作物学报 ›› 2010, Vol. 36 ›› Issue (07): 1161-1168.doi: 10.3724/SP.J.1006.2010.01161
王婧1,姜朋1,李栋1,2,马强1,2,台述金1,左振朋1,董鲁浩1,孙庆泉1
WANG Jing1,JIANG Peng1,LI Dong12,MA Jiang12,TAII Shu-Jin1,ZUO Zhen-Peng1,DONG Lu-Hao1,SUN Qing-Quan1
摘要: 以不同初始水分(IMC)大豆和棉花种子为试材,研究不同贮藏条件下的吸湿解吸规律,并建模验证。结果表明,大豆种子,贮温15℃、25℃和40℃时,4%IMC在相对湿度(RH)≤18.78%、8%和12% IMC在RH≤48.10%条件下解吸,其他条件下吸湿。棉花种子,15℃时,4% IMC在RH≤7.49%、8%IMC在RH≤18.78%和12% IMC在RH≤48.10%条件下解吸,其他条件下吸湿;25℃时,4% IMC在RH≤18.78%、8%和12%IMC在RH≤48.10%条件下解吸,其他条件下吸湿;40℃时,4%IMC在RH≤7.49%、8%和12% IMC在RH≤48.10%条件下解吸,其他条件下吸湿。棉花种子,4% IMC在15℃ RH>55%、25℃ RH>55%和40℃ RH>50%时的安全水分(SWC)依次为10.5%、9.5%和6.5%;8%IMC在15℃RH>60%、25℃ RH>55%和40℃ RH>45%时的SWC分别为10.5%、9.5%和6.5%;12% IMC在15℃ RH>55%、25℃ RH>55%和40℃ RH>45%时的SWC分别为10.5%、9.5%和6.5%。辽豆11在15℃ RH>60%、25℃ RH>55%和40℃RH>45%时,其平衡水分(EMC)超过其SWC(依次为12%、11%和8%);菏豆13在相同条件下水分平衡时的RH比辽豆11高5%。棉花种子EMC在15和25℃ RH>55%、40℃ RH>60%时超过其SWC;大豆种子EMC在25℃ RH>55%、25℃和40℃ RH>60%时超过其SWC。棉花种子的水分平衡时间(d)与IMC(x)、RH(y)和温度(z)的预测模型为d =36.97+1.78x–0.58y–0.58z–0.016xy–0.021xz–0.0012yz+0.007y2,辽豆11的为d =23.29+3.72 x–0.19 y–0.86 z–0.02 xy–0.09 xz–0.008 yz+0.005 y2+0.03 z2,菏豆13的为d =48.64+0.36x–0.44y–1.49z–0.008yz +0.006y2+0.026z2。模型经检验,预测性良好。
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