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Effects of long-term straw return on soil organic carbon fractions and enzyme activities in a double-cropped rice paddy in South China 被引量:21
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作者 HUANG Wan WU Jian-fu +5 位作者 PAN Xiao-hua TAN Xue-ming ZENG Yong-jun SHI Qing-hua LIU Tao-ju ZENG Yan-hua 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2021年第1期236-247,共12页
Long-term straw return is an important carbon source for improving soil organic carbon(SOC) stocks in croplands, and straw removal through burning is also a common practice in open fields in South China. However, the ... Long-term straw return is an important carbon source for improving soil organic carbon(SOC) stocks in croplands, and straw removal through burning is also a common practice in open fields in South China. However, the specific effects of long-term rice straw management on SOC fractions, the related enzyme activities and their relationships, and whether these effects differ between crop growing seasons remain unknown. Three treatments with equal nitrogen, phosphorus, and potassium nutrient inputs, including straw/ash and chemical nutrients, were established to compare the effects of straw removal(CK), straw return(SR), and straw burned return(SBR). Compared to CK, long-term SR tended to improve the yield of early season rice(P=0.057), and significantly increased total organic carbon(TOC) and microbial biomass carbon(MBC) in double-cropped rice paddies. While SBR had no effect on TOC, it decreased light fraction organic carbon(LFOC) in early rice and easily oxidizable organic carbon(EOC) in late rice, significantly increased dissolved organic carbon(DOC), and significantly decreased soil p H. These results showed that MBC was the most sensitive indicator for assessing changes of SOC in the double-cropped rice system due to long-term straw return. In addition, the different effects on SOC fraction sizes between SR and SBR were attributed to the divergent trends in most of the soil enzyme activities in the early and late rice that mainly altered DOC, while DOC was positively affected by β-xylosidase in both early and late rice. We concluded that straw return was superior to straw burned return for improving SOC fractions, but the negative effects on soil enzyme activities in late rice require further research. 展开更多
关键词 double-cropped rice paddy system straw return straw burned return SOC fractions soil enzyme activities
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The efficiency of long-term straw return to sequester organic carbon in Northeast China's cropland 被引量:19
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作者 WANG Shi-chao ZHAO Ya-wen +5 位作者 WANG Jin-zhou ZHU Ping CUI Xian HAN Xiao-zeng XU Ming-gang LU Chang-ai 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第2期436-448,共13页
Black soil is one of the most precious soil resources on earth because it has abundant carbon stocks and a relatively high production capacity. However, decreasing organic matter after land reclamation, and the effect... Black soil is one of the most precious soil resources on earth because it has abundant carbon stocks and a relatively high production capacity. However, decreasing organic matter after land reclamation, and the effects of long-term inputs of organic carbon have made it less fertile black soil in Northeast China. Straw return could be an effective method for improving soil organic carbon(SOC) sequestration in black soils. The objective of this study was to evaluate whether straw return effectively increases SOC sequestration. Long-term field experiments were conducted at three sites in Northeast China with varying latitudes and SOC densities. Study plots were subjected to three treatments: no fertilization(CK); inorganic fertilization(NPK); and NPK plus straw return(NPKS). The results showed that the SOC stocks resulting from NPKS treatment were 4.0 and 5.7% higher than those from NPK treatment at two sites, but straw return did not significantly affect the SOC stocks at the third site. Furthermore, at higher SOC densities, the NPKS treatment resulted in significantly higher soil carbon sequestration rates(CSR) than the NPK treatment. The equilibrium value of the CSR for the NPKS treatment equated to cultivation times of 17, 11, and 8 years at the different sites. Straw return did not significantly increase the SOC stocks in regions with low SOC densities, but did enhance the C pool in regions with high SOC densities. These results show that there is strong regional variation in the effects of straw return on the SOC stocks in black soil in Northeast China. Additional cultivations and fertilization practices should be used when straw return is considered as an approach for the long-term improvement of the soil organic carbon pool. 展开更多
关键词 soil organic carbon(SOC) SOC stock straw return soil sequestration rate straw-C sequestration efficiency black soil long-term experiments
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Straw return increases crop production by improving soil organic carbon sequestration and soil aggregation in a long-term wheat-cotton cropping system
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作者 Changqin Yang Xiaojing Wang +6 位作者 Jianan Li Guowei Zhang Hongmei Shu Wei Hu Huanyong Han Ruixian Liu Zichun Guo 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第2期669-679,共11页
Straw return is a promising strategy for managing soil organic carbon(SOC)and improving yield stability.However,the optimal straw return strategy for sustainable crop production in the wheat(Triticum aestivum L.)-cott... Straw return is a promising strategy for managing soil organic carbon(SOC)and improving yield stability.However,the optimal straw return strategy for sustainable crop production in the wheat(Triticum aestivum L.)-cotton(Gossypium hirsutum L.)cropping system remains uncertain.The objective of this study was to quantify the long-term(10 years)impact of carbon(C)input on SOC sequestration,soil aggregation and crop yields in a wheat-cotton cropping system in the Yangtze River Valley,China.Five treatments were arranged with a single-factor randomized design as follows:no straw return(Control),return of wheat straw only(Wt),return of cotton straw only(Ct),return of 50%wheat and 50%cotton straw(Wh-Ch)and return of 100%wheat and 100%cotton straw(Wt-Ct).In comparison to the Control,the SOC content increased by 8.4 to 20.2%under straw return.A significant linear positive correlation between SOC sequestration and C input(1.42-7.19 Mg ha^(−1)yr^(−1))(P<0.05)was detected.The percentages of aggregates of sizes>2 and 1-2 mm at the 0-20 cm soil depth were also significantly elevated under straw return,with the greatest increase of the aggregate stability in the Wt-Ct treatment(28.1%).The average wheat yields increased by 12.4-36.0%and cotton yields increased by 29.4-73.7%,and significantly linear positive correlations were also detected between C input and the yields of wheat and cotton.The average sustainable yield index(SYI)reached a maximum value of 0.69 when the C input was 7.08 Mg ha^(−1)yr^(−1),which was close to the maximum value(SYI of 0.69,C input of 7.19 Mg ha^(−1)yr^(-1))in the Wt-Ct treatment.Overall,the return of both wheat and cotton straw was the best strategy for improving SOC sequestration,soil aggregation,yields and their sustainability in the wheat-cotton rotation system. 展开更多
关键词 straw return crop yields SOC soil aggregates wheat-cotton cropping system
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Effect of Long-Term Rice Straw Return on Soil Glomalin, Carbon and Nitrogen 被引量:49
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作者 NIE Jun ZHOU Jian-Min +2 位作者 WANG Huo-Yan CHEN Xiao-Qin DU Chang-Wen 《Pedosphere》 SCIE CAS CSCD 2007年第3期295-302,共8页
A long-term experiment was conducted to investigate how long-term fertilization and rice straw incorporation into soil affect soil glomalin, C and N. The combined application of chemical fertilizer and straw resulted ... A long-term experiment was conducted to investigate how long-term fertilization and rice straw incorporation into soil affect soil glomalin, C and N. The combined application of chemical fertilizer and straw resulted in a significant increase in both soil easily extractable glomalin (EEG) and total glomalin (TG) concentrations, as compared with application of only chemical fertilizer or no fertilizer application. The EEG and TG concentrations of the NPKS (nitrogen, phosphorus, and potassium fertilizer application + rice straw return) plot were 4.68% and 5.67% higher than those of the CK (unfertilized control) plot, and 9.87% and 6.23% higher than those of the NPK (nitrogen, phosphorus, and potassium fertilizer applied annually) plot, respectively. Application of only chemical fertilizer did not cause a statistically significant change of soil glomalin compared with no fertilizer application. The changes of soil organic C (SOC) and total N (TN) contents demonstrated a similar trend to soil glomalin in these plots. The SOC and TN contents of NPKS plot were 15.01% and 9.18% higher than those of the CK plot, and 8.85% and 14.76% higher than those of the NPK plot, respectively. Rice straw return also enhanced the contents of microbial biomass C (MBC) and microbial biomass N (MBN) in the NPKS plot by 7.76% for MBC and 31.42% for MBN compared with the CK plot, and 12.66% for MBC and 15.07% for MBN compared with the NPK plots, respectively. Application of only chemical fertilizer, however, increased MBN concentration, but decreased MBC concentration in soil. 展开更多
关键词 秸秆还田 土壤 碳素 氮素 球囊霉素 长期效应
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Effects of long-term full straw return on yield and potassium response in wheat-maize rotation 被引量:36
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作者 BAI You-lu WANG Lei +4 位作者 LU Yan-li YANG Li-ping ZHOU Li-ping NI Lu CHENG Ming-fang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2015年第12期2467-2476,共10页
The effect of long-term straw return on crop yield, soil potassium(K) content, soil organic matter, and crop response to K from both straw and chemical K fertilizer(K_2SO_4) were investigated in a fixed site field... The effect of long-term straw return on crop yield, soil potassium(K) content, soil organic matter, and crop response to K from both straw and chemical K fertilizer(K_2SO_4) were investigated in a fixed site field experiment for winter wheat-summer maize rotation in 6 years for 12 seasons. The field experiment was located in northern part of North China Plain with a sandy soil in relatively low yield potential. Two factors, straw return and chemical K fertilizer, were studied with two levels in each factor. Field split design was employed, with two straw treatments, full straw return of previous crop(St) and no straw return, in main plots, and two chemical K fertilizer treatments, 0 and 60 kg K2 O ha^(–1), as sub-plots. The results showed that straw return significantly increased yields of winter wheat and summer maize by 16.5 and 13.2% in average, respectively, and the positive effect of straw return to crop yield showed more effective in lower yield season. Straw return significantly increased K absorption by the crops, with significant increase in straw part. In treatment with straw return, the K content in crop straw increased by 15.9 and 21.8% in wheat and maize, respectively, compared with no straw return treatment. But, straw return had little effect on K content in grain of the crops. Straw return had significant influences on total K uptake by wheat and maize plants, with an increase of 32.7 and 30.9%, respectively. There was a significant correlation between crop yield and K uptake by the plant. To produce 100 kg grain, the wheat and maize plants absorbed 3.26 and 2.24 kg K2 O, respectively. The contents of soil available K and soil organic matter were significantly affected by the straw return with an increase of 6.07 and 23.0%, respectively, compared to no straw return treatment. K_2SO_4 application in rate of 60 kg K2 O ha^(–1) showed no significant effect on wheat and maize yield, K content in crop straw, total K uptake by the crops, soil available K content, and soil organic matter. The apparent K utilization rate(percentage of applied K absorbed by the crop in the season) showed difference for wheat and maize with different K sources. In wheat season, the K utilization rate from K_2SO_4 was higher than that from straw, while in maize season, the K utilization rate from straw was higher than that from chemical fertilizer. In the whole wheat-maize rotation system, the K absorption efficiency by the two crops from straw was higher than that from K_2SO_4. 展开更多
关键词 straw return potassium in straw wheat maize potassium response
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Soil bacterial communities interact with silicon fraction transformation and promote rice yield after long-term straw return 被引量:1
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作者 Alin Song Zimin Li +9 位作者 Yulin Liao Yongchao Liang Enzhao Wang Sai Wang Xu Li Jingjing Bi Zhiyuan Si Yanhong Lu Jun Nie Fenliang Fan 《Soil Ecology Letters》 CAS 2021年第4期395-408,共14页
Returning crop straw into the soil is an important practice to balance biogenic and bioavailable silicon(Si)pool in paddy,which is crucial for the healthy growth of rice.However,owing to little knowledge about soil mi... Returning crop straw into the soil is an important practice to balance biogenic and bioavailable silicon(Si)pool in paddy,which is crucial for the healthy growth of rice.However,owing to little knowledge about soil microbial communities responsible for straw degradation,how straw return affects Si bioavailability,its uptake,and rice yield remains elusive.Herein,we investigate the change of soil Si fractions and microbial community in a 39-year-old paddy field amended by a long-term straw return.Results show that rice straw return significantly increased soil bioavailable Si and rice yield from 29.9%to 61.6%and from 14.5%to 23.6%,respectively,when compared to NPK fertilization alone.Straw return significantly altered soil microbial community abundance.Acidobacteria was positively and significantly related to amorphous Si,while Rokubacteria at phylum level,Deltaproteobacteria,and Holophagae at class level was negatively and significantly related to organic matter adsorbed and Fe/Mn-oxide-combined Si in soils.Redundancy analysis of their correlations further demonstrated that Si status significantly explained 12%of soil bacterial community variation.These findings suggest that soil bacteria community and diversity interact with Si mobility by altering its transformation,thus resulting in the balance of various nutrient sources to drive biological Si cycle in agroecosystem. 展开更多
关键词 Bacterial community long-term Silicon fractions straw returning Silicon cycle
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Straw return and appropriate tillage method improve grain yield and nitrogen efficiency of winter wheat 被引量:47
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作者 CHEN Jin ZHENG Meng-jing +7 位作者 PANG Dang-wei YIN Yan-ping HAN Ming-ming LI Yan-xia LUO Yong-li XU Xu LI Yong WANG Zhen-lin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2017年第8期1708-1719,共12页
Straw return is an important management tool for tackling and promoting soil nutrient conservation and improving crop yield in Huang-Huai-Hai Plain, China. Although the incorporation of maize straw with deep plowing a... Straw return is an important management tool for tackling and promoting soil nutrient conservation and improving crop yield in Huang-Huai-Hai Plain, China. Although the incorporation of maize straw with deep plowing and rotary tillage practices are widespread in the region, only few studies have focused on rotation tillage. To determine the effects of maize straw return on the nitrogen (N) efficiency and grain yield of winter wheat (Triticum aestivum L.), we conducted experiments in this region for 3 years. Five treatments were tested: (i) rotary tillage without straw return (RT); (ii) deep plowing tillage without straw return (DT); (iii) rotary tillage with total straw return (RS); (iv) deep plowing tillage with total straw return (DS); (v) rotary tillage of 2 years and deep plowing tillage in the 3rd year with total straw return (TS). Treatments with straw return increased kernels no. ear-1, thousand-kernel weight (TKW), grain yields, ratio of dry matter accumulation post-anthesis, and nitrogen (N) efficiency whereas reduced the ears no. ha-1 in the 2011-2012 and 2012-2013 growing seasons. Compared with the rotary tillage, deep plowing tillage significantly increased the grain yield, yield components, total dry matter accumulation, and N efficiency in 2013-2014. RS had significantly higher straw N distribution, soil inorganic nitrogen content, and soil enzymes activities in the 0-10 cm soil layer compared with the DS and TS. However, significantly lower values were ob- served in the 10-20 and 20-30 cm soil layers. TS obtained approximately equal grain yield as DS, and it also reduced the resource costs. Therefore, we conclude that TS is the most economical method for increasing grain yield and N efficiency of winter wheat in Huang-Huai-Hai Plain. 展开更多
关键词 grain yield N efficiency straw return tillage method winter wheat
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Effects of Combination of Straw Returning and a Microbial Agent on Microorganisms and Enzyme Activity in Rhizosphere Soil and Yield of Late Rice 被引量:6
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作者 Ni Guorong Tu Guoquan +4 位作者 Wei Saijin Wu Jianfu Shi Qinghua Zhou Chunhuo Pan Xiaohua 《Meteorological and Environmental Research》 CAS 2017年第6期78-82,共5页
By using red soil and late rice Wufengyou T025 as the tested materials,the influences of straw returning with a microbial agent on the quantity of microorganisms and enzyme activity in rhizosphere soil in fields were ... By using red soil and late rice Wufengyou T025 as the tested materials,the influences of straw returning with a microbial agent on the quantity of microorganisms and enzyme activity in rhizosphere soil in fields were studied,and soil productivity was tested with yield and agricultural traits of late rice. The results showed that straw returning with the microbial agent could significantly improve the quantity of bacteria,fungi and actinomyces in soil,enhance the activity of sucrase,urease,catalase and cellulase,and improve the number of grains per spike,setting percentage,thousand seed weight and yield of late rice. The combination of rice straw returning and the microbial agent has a good prospect of application. 展开更多
关键词 MICROBIAL agents straw returnING Quantity of MICROORGANISMS Soil ENZYMES YIELD
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Effect of Long-Term Application of K Fertilizer and Wheat Straw to Soil on Crop Yield and Soil K Under Different Planting Systems 被引量:25
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作者 TAN De-shui JIN Ji-yun HUANG Shao-wen LI Shu-tian HE Ping 《Agricultural Sciences in China》 CAS CSCD 2007年第2期200-207,共8页
Effect of application of K fertilizer and wheat straw to soil on crop yield and status of soil K in the plough layer under different planting systems was studied. The experiments on long-term application of K fertiliz... Effect of application of K fertilizer and wheat straw to soil on crop yield and status of soil K in the plough layer under different planting systems was studied. The experiments on long-term application of K fertilizer and wheat straw to soil in Hebei fluvo aquic soil and Shanxi brown soil in northern China were begun in 1992. The results showed that K fertilizer and straw could improve the yields of wheat and maize with the order of NPK + St 〉 NPK 〉 NP + St 〉 NP, and treatment of K fertilizer made a significant difference to NP, and the efficiency of K fertilizer in maize was higher than in wheat under rotation system of Hebei. In contrast with Shanxi, the wastage of soil potassium was a more serious issue in the rotation system in Hebei, only treatment of NPK + St showed a surplus of potassium and the others showed a wane. K fertilizer and straw could improve the content of water-soluble K, nonspecifically adsorbed K, non-exchangeable K, mineral K, and total K in contrast to NP; however, K fertilizer and straw reduce the proportion of mineral K and improve proportion of other forms of potassium in the two locating sites. Compared with the beginning of orientation, temporal variability character of soil K content and proportion showed a difference between the two soil types; furthermore, there was a decrease in the content of mineral K and total K simultaneously in the two locating sites. As a whole, the effect of K fertilizer applied to soil directly excelled to wheat straw to soil. Wheat straw to soil was an effective measure to complement potassium to increase crop yield and retard the decrease of soil K. 展开更多
关键词 different planting systems long-term application of K fertilizer wheat straw to soil crop yield soil K
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Long-term straw incorporation increases rice yield stability under high fertilization level conditions in the rice–wheat system 被引量:4
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作者 Jianwei Zhang Weiwei Li +4 位作者 Yan Zhou Yanfeng Ding Lei Xu Yu Jiang Ganghua Li 《The Crop Journal》 SCIE CSCD 2021年第5期1191-1197,共7页
Straw incorporation is a global common practice to improve soil fertility and rice yield.However,the effect of straw incorporation on rice yield stability is still unknown,especially under high fertilization level con... Straw incorporation is a global common practice to improve soil fertility and rice yield.However,the effect of straw incorporation on rice yield stability is still unknown,especially under high fertilization level conditions.Here,we reported the effect of straw returning on rice yield and yield stability under high fertilization levels in the rice–wheat system over nine years.The results showed that straw incorporation did not significantly affect the average rice yield of nine years.Straw incorporation reduced the coefficient of variation of rice yield by 25.8%and increased the sustainable yield index by 8.2%.The rice yield positively correlated with mean photosynthetically active radiation (PAR) of rice growth season and the effects of straw incorporation on rice yield depended on the PAR.Straw incorporation increased the rice yield by 5.4%in the low PAR years,whereas it did not affect the rice yield in the high PAR years.Long-term straw incorporation lowered soil bulk density but improved the soil organic matter,total N,available N,available P,and available K more strongly than straw removal.Our findings suggest that straw incorporation can increase rice yield stability through improving the resistance of rice plant growth to low PAR. 展开更多
关键词 long-term straw incorporation Rice yield STABILITY Rice-wheat system PAR
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Straw return increases crop grain yields and K-use efficiency under a maize-rice cropping system 被引量:5
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作者 Yuling Han Wei Ma +5 位作者 Baoyuan Zhou Akram Salah Mingjian Geng Cougui Cao Ming Zhan Ming Zhao 《The Crop Journal》 SCIE CSCD 2021年第1期168-180,共13页
Straw return is an effective way to improve crop grain yield and potassium(K)use efficiency by increasing soil K content.However,the effects of straw return on soil K supplying capacity,replacement of K fertilizer,and... Straw return is an effective way to improve crop grain yield and potassium(K)use efficiency by increasing soil K content.However,the effects of straw return on soil K supplying capacity,replacement of K fertilizer,and K-use efficiency under maize(Zea mays L.)–rice(Oryza sativa L.)cropping systems are little studied.A two-year field experiment was conducted to determine the physiological determinants of K-use efficiency under straw return with four K fertilization rates.Sr33(straw returned plus 33%of K fertilizer applied)and Sr67(straw returned plus 67%of K fertilizer applied)increased annual crop yields by 1.5%and 3.2%and increased agronomic K-use efficiency by respectively 2.9 and 1.3-fold on average in the two years,compared with the conventional practice S0K100(no straw returned plus normal amounts of K fertilizer applied).The Sr33 and Sr67 treatments resulted in significantly greater equilibrium K concentration ratios(CR0 K)and specifically exchangeable K(KX)values according to quantity/intensity(Q/I)relationship analyses,indicating improvement of the potential soil K supply capacity.However,the Sr67 better maintained the soil exchangeable K level and K balance.The results suggested that K released from maize and rice straw can replace about half of chemical K fertilizer,depending on the available K content in maize–rice cropping system production. 展开更多
关键词 Maize-rice system straw return K fertilizer K-use efficiency Quantity/intensity curve
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Corn straw return can increase labile soil organic carbon fractions and improve water-stable aggregates in Haplic Cambisol 被引量:6
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作者 Batande Sinovuyo NDZELU DOU Sen ZHANG Xiaowei 《Journal of Arid Land》 SCIE CSCD 2020年第6期1018-1030,共13页
Corn straw return to the field is a vital agronomic practice for increasing soil organic carbon(SOC)and its labile fractions,as well as soil aggregates and organic carbon(OC)associated with water-stable aggregates(WSA... Corn straw return to the field is a vital agronomic practice for increasing soil organic carbon(SOC)and its labile fractions,as well as soil aggregates and organic carbon(OC)associated with water-stable aggregates(WSA).Moreover,the labile SOC fractions play an important role in OC turnover and sequestration.The aims of this study were to determine how different corn straw returning modes affect the contents of labile SOC fractions and OC associated with WSA.Corn straw was returned in the following depths:(1)on undisturbed soil surface(NTS),(2)in the 0–10 cm soil depth(MTS),(3)in the 0–20 cm soil depth(CTS),and(4)no corn straw applied(CK).After five years(2014–2018),soil was sampled in the 0–20 and 20–40 cm depths to measure the water-extractable organic C(WEOC),permanganate oxidizable C(KMnO4-C),light fraction organic C(LFOC),and WSA fractions.The results showed that compared with CK,corn straw amended soils(NTS,MTS and CTS)increased SOC content by 11.55%–16.58%,WEOC by 41.38%–51.42%,KMnO4-C and LFOC by 29.84%–34.09%and 56.68%–65.36%in the 0–40 cm soil depth.The LFOC and KMnO4-C were proved to be the most sensitive fractions to different corn straw returning modes.Compared with CK,soils amended with corn straw increased mean weight diameter by 24.24%–40.48%in the 0–20 cm soil depth.The NTS and MTS preserved more than 60.00%of OC in macro-aggregates compared with CK.No significant difference was found in corn yield across all corn straw returning modes throughout the study period,indicating that adoption of NTS and MTS would increase SOC content and improve soil structure,and would not decline crop production. 展开更多
关键词 aggregate-size distribution corn straw return corn yield labile soil organic carbon fractions Haplic Cambisol
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Effects of Straw Returning with Different Tillage Patterns on Corn Yield and Nitrogen Utilization 被引量:3
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作者 Dai Jian-jun Zhang Yu-fei +2 位作者 Wang Xiao-chun Ma Yu-xuan Liu Li-zhi 《Journal of Northeast Agricultural University(English Edition)》 CAS 2020年第2期17-24,共8页
To explore the effects of farming methods,straw returning and their interaction on corn yield and nitrogen utilization,the experiment was conducted for two consecutive years from 2016 to 2017 at the Xiangyang Experime... To explore the effects of farming methods,straw returning and their interaction on corn yield and nitrogen utilization,the experiment was conducted for two consecutive years from 2016 to 2017 at the Xiangyang Experimental Base of Northeast Agricultural University in Heilongjiang Province of China.The method of combining farming with straw returning was used and six treatments as rotary tillage(R)+no straw returning(K),rotary tillage(R)+straw returning(S),tillage(T)+no straw returning(K),tillage(T)+straw returning(S),tillage(T)+subsoiling(D)+no straw returning(K)and tillage(T)+subsoiling(D)+straw returning(S)were set to study the effects of different tillage methods and straw returning on corn yield and nitrogen accumulation and utilization.The corn yield,nitrogen accumulation,nitrogen transport,grain weight and dry matter accumulation of tillage(T)+subsoiling(D)and tillage(T)were significantly higher than those of rotary tillage(R)treatment.Meanwhile,the corn yield,nitrogen accumulation and dry matter accumulation of TD treatment were significantly higher than those of T treatment;the corn yield,dry matter accumulation,kernel weight,nitrogen dry matter production efficiency and nitrogen grain production efficiency of S treatment were significantly higher than those of K treatment.Among the treatments,the yield,nitrogen accumulation and utilization efficiency of TDS,TS and TDK were the highest.The yield,nitrogen accumulation and nitrogen transport of TDS were significantly higher than those of TS.In 2016,TDS production increased by 7.30%and 8.20%compared with TS;and TDS nitrogen accumulation increased by 6.78%and 9.50%compared with TS,while the yield and nitrogen grain production efficiency were significantly higher than those of TDK.Therefore,under the conditions of this experiment,on the basis of straw returning,tillage+subsoiling was the suitable farming method. 展开更多
关键词 tillage pattern straw returning corn yield nitrogen accumulation
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Effect of Sweet Corn Straw Returning to the Field on Soil Fertility, Yield and Benefit 被引量:1
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作者 Peng Wangdong Chu Chengxing +5 位作者 Zhong Yaqing Lai Weihong Zhang Haibin Huang Liuyu Shi Xiaoxiao Wei Jialiang 《Meteorological and Environmental Research》 CAS 2016年第4期59-63,共5页
It is an important way for realizing sustainable development of sweet corn production to stabilize and improve soil fertility of cultivated land in sweet corn production region.Through the test of sweet corn straw dir... It is an important way for realizing sustainable development of sweet corn production to stabilize and improve soil fertility of cultivated land in sweet corn production region.Through the test of sweet corn straw directly returning to the field after 6seasons for 3years,the results showed that continuous single application of chemical fertilizer is not conducive to the stability of soil fertility and yield improvement,and implementation of straw returning could receive fertility,improve soil acidic conditions,and enhance the yield of sweet corn.Compared with before the test,the single application of chemical fertilizer increased soil available phosphorus,while the contents of soil organic matter,available nitrogen and available potassium decreased by 1.08,1.18 and 2.47mg/kg respectively,and the soil pH decreased by 0.15.Under the same fertilizer conditions,organic matter contents of single and double-season straw returning increased by 0.71 and 1.29g/kg,available nitrogen increased by 17.15 and 28.27mg/kg,available phosphorus increased by 0.96 and 1.73mg/kg,available potassium increased by 2.41 and 5.92mg/kg,the soil pH increased by 0.16 and 0.2.Compared with the single application of chemical fertilizer,the average yields of single and double-season straw returning increased by 7.5%and 11.8%,and their average income increased by 87.3and 117.1yuan of per mu(667m^2)respectively. 展开更多
关键词 Sweet corn straw returnING to the FIELD Soil fertility YIELD BENEFIT China
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Effects of Carbon and Nitrogen Additions on Soil Microbial Biomass Carbon and Enzyme Activities Under Rice Straw Returning 被引量:1
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作者 Dai Jian-jun Liu Li-zhi +4 位作者 Wang Xiao-chun Fang Qiu-na Cheng Ye-ru Wang Dan-ni Peng Xian-long 《Journal of Northeast Agricultural University(English Edition)》 CAS 2021年第3期21-30,共10页
The effects of different amounts of carbon and nitrogen sources on the soil microbial biomass carbon,dissolved organic carbon and related enzyme activities were studied by the simulation experiment of rice straw retur... The effects of different amounts of carbon and nitrogen sources on the soil microbial biomass carbon,dissolved organic carbon and related enzyme activities were studied by the simulation experiment of rice straw returning to the field,and the mechanism of the decomposition of rice straw returning to the field was discussed.Completely randomized experiment of the two factors of the three levels was designed,and a total of nine treatments of indoor soil incubation tests were conducted.Full amount of rice straw was applied to the soil in this simulation experiment and different amounts of brown sugar and urea were added in the three levels of 0(no carbon source and nitrogen source),1(low levels of carbon and nitrogen sources)and 2(high levels of carbon and nitrogen sources),respectively.The results showed that the addition of different amounts of carbon and nitrogen sources to the rice straw could increase the soil carbon content.Compared with T0N0,the microbial biomass carbon of T2N2 was increased significantly by 170.48%;the dissolved organic carbon content of T1N2 was significantly increased by 58.14%and the free humic acid carbon contents of T0N2,T1N1 and T2N0 were significantly increased by 56.16%and 45.55%and 47.80%,respectively;however,there were no significant differences among those of treatments at later incubation periods.The addition of different carbon and nitrogen sources could promote the soil enzyme activities.During the incubation period,all of the soil enzyme activities of adding sugar and urea were higher than those of T0N0 treatment.Therefore,the addition of different amounts of carbon and nitrogen sources to rice straw returning could improve soil microbial biomass carbon content,dissolved organic carbon and soil enzyme activities. 展开更多
关键词 rice straw returning carbon and nitrogen sources microbial biomass carbon dissolved organic carbon soil enzyme activity
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Effects of Method for Returning Straw to Field on Soil Properties,Straw Decomposition and Nutrient Release 被引量:1
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作者 Xiang LI Qiao ZENG +2 位作者 Shanchao CAO Yueli MA Yangli ZHANG 《Asian Agricultural Research》 2022年第5期51-56,共6页
[Objectives]To alleviate the influence of meteorological conditions on soil environment(temperature and water content)and maintain high and stable grain yield.[Methods]Taking Sunzhen Experimental Station of Weinan Aca... [Objectives]To alleviate the influence of meteorological conditions on soil environment(temperature and water content)and maintain high and stable grain yield.[Methods]Taking Sunzhen Experimental Station of Weinan Academy of Agricultural Sciences as the experimental base,the effects of returning double-crop wheat and corn straw to field(Twm),returning single-crop corn straw to field(Tm),returning single-crop wheat straw to field(Tw)on soil temperature,water content,straw decomposition rate and nutrient release,soil organic matter and bulk density were studied systematically.[Results]Twm treatment could effectively alleviate the effects of meteorological conditions on soil temperature and water content.The decomposition rate of straw treated with Twm was 4.7%higher than that of Tm treatment,3.8%higher than that of Tw treatment,10.5%higher than that of Tm treatment,and the decomposition rate of straw showed a trend of"first fast,then slow and then fast".The release of nitrogen from straw was basically similar to that of straw decay,and the release of potassium and phosphorus increased at first and then remained basically unchanged.The release rate of potassium was the highest,followed by phosphorus and nitrogen.The content of soil organic matter in Twm treatment increased by 11.67%annually,an annual average of 0.998 g/kg.The soil bulk density of Twm treatment decreased by 0.058 g/cm^(3) annually,an annual average of 4.29%.The fundamental reason is that Twm treatment provides conditions(temperature,water content,nutrition)for microbial growth,reproduction,enzyme production and biochemical reaction,and increases the exchange capacity of soil and external water,heat,gas and fertilizer.[Conclusions]It is expected is to help people change their understanding of returning straw to field from"quick harvest"to"fertilizer transformation". 展开更多
关键词 Method for returning straw to field straw decomposition Soil organic matter content Soil bulk density
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Effects of Straw Returning and Chemical Control on Occurrence Quantity of Athetis lepigone Moschler in Summer Maize Fields
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作者 Lili LI Nan ZHAO +7 位作者 Jie SHI Ansheng ZHANG Xingyuan MEN Xianhong ZHOU Qianying ZHUANG Sicong ZHANG Zhenying WANG Yi YU 《Plant Diseases and Pests》 CAS 2012年第3期30-31,共2页
Athetis lepigone Moschler is a new kind of insect pest occurring in summer corn production areas. By investigation, it was found especially serious in straw returning fields. In this paper, its damage status was inves... Athetis lepigone Moschler is a new kind of insect pest occurring in summer corn production areas. By investigation, it was found especially serious in straw returning fields. In this paper, its damage status was investigated in straw returning and chemical controlled fields, respectively. The results showed that the rate of damaged plants was 82% and the maximum pest number per 100 plants was 88 heads in the straw returning fields without chemical control. The application of herbicides and pesticides had no significant effects on occurrence quantity and damage rate, but the pest number per 100 plants decreased a little compared to the fields without chemical control. In the surer er maize fields without straw returning, the application of herbicides and pesticides could significantly decrease the damage of Athetis lepigone, the rate of damaged plants was 20%, and the pest number per 100 plants was 6. 展开更多
关键词 Summer maize straw returning Athet/s lepigone Moschler Chemical control
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Factors of Self-Determination to Return after the Long-Term Evacuation Caused by a Nuclear Power Plant Accident
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作者 Motoya Yamada Ruruko Kidachi Mayumi Shimizu 《Open Journal of Nursing》 2020年第2期117-130,共14页
Aim of the Study: This study aimed to clarify the factors that were relevant to an individual’s self-determination to return amidst anxiety after a long-term evacuation due to the Fukushima Daiichi Nuclear Power Plan... Aim of the Study: This study aimed to clarify the factors that were relevant to an individual’s self-determination to return amidst anxiety after a long-term evacuation due to the Fukushima Daiichi Nuclear Power Plant accident. Method: Semi-structured interviews on whether to return were conducted with nine participants aged 60 - 80 years (eight males and one female) residing in areas where evacuation orders were canceled. The data obtained were analyzed qualitatively and inductively. Result: All participants were returning to their homes. Factors relevant to self-determination to return were represented by five categories: a desire to return 1) emerging from life-experience as a long-term evacuee, 2) retained after obtaining information about the original place of residence, 3) acquired from a long-term life as a refugee, 4) retained with the acceptance of the potential risks of returning, and finally 5) people’s apprehension over talking about the importance of the future of the younger generation. Discussion: These categories were based on the participants’ desire to return and they continued to maintain these thoughts by gathering information and preparing for their return after the long-term evacuation caused by the nuclear accident. It was suggested that the risk perception and the norm in that age group could be among the factors that promoted the choice in maintaining the desire to return. 展开更多
关键词 long-term EVACUATION EVACUATION Instructions Canceled SELF-DETERMINATION to return Nuclear DISASTER
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不同土壤条件下秸秆还田量对土壤还原性物质及水稻生长的影响 被引量:2
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作者 彭显龙 董强 +4 位作者 张辰 李鹏飞 李博琳 刘智蕾 于彩莲 《中国水稻科学》 CAS CSCD 北大核心 2024年第2期198-210,共13页
[目的]在不同土壤上研究水稻秸秆还田后还原性物质的形成及其与水稻生长的关系。[方法]在砂壤土(S1)和粉壤土(S2)上进行2年盆栽试验,模拟低(RL)中(RM)高(RH)产量下秸秆全量还田,以秸秆不还田(R0)为对照,测定土壤还原性物质总量、Eh、亚... [目的]在不同土壤上研究水稻秸秆还田后还原性物质的形成及其与水稻生长的关系。[方法]在砂壤土(S1)和粉壤土(S2)上进行2年盆栽试验,模拟低(RL)中(RM)高(RH)产量下秸秆全量还田,以秸秆不还田(R0)为对照,测定土壤还原性物质总量、Eh、亚铁离子、锰离子和铵态氮含量,分析水稻分蘖、根系干质量、根系活力和水稻产量等指标。[结果]秸秆还田后生育前期土壤Eh显著降低,还原性物质数量增加,S2的还原性物质高于砂壤土。与对照相比,2021年在移栽后56d之前秸秆还田处理还原性物质总量、铁和锰离子含量分别提高了8.36%~199.64%、1.43%~160.03%和8.43%~57.68%。2022年在移栽后45 d前对应增加了2.95%~163.61%、0.77%~19.74%和3.28%~64.96%。随着秸秆还田量增加,还原性物质总量、铁和锰含量有增加趋势。在移栽后56 d前(2021年)和35 d前(2022年)秸秆还田显著增加了土壤铵态氮含量11.28%~50.67%和10.79%~351.53%。秸秆还田使水稻分蘖期和拔节期的根系干质量降低15.06%~45.80%,秸秆还田显著降低了砂壤土上水稻分蘖期和拔节期的根系活力,在S2土壤上RL和RM增加了拔节期根系活力,RH降低了根系活力。秸秆还田后水稻分蘖数在水稻生育期降低了7.23%~48.44%,干物质积累量降低了3.59%~43.57%。RL和RM处理第二年水稻产量降低不明显,RH处理2年均显著减产。砂壤土中氧化还原电位高于S2,S2还原性物质总量、锰离子含量、铵态氮含量、根系干质量、根系活力、分蘖数、干物质积累量和产量均高于砂壤土。[结论]在本研究条件下,秸秆还田显著增加还原性物质总量,抑制水稻早期生长。黏重土壤上秸秆全量还田引起减产,砂壤土上中低产量下秸秆全量还田不会造成穗数显著降低,因促进大穗形成不会造成显著减产。采取有效措施减少秸秆还田下还原性物质危害是秸秆还田技术优化的重点。 展开更多
关键词 秸秆还田 寒地 水稻 还原性物质 产量
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秸秆还田对东北黑土水分特征及物理性质的影响 被引量:1
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作者 郑洪兵 罗洋 +8 位作者 隋鹏祥 李瑞平 王浩 任英 袁野 周思琪 田圣陶 刘武仁 郑金玉 《干旱地区农业研究》 CSCD 北大核心 2024年第1期226-236,共11页
为明确秸秆还田对东北黑土水分特征及物理性质的影响,设置秸秆覆盖还田(FG)、秸秆翻埋还田(FM)和秸秆不还田翻耕(FD)3个处理,测定土壤含水量、水分特征曲线、容重、硬度、土壤三相比及结构稳定性等参数。结果表明:(1)秸秆覆盖还田可显... 为明确秸秆还田对东北黑土水分特征及物理性质的影响,设置秸秆覆盖还田(FG)、秸秆翻埋还田(FM)和秸秆不还田翻耕(FD)3个处理,测定土壤含水量、水分特征曲线、容重、硬度、土壤三相比及结构稳定性等参数。结果表明:(1)秸秆覆盖还田可显著提高春季耕层(0~30 cm)土壤含水量,较秸秆不还田翻耕处理增幅为11.17%~150.84%;不同处理耕层土壤在水吸力中吸力段土壤含水量变化曲线平滑,秸秆覆盖还田处理具有较高的土壤持水性。(2)秸秆还田能显著提高土壤水分有效性,与秸秆不还田翻耕处理相比,秸秆覆盖还田处理0~10 cm土层土壤田间持水量提高4.85%~11.03%,土壤凋萎系数提高10.85%~18.00%;秸秆翻埋还田处理0~10 cm土层土壤重力水增加9.65%~80.73%。秸秆翻埋还田提升了土壤供水能力,土壤比水容量较秸秆不还田翻耕处理增加4.8%~10.0%。(3)与秸秆不还田翻耕处理相比,秸秆还田降低了收获后土壤紧实度,降低幅度为0.18~0.31 MPa;秸秆覆盖还田增加表层土壤容重,降低土壤孔隙度,促进三相结构趋于合理,显著增加土壤结构稳定性。(4)皮尔森相关分析表明,三相比R值与结构距离(r=0.73*)、土壤容重(r=0.70*)相关性显著,在一定范围内三相比R值的增加有利于改善并促进土壤结构稳定。综上可知,东北黑土农田实施秸秆还田是提高春季土壤含水量、增强土壤持水性、提升土壤供水能力、调节土壤紧实性、调控土壤三相比、改善土壤结构和提高土壤宜耕性的有效措施。 展开更多
关键词 秸秆还田 黑土 水分特征 土壤结构 三相比R值
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