The drought in spring leads to the lack of soil water, which influents sprout and bud of crops, which furthermore affects growth and yield of crops. Studying the technology integration of bed-irrigating sowing, the me...The drought in spring leads to the lack of soil water, which influents sprout and bud of crops, which furthermore affects growth and yield of crops. Studying the technology integration of bed-irrigating sowing, the mending irrigation of seedling stage and the effect of water-saving of ridge plotted field, analyzing the finger of yield and dry matter accumulation, water-saving technology integration have good effects on water-saving, water storage and increasing moisture on soil and enhancement of soybean yield.展开更多
Background Potassium(K)is an essential nutrient for plant growth and development.However,plant fertilization ignoring the soil K level is very likely to cause excessive fertilizer use,and further arouse a series of si...Background Potassium(K)is an essential nutrient for plant growth and development.However,plant fertilization ignoring the soil K level is very likely to cause excessive fertilizer use,and further arouse a series of side effects.This study investigated the response of cotton growth to different soil K levels and the uptake of major nutrients,aiming to evaluate the appropriate K supply level for cotton growth.Using a random block design with 6 soil K levels,we conducted 18 micro-zones field experiments over two continuous years.The soil available K concentration of each treatment was K1(99.77-100.90 mg·kg^(-1)),K2(110.90-111.26 mg·kg^(-1)),K3(123.48-128.88 mg·kg^(-1)),K4(140.13-145.10 mg·kg^(-1)),K5(154.43-155.38 mg·kg^(-1)),and K6(165.77-168.75 mg·kg^(-1)).Cotton nutrient contents,soil nutrient contents,accumulation and distribution of dry matter in cotton were determined,and the relationships between K content in soil and plants and dry matter accumulation were analyzed.Results The soil K content had a significantly positive relationship with dry matter and K accumulation in cotton plants.There were significant differences in dry matter accumulation,single-plant seed cotton yield,mineral nutrient uptake and the proportion of K accumulation in reproductive organs among different soil K levels.The results showed that there was significant difference between K4 and lower K level treatments(K1 and K2),but no significant difference between K4 and higher K level treatments(K5 and K6)in dry matter,single-plant seed cotton yield,or accumulation,distribution and seed cotton production efficiency of N,P and K.Conclusion The soil K level of K4 was able to provide sufficient K for cotton growth in our experiment.Therefore,when the soil K level reached 140.13 mg·kg^(-1),further increasing the soil K concentration no longer had a significant positive effect on cotton growth.展开更多
The high water content of corn grain at harvest is a challenge in Northeast China,where the growing season is short.Using a dehydrating agent before harvest can help corn seeds dehydrate quickly.The dry matter accumul...The high water content of corn grain at harvest is a challenge in Northeast China,where the growing season is short.Using a dehydrating agent before harvest can help corn seeds dehydrate quickly.The dry matter accumulation and nutrient quality of maize were systematically studied by field experiments and instrumental analysis using maize varieties of different maturities as test materials.The results showed that the accumulation of dry matter was enhanced by an increased dosage of a dehydrating agent.When the dehydrating agent dosage reached 1800 mL•hm-2,the dry matter accumulation of early-maturing varieties increased by 24.1 g,and the water content decreased by 8.08%.Different maize varieties were treated with the same dose;early-maturing varieties showed significant effects on grain dry matter accumulation,and kernel dry matter accumulation increased by 7%.The effects of different doses on grain dehydration were obvious,and the effects on different maize varieties varied.Medium-ripening maize varieties showed the most significant effect,with a 19.5%reduction in water content.The effects of dehydrating agent doses on maize yield,grain nutrient quality and seed germination rate were not significant.Therefore,a dehydrating agent promoted the accumulation of dry matter in grain and accelerated the rapid dehydration.展开更多
The Qingshankou Formation shale oil in the Gulong Sag is an important oil and gas reservoir in the Daqing oilfield,with geological resources of 15.1 billion tons.The fabric of shale can reflect not only its genesis bu...The Qingshankou Formation shale oil in the Gulong Sag is an important oil and gas reservoir in the Daqing oilfield,with geological resources of 15.1 billion tons.The fabric of shale can reflect not only its genesis but also the nature of the reservoir space,its physical properties,oil content,and development value.Here,the characteristics of clay minerals in the Gulong shale oil reservoir were studied via electron microscopy,with the primary focus on the microfabrics and reservoir space;thereafter,the in situ accumulation was studied and discussed.Electron backscattering patterns revealed that nanometer pores and fissures were well developed in the Gulong shale oil reservoir.The nano pores were mostly 20-50 nm in diameter(median 20-30 nm),irregularly shaped,mostly,polygonal,and connected with nanofissures.The widths of nanofissures ranged mostly between 10-50 nm(median 20-30 nm);moreover,these fissures were mainly formed by F-F condensation of clay sheets(clay domains).The coagulation of clays was closely related to organic matter,especially algae.The clay colloids were negatively charged due to isocrystalline replacement;hence,metal cations were absorbed around the clay,forming a positive clay group.The positively charged clays subsequently adsorbed negatively charged humic acid(organic matter)and initially degraded algae to form an organic clay flocculant.When the organic clay flocculates reached the threshold for hydrocarbon generation and expulsion,the volume of organic matter decreased by 87%;thereafter,the generated and expelled hydrocarbon filled the nearby pores formed by this contraction.Moreover,the discharged hydrocarbon could not migrate due to capillary resistance(~12 MPa)of the nanopores;hence,the nanopores formed a unique continuous in situ reservoir within the Gulong shale oil.This study demonstrated that the Gulong shale oil reservoir is an actual clay-type shale reservoir with numerous nanopore and fissures.During coagulation,a large amount of organic matter(including layered algae)was absorbed by the clay,forming an organic clay condensate that could have provided the material foundation for hydrocarbon generation at a later stage.Thermal simulation experiments revealed that the volume of organic matter decreased sharply after hydrocarbon generation and expulsion.展开更多
Slope farmland is a main type of agricultural land throughout northeast China.Long-term high intensity utilization and unreasonable farming have caused the deterioration of soil resources and a decrease in crop produc...Slope farmland is a main type of agricultural land throughout northeast China.Long-term high intensity utilization and unreasonable farming have caused the deterioration of soil resources and a decrease in crop production.Here,it was hypothesized that crop straw incorporation might help to reduce nutrient losses and increase maize yields across time and space.A field experiment for testing straw management practices on maize across three slope positions(top,back and bottom slopes)was conducted in Northeast China in 2018 and 2019.In this study,the dry matter accumulation(DMA),N accumulation(NA),N remobilization,postsilking N uptake and grain yield were measured under SI(straw incorporation)and NSI(no straw incorporation)across three slope positions of 100-m-long consecutive black soil slope farmland during the maize(Zea mays L.)growth stages.Compared with NSI,SI significantly increased DMA and NA at the silking and maturity stages.SI typically increased the N remobilization in all slope positions,and significantly increased N remobilization efficiency and contribution of N remobilization to grain on the back and bottom slopes.However,post-silking N uptake was only increased by SI on the top slope.SI generally increased the crop yield in three slope positions.In the SI treatments,the bottom slope was the highest yield position,followed by the top,and then the back slopes,suggesting that the bottom slope position of regularly incorporated straw might have increased the potential for boosting maize yield.Overall,the study demonstrated the outsized potential of straw incorporation to enhance maize NA and then increase the grain yield in black soil slope farmland.展开更多
针对河西绿洲灌区小麦生产中氮肥投入高、产量不稳定等问题,通过研究不同施氮水平下土壤调理剂配施缓释氮肥对小麦地上干物质积累动态与产量的影响,为构建河西绿洲灌区减氮小麦的高产高效栽培技术提供实践依据。本研究于2022—2023年在...针对河西绿洲灌区小麦生产中氮肥投入高、产量不稳定等问题,通过研究不同施氮水平下土壤调理剂配施缓释氮肥对小麦地上干物质积累动态与产量的影响,为构建河西绿洲灌区减氮小麦的高产高效栽培技术提供实践依据。本研究于2022—2023年在河西绿洲灌区进行,采用裂区设计,主区为:凹凸棒(A)、生物炭(B)和无调理剂(C);裂区为2种氮肥类型:传统化学氮肥(T)和缓释氮肥(S);裂裂区为2个施氮水平:常规施氮量(N2:180 kg hm^(-2))和减量施氮30%(N1:126 kg hm^(-2)),通过测定小麦不同生育阶段的干物质积累量、开花前后干物质转运量、籽粒产量和生物产量,量化最大增长速率及其出现时间,明确不同土壤调理剂配施缓释氮肥对小麦干物质积累特性及产量的影响。结果表明,N1较N2降低小麦地上部干物质积累量10.4%,缓释氮肥较传统化学氮肥提高小麦地上部干物质积累量7.0%,与无调理剂相比,凹凸棒和生物炭提高小麦地上部干物质积累量为7.8%与10.9%。结合土壤调理剂、氮肥类型与施氮量三因素,凹凸棒配施缓释氮肥结合常规施氮减量30%(ASN1)与生物炭配施缓释氮肥结合常规施氮减量30%(BSN1),分别较无调理剂配施传统化学氮肥结合常规施氮量(CTN2)提高出苗后45~95 d小麦干物质积累量9.0%与10.7%,提高出苗后45~90 d小麦干物质积累速率9.7%与12.6%。拟合结果表明,ASN1、BSN1较CTN2推迟小麦干物质最大增长速率出现时间为3.1 d与4.2 d,提高小麦干物质最大增长速率为6.3%与8.1%。ASN1与BSN1提高了小麦开花前后干物质对籽粒的贡献率,ASN1、BSN1较CTN2增产6.8%与8.5%,其增产主要源于穗粒数和千粒重的提高。BSN1较ASN1提高小麦穗粒数、千粒重为7.8%与8.1%,从各方面来看,BSN1的增产优势更为突出。因此,生物炭配施缓释氮肥可作为西北灌区节氮30%时小麦产量提升的有效措施。展开更多
探究聚-γ-谷氨酸(γ-PGA)对水稻产量、品质和养分吸收的影响,为高产优质、养分高效利用的水稻栽培技术提供理论依据和技术参考。于2022年和2023年在湖北省武穴市花桥镇开展田间试验,采用随机完全区组设计,包括黑籼稻(B)、冈特优8024(R...探究聚-γ-谷氨酸(γ-PGA)对水稻产量、品质和养分吸收的影响,为高产优质、养分高效利用的水稻栽培技术提供理论依据和技术参考。于2022年和2023年在湖北省武穴市花桥镇开展田间试验,采用随机完全区组设计,包括黑籼稻(B)、冈特优8024(R)和黄华占(H)3个水稻品种,和不施加γ-PGA发酵液(P0)和施加25 kg hm^(-2)γ-PGA发酵液(P1)2种γ-PGA处理方式,分析了水稻干物质量、植株氮磷素积累量、产量、稻米外观品质、籽粒蛋白质含量和直链淀粉含量。结果表明,2022年施加γ-PGA对水稻产量影响显著,P1处理较P0水稻产量增加3.2%~10.8%;2023年施加γ-PGA对水稻产量无显著影响。施加γ-PGA的品种B和R的干物质量显著高于不施γ-PGA处理,BP1处理较BP0齐穗期干物质量显著增加7.5%~8.5%,成熟期干物质量显著增加5.9%~7.2%;RP1处理较RP0齐穗期干物质量显著增加8.5%~8.8%,成熟期干物质量显著增加3.3%~3.5%。施加γ-PGA对品种H的干物质量无显著影响。施加γ-PGA能显著提高水稻的氮素和磷素积累量,P1处理较P0齐穗期氮素积累量显著增加12.5%~19.0%,磷素积累量显著增加13.4%~20.3%;成熟期氮素积累量显著增加7.2%~16.5%,磷素积累量显著增加9.2%~29.0%。施用γ-PGA能显著提高稻米直链淀粉和蛋白质含量,降低胶稠度、垩白度,但对粒长、粒宽、碱消值无显著影响。因此,施用γ-PGA显著提高水稻植株干物质量和氮、磷素积累量,改善稻米品质。展开更多
基金Nature Science Fund Project in Heilongjiang Province (C2004-10)
文摘The drought in spring leads to the lack of soil water, which influents sprout and bud of crops, which furthermore affects growth and yield of crops. Studying the technology integration of bed-irrigating sowing, the mending irrigation of seedling stage and the effect of water-saving of ridge plotted field, analyzing the finger of yield and dry matter accumulation, water-saving technology integration have good effects on water-saving, water storage and increasing moisture on soil and enhancement of soybean yield.
基金supported by Agricultural Science and Technology Innovation Program of Chinese Academy of Agricultural Sciencesthe earmarked fund of China Agricultural Research System of China(CARS-15-11).
文摘Background Potassium(K)is an essential nutrient for plant growth and development.However,plant fertilization ignoring the soil K level is very likely to cause excessive fertilizer use,and further arouse a series of side effects.This study investigated the response of cotton growth to different soil K levels and the uptake of major nutrients,aiming to evaluate the appropriate K supply level for cotton growth.Using a random block design with 6 soil K levels,we conducted 18 micro-zones field experiments over two continuous years.The soil available K concentration of each treatment was K1(99.77-100.90 mg·kg^(-1)),K2(110.90-111.26 mg·kg^(-1)),K3(123.48-128.88 mg·kg^(-1)),K4(140.13-145.10 mg·kg^(-1)),K5(154.43-155.38 mg·kg^(-1)),and K6(165.77-168.75 mg·kg^(-1)).Cotton nutrient contents,soil nutrient contents,accumulation and distribution of dry matter in cotton were determined,and the relationships between K content in soil and plants and dry matter accumulation were analyzed.Results The soil K content had a significantly positive relationship with dry matter and K accumulation in cotton plants.There were significant differences in dry matter accumulation,single-plant seed cotton yield,mineral nutrient uptake and the proportion of K accumulation in reproductive organs among different soil K levels.The results showed that there was significant difference between K4 and lower K level treatments(K1 and K2),but no significant difference between K4 and higher K level treatments(K5 and K6)in dry matter,single-plant seed cotton yield,or accumulation,distribution and seed cotton production efficiency of N,P and K.Conclusion The soil K level of K4 was able to provide sufficient K for cotton growth in our experiment.Therefore,when the soil K level reached 140.13 mg·kg^(-1),further increasing the soil K concentration no longer had a significant positive effect on cotton growth.
基金Supported by the Research and Development Plan of Applied Technology in Heilongjiang Province(GA19B104)。
文摘The high water content of corn grain at harvest is a challenge in Northeast China,where the growing season is short.Using a dehydrating agent before harvest can help corn seeds dehydrate quickly.The dry matter accumulation and nutrient quality of maize were systematically studied by field experiments and instrumental analysis using maize varieties of different maturities as test materials.The results showed that the accumulation of dry matter was enhanced by an increased dosage of a dehydrating agent.When the dehydrating agent dosage reached 1800 mL•hm-2,the dry matter accumulation of early-maturing varieties increased by 24.1 g,and the water content decreased by 8.08%.Different maize varieties were treated with the same dose;early-maturing varieties showed significant effects on grain dry matter accumulation,and kernel dry matter accumulation increased by 7%.The effects of different doses on grain dehydration were obvious,and the effects on different maize varieties varied.Medium-ripening maize varieties showed the most significant effect,with a 19.5%reduction in water content.The effects of dehydrating agent doses on maize yield,grain nutrient quality and seed germination rate were not significant.Therefore,a dehydrating agent promoted the accumulation of dry matter in grain and accelerated the rapid dehydration.
基金National Science and Technology Major project“Main controlling factors of large lithologic reservoir formation and favorable zone evaluation(2017ZX05001-002)”。
文摘The Qingshankou Formation shale oil in the Gulong Sag is an important oil and gas reservoir in the Daqing oilfield,with geological resources of 15.1 billion tons.The fabric of shale can reflect not only its genesis but also the nature of the reservoir space,its physical properties,oil content,and development value.Here,the characteristics of clay minerals in the Gulong shale oil reservoir were studied via electron microscopy,with the primary focus on the microfabrics and reservoir space;thereafter,the in situ accumulation was studied and discussed.Electron backscattering patterns revealed that nanometer pores and fissures were well developed in the Gulong shale oil reservoir.The nano pores were mostly 20-50 nm in diameter(median 20-30 nm),irregularly shaped,mostly,polygonal,and connected with nanofissures.The widths of nanofissures ranged mostly between 10-50 nm(median 20-30 nm);moreover,these fissures were mainly formed by F-F condensation of clay sheets(clay domains).The coagulation of clays was closely related to organic matter,especially algae.The clay colloids were negatively charged due to isocrystalline replacement;hence,metal cations were absorbed around the clay,forming a positive clay group.The positively charged clays subsequently adsorbed negatively charged humic acid(organic matter)and initially degraded algae to form an organic clay flocculant.When the organic clay flocculates reached the threshold for hydrocarbon generation and expulsion,the volume of organic matter decreased by 87%;thereafter,the generated and expelled hydrocarbon filled the nearby pores formed by this contraction.Moreover,the discharged hydrocarbon could not migrate due to capillary resistance(~12 MPa)of the nanopores;hence,the nanopores formed a unique continuous in situ reservoir within the Gulong shale oil.This study demonstrated that the Gulong shale oil reservoir is an actual clay-type shale reservoir with numerous nanopore and fissures.During coagulation,a large amount of organic matter(including layered algae)was absorbed by the clay,forming an organic clay condensate that could have provided the material foundation for hydrocarbon generation at a later stage.Thermal simulation experiments revealed that the volume of organic matter decreased sharply after hydrocarbon generation and expulsion.
基金Supported by the Special Fund for Agro-scientific Research in Public Interest in China(201503119-06-01)。
文摘Slope farmland is a main type of agricultural land throughout northeast China.Long-term high intensity utilization and unreasonable farming have caused the deterioration of soil resources and a decrease in crop production.Here,it was hypothesized that crop straw incorporation might help to reduce nutrient losses and increase maize yields across time and space.A field experiment for testing straw management practices on maize across three slope positions(top,back and bottom slopes)was conducted in Northeast China in 2018 and 2019.In this study,the dry matter accumulation(DMA),N accumulation(NA),N remobilization,postsilking N uptake and grain yield were measured under SI(straw incorporation)and NSI(no straw incorporation)across three slope positions of 100-m-long consecutive black soil slope farmland during the maize(Zea mays L.)growth stages.Compared with NSI,SI significantly increased DMA and NA at the silking and maturity stages.SI typically increased the N remobilization in all slope positions,and significantly increased N remobilization efficiency and contribution of N remobilization to grain on the back and bottom slopes.However,post-silking N uptake was only increased by SI on the top slope.SI generally increased the crop yield in three slope positions.In the SI treatments,the bottom slope was the highest yield position,followed by the top,and then the back slopes,suggesting that the bottom slope position of regularly incorporated straw might have increased the potential for boosting maize yield.Overall,the study demonstrated the outsized potential of straw incorporation to enhance maize NA and then increase the grain yield in black soil slope farmland.
文摘针对河西绿洲灌区小麦生产中氮肥投入高、产量不稳定等问题,通过研究不同施氮水平下土壤调理剂配施缓释氮肥对小麦地上干物质积累动态与产量的影响,为构建河西绿洲灌区减氮小麦的高产高效栽培技术提供实践依据。本研究于2022—2023年在河西绿洲灌区进行,采用裂区设计,主区为:凹凸棒(A)、生物炭(B)和无调理剂(C);裂区为2种氮肥类型:传统化学氮肥(T)和缓释氮肥(S);裂裂区为2个施氮水平:常规施氮量(N2:180 kg hm^(-2))和减量施氮30%(N1:126 kg hm^(-2)),通过测定小麦不同生育阶段的干物质积累量、开花前后干物质转运量、籽粒产量和生物产量,量化最大增长速率及其出现时间,明确不同土壤调理剂配施缓释氮肥对小麦干物质积累特性及产量的影响。结果表明,N1较N2降低小麦地上部干物质积累量10.4%,缓释氮肥较传统化学氮肥提高小麦地上部干物质积累量7.0%,与无调理剂相比,凹凸棒和生物炭提高小麦地上部干物质积累量为7.8%与10.9%。结合土壤调理剂、氮肥类型与施氮量三因素,凹凸棒配施缓释氮肥结合常规施氮减量30%(ASN1)与生物炭配施缓释氮肥结合常规施氮减量30%(BSN1),分别较无调理剂配施传统化学氮肥结合常规施氮量(CTN2)提高出苗后45~95 d小麦干物质积累量9.0%与10.7%,提高出苗后45~90 d小麦干物质积累速率9.7%与12.6%。拟合结果表明,ASN1、BSN1较CTN2推迟小麦干物质最大增长速率出现时间为3.1 d与4.2 d,提高小麦干物质最大增长速率为6.3%与8.1%。ASN1与BSN1提高了小麦开花前后干物质对籽粒的贡献率,ASN1、BSN1较CTN2增产6.8%与8.5%,其增产主要源于穗粒数和千粒重的提高。BSN1较ASN1提高小麦穗粒数、千粒重为7.8%与8.1%,从各方面来看,BSN1的增产优势更为突出。因此,生物炭配施缓释氮肥可作为西北灌区节氮30%时小麦产量提升的有效措施。
文摘探究聚-γ-谷氨酸(γ-PGA)对水稻产量、品质和养分吸收的影响,为高产优质、养分高效利用的水稻栽培技术提供理论依据和技术参考。于2022年和2023年在湖北省武穴市花桥镇开展田间试验,采用随机完全区组设计,包括黑籼稻(B)、冈特优8024(R)和黄华占(H)3个水稻品种,和不施加γ-PGA发酵液(P0)和施加25 kg hm^(-2)γ-PGA发酵液(P1)2种γ-PGA处理方式,分析了水稻干物质量、植株氮磷素积累量、产量、稻米外观品质、籽粒蛋白质含量和直链淀粉含量。结果表明,2022年施加γ-PGA对水稻产量影响显著,P1处理较P0水稻产量增加3.2%~10.8%;2023年施加γ-PGA对水稻产量无显著影响。施加γ-PGA的品种B和R的干物质量显著高于不施γ-PGA处理,BP1处理较BP0齐穗期干物质量显著增加7.5%~8.5%,成熟期干物质量显著增加5.9%~7.2%;RP1处理较RP0齐穗期干物质量显著增加8.5%~8.8%,成熟期干物质量显著增加3.3%~3.5%。施加γ-PGA对品种H的干物质量无显著影响。施加γ-PGA能显著提高水稻的氮素和磷素积累量,P1处理较P0齐穗期氮素积累量显著增加12.5%~19.0%,磷素积累量显著增加13.4%~20.3%;成熟期氮素积累量显著增加7.2%~16.5%,磷素积累量显著增加9.2%~29.0%。施用γ-PGA能显著提高稻米直链淀粉和蛋白质含量,降低胶稠度、垩白度,但对粒长、粒宽、碱消值无显著影响。因此,施用γ-PGA显著提高水稻植株干物质量和氮、磷素积累量,改善稻米品质。