinization period. A pot experiment was conducted with 5 different electrical conductivities of the saturated extracts $(ECe\;1,\;3,\;9,\;14,\;and\;16\;dS{\cdot}m^{-1})$ of soils taken from the Dae-Ho reclaimed tidal lands. Eight crops (Chinese cabbage, radish, tomato, red pepper, buckwheat, soybean, sesame, and green perilla) were grown for 37days. Plant height and number of leaves were surveyed on 2 and 4 weeks after seeding, and on harvest time (5 weeks). After harvest, dry weights of harvested crops were measured and soil chemical properties were analyzed. Emergence rates of crops were comparatively high except sesame. For sesame, there was no emergence at ECe over $3\;dS{\cdot}m^{-1}$. Growth and dry weight decreased significantly as increasing ECe. The ECe which decreased 50% of dry weight index were $14.2\;dS{\cdot}m^{-1}$ for radish, $11.4\;dS{\cdot}m^{-1}$ for Chinese cabbage, $10.2\;dS{\cdot}m^{-1}$ for red pepper, $8.9\;dS{\cdot}m^{-1}$ for buckwheat and green perilla, $8.6\;dS{\cdot}m^{-1}$ for soybean, and $8.9\;dS{\cdot}m^{-1}$ for tomato. At higher ECe that start the growth inhibition, increasing $1\;dS{\cdot}m^{-1}$ in ECe, 7.7, 6.5, 5.9, 5.6, 5.2, and 4.9% of dry weight decreased for buckwheat, green perilla, Chinese cabbage, radish, soybean, and tomato (red pepper), respectively. The critical value of ECe for crop survival except sesame was $15.4\;{\sim}\;23.1\;dS{\cdot}m^{-1}$.

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