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从理论力学的角度,提出合碰撞冲量和撞击中心相重合的观点,建议以调节门铰的位置及在拍门下部增减“调节质量”或微移拍门下部某一横梁的方法达到仅在止水橡皮兼作缓冲的条件下,拍门关闭时门铰处理论上不产生碰撞反力的目的,供拍门设计时参考。  相似文献   
2.
应用4000倍和5000倍的BR-120、800倍和1000倍的PP-2003于盛花期和幼果喷施桃树两次,座果率显著增加,分别比对照提高51.52%、36.49%和33.11%、48.82%;枝梢长度和粗度显著或极显著增加,分别比对照增长40.96%、24、40%和20.14%、51.24%;叶片叶绿素含量和净光合速率显著或极显著增加,其中叶绿素含量与净光合速率呈直线相关,相关系数达0.9882,达极显著水平。生产上可用于提高桃树座果率和促进枝梢的生长。  相似文献   
3.
Tang  Yazhou  Ding  Shiming  Wu  Yuexia  Chen  Musong  Li  Cai  Yi  Qitao  Ma  Xin  Zhang  Min 《Journal of Soils and Sediments》2021,21(10):3415-3426
Journal of Soils and Sediments - The occurrence of harmful algae blooms has been increasing in large lakes worldwide. The mechanism of heavy metals mobilization in sediments during algae blooms is...  相似文献   
4.
Sun  Qin  Ding  Shiming  Zhang  Liping  Chen  Xiang  Liu  Qing  Chen  Musong  Wang  Yan 《Journal of Soils and Sediments》2019,19(4):1830-1838
Purpose

Phosphorus influence on arsenic bioavailability in soils and its toxicity to plants is widely recognized. This work compares competitive influence of P on As bioavailability in dry and flooded soils.

Materials and methods

Pot experiments were carried out in dry and flooded soils, respectively. Bioavailable As in soils was measured using diffusive gradients in thin films (DGT), soil solution concentration, and three single chemical extraction methods.

Results and discussion

P concentration at 50 mg/kg promoted wheat growth in dry soil. At concentrations above 50 mg/kg, P competition inhibited wheat growth and enhanced As toxicity. In flooded soil, the rice height and biomass decreased with the increase of P addition. P concentrations above 800 mg/kg were lethal to the rice. The content of As absorbed by wheat and rice roots as well as shoots increased with the increase of P concentration. The bioavailability of As in wheat- and rice-grown soils, determined by all methods, also increased with the increase of P concentration. The correlation analysis between the bioavailable As measured by the all three methods and the content of As in plants showed a significant positive correlation. The Pearson correlation coefficient for the DGT method was higher comparing to all other methods. DGT-induced fluxes in soils (DIFS) modeling further showed sharp decreases of Tc (the characteristic time to reach equilibrium between available solid As pool and soil solution As from DGT perturbation) and increases of desorption and adsorption rate constants (k1 and k?1) of As in P-amended soils, reflecting that the kinetic release of As from available solid As pools became much easy from P competition.

Conclusions

P competition in both dry and flooded soils could significantly increase bioavailability of As and further increase its toxicity. Competition effect was more pronounced in flooded soil. DGT is a more accurate method for As bioavailability evaluation in both dry and flooded soils.

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