利用斜率-截距校正算法(SBC)解决离子选择电极连续在线测量电势漂移问题,结合Nernst线性模型预测无土栽培番茄苗期至果期营养液NO3-N、K+、Ca2+含量变化。结果表明:SBC校正算法可有效减少离子选择电极(ISE)电势漂移,提高线性预测模型重...利用斜率-截距校正算法(SBC)解决离子选择电极连续在线测量电势漂移问题,结合Nernst线性模型预测无土栽培番茄苗期至果期营养液NO3-N、K+、Ca2+含量变化。结果表明:SBC校正算法可有效减少离子选择电极(ISE)电势漂移,提高线性预测模型重复性,校正后ISE响应斜率漂移范围不超过0.4 m V/decade,截距漂移范围可控制在1 m V以内。SBC校正算法可提高Nernst线性模型预测精度,NO3-N、K+、Ca2+含量预测平均相对误差分别从校正前的43.31%、38.46%、93.83%降至校正后的5.99%、7.44%、27.96%。校正后ISE可实现番茄营养液在线连续监测,反映营养液中目标离子含量变化。番茄花期养分吸收较活跃,NO3-N、K+、Ca2+含量分别下降45.19%、36.46%和27.92%。展开更多
In recent years,biochar has attracted considerable attention for soil quality improvement and carbon sequestration due to its unique physicochemical properties.However,the mechanism by which biochar application negati...In recent years,biochar has attracted considerable attention for soil quality improvement and carbon sequestration due to its unique physicochemical properties.However,the mechanism by which biochar application negatively affects the growth of crop seedlings has not been fully investigated.In this study,a hydroponic experiment was conducted to evaluate the response of rice,wheat,and corn seedlings to biochar application(CK,0 g/L;BC1,0.5 g/L;and BC2,1.0 g/L).Compared with the CK treatment,the BC1 and BC2 treatments decreased the fresh shoot and root weights of rice and corn seedlings(P<0.05),but there was no significant effect on wheat seedlings(P>0.05).For the contents of nutrient elements in seedlings,both BC1 and BC2 treatments hindered the roots from absorbing Fe and Cu and increased the uptake of Ca and Mn.Compared with the CK treatment,the translocation factor(TF)values of Ca,Mn,and Zn were significantly decreased especially in rice seedlings(35.3%-36.8%,68.7%-76.5%,and 29.8%-22.0%,respectively)under the BC1 and BC2 treatments,while only Mn was significantly decreased in wheat and corn seedlings(P<0.05).Transmission electron microscope(TEM)analysis of root cross-sections showed that nano-sized biochar particles(10~23 nm)were found in the root cells under BC2 treatment conditions.Our findings reveal that a large amount of biochar application can reduce nutrient absorption and translocation,and hinder rice,wheat,and corn seedlings,particularly rice seedling,in hydroponic system.展开更多
文摘利用斜率-截距校正算法(SBC)解决离子选择电极连续在线测量电势漂移问题,结合Nernst线性模型预测无土栽培番茄苗期至果期营养液NO3-N、K+、Ca2+含量变化。结果表明:SBC校正算法可有效减少离子选择电极(ISE)电势漂移,提高线性预测模型重复性,校正后ISE响应斜率漂移范围不超过0.4 m V/decade,截距漂移范围可控制在1 m V以内。SBC校正算法可提高Nernst线性模型预测精度,NO3-N、K+、Ca2+含量预测平均相对误差分别从校正前的43.31%、38.46%、93.83%降至校正后的5.99%、7.44%、27.96%。校正后ISE可实现番茄营养液在线连续监测,反映营养液中目标离子含量变化。番茄花期养分吸收较活跃,NO3-N、K+、Ca2+含量分别下降45.19%、36.46%和27.92%。
基金supported by the China Agriculture Research System of Ministry of Finance (MOF)and Ministry of Agriculture and Rural Affairs (MARA) (No.CARS-23-B15).
文摘In recent years,biochar has attracted considerable attention for soil quality improvement and carbon sequestration due to its unique physicochemical properties.However,the mechanism by which biochar application negatively affects the growth of crop seedlings has not been fully investigated.In this study,a hydroponic experiment was conducted to evaluate the response of rice,wheat,and corn seedlings to biochar application(CK,0 g/L;BC1,0.5 g/L;and BC2,1.0 g/L).Compared with the CK treatment,the BC1 and BC2 treatments decreased the fresh shoot and root weights of rice and corn seedlings(P<0.05),but there was no significant effect on wheat seedlings(P>0.05).For the contents of nutrient elements in seedlings,both BC1 and BC2 treatments hindered the roots from absorbing Fe and Cu and increased the uptake of Ca and Mn.Compared with the CK treatment,the translocation factor(TF)values of Ca,Mn,and Zn were significantly decreased especially in rice seedlings(35.3%-36.8%,68.7%-76.5%,and 29.8%-22.0%,respectively)under the BC1 and BC2 treatments,while only Mn was significantly decreased in wheat and corn seedlings(P<0.05).Transmission electron microscope(TEM)analysis of root cross-sections showed that nano-sized biochar particles(10~23 nm)were found in the root cells under BC2 treatment conditions.Our findings reveal that a large amount of biochar application can reduce nutrient absorption and translocation,and hinder rice,wheat,and corn seedlings,particularly rice seedling,in hydroponic system.