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Enhancing carbon sequestration and greenhouse gas mitigation in semiarid farmland:The promising role of biochar application with biodegradable film mulching
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作者 Jinwen Pang Zhonghong Tian +9 位作者 Mengjie Zhang Yuhao Wang Tianxiang Qi Qilin Zhang Enke Liu Weijun Zhang Xiaolong Ren Zhikuan Jia Kadambot H.M.Siddique Peng Zhang 《Journal of Integrative Agriculture》 2025年第2期517-535,共19页
Long-term mulching has improved crop yields and farmland productivity in semiarid areas,but it has also increased greenhouse gas(GHG)emissions and depleted soil fertility.Biochar application has emerged as a promising... Long-term mulching has improved crop yields and farmland productivity in semiarid areas,but it has also increased greenhouse gas(GHG)emissions and depleted soil fertility.Biochar application has emerged as a promising solution for addressing these issues.In this study,we investigated the effects of four biochar application rates(no biochar(N)=0 t ha^(-1),low(L)=3 t ha^(-1),medium(M)=6 t ha^(-1),and high(H)=9 t ha^(-1))under film mulching and no mulching conditions over three growing seasons.We assessed the impacts on GHG emissions,soil organic carbon sequestration(SOCS),and maize yield to evaluate the productivity and sustainability of farmland ecosystems.Our results demonstrated that mulching increased maize yield(18.68-41.80%),total fixed C in straw(23.64%),grain(28.87%),and root(46.31%)biomass,and GHG emissions(CO_(2),10.78%;N_(2)O,3.41%),while reducing SOCS(6.57%)and GHG intensity(GHGI;13.61%).Under mulching,biochar application significantly increased maize yield(10.20%),total fixed C in straw(17.97%),grain(17.69%)and root(16.75%)biomass,and SOCS(4.78%).Moreover,it reduced the GHG emissions(CO_(2),3.09%;N_(2)O,6.36%)and GHGI(12.28%).These effects correlated with the biochar addition rate,with the optimal rate being 9.0 t ha^(-1).In conclusion,biochar application reduces CO_(2) and N_(2)O emissions,enhances CH_(4) absorption,and improves maize yield under film mulching.It also improves the soil carbon fixation capacity while mitigating the warming potential,making it a promising sustainable management method for mulched farmland in semiarid areas. 展开更多
关键词 BIOCHAR film mulching greenhouse gas emissions carbon sequestration
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The first factor affecting dryland winter wheat grain yield under various mulching measures: Spike number 被引量:1
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作者 Yingxia Dou Hubing Zhao +4 位作者 Huimin Yang Tao Wang Guanfei Liu Zhaohui Wang Sukhdev Malhi 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第3期836-848,共13页
Water is the key factor limiting dryland wheat grain yield.Mulching affects crop yield and yield components by affecting soil moisture.Further research is needed to determine the relationships between yield components... Water is the key factor limiting dryland wheat grain yield.Mulching affects crop yield and yield components by affecting soil moisture.Further research is needed to determine the relationships between yield components and soil moisture with yield,and to identify the most important factor affecting grain yield under various mulching measures.A long-term 9-yearifeld experiment in the Loess Plateau of Northwest China was carried out with three treatments:no mulch (CK),plastic mulch (M_(P)) and straw mulch (M_(S)).Yield factors and soil moisture were measured,and the relationships between them were explored by correlation analysis,structural equation modeling and significance analysis.The results showed that compared with CK,the average grain yields of M_(P) and M_(S) increased by 13.0and 10.6%,respectively.The average annual grain yield of the M_(P) treatment was 134 kg ha^(–1) higher than the M_(S) treatment.There were no significant differences in yield components among the three treatments (P<0.05).Soil water storage of the M_(S) treatment was greater than the M_(P) treatment,although the differences were not statistically signifiant.Soil water storage during the summer fallow period (SWSSF) and soil water storage before sowing (SWSS) of M_(S) were significantly higher than in CK,which increased by 38.5 and 13.6%,respectively.The relationship between M_(P) and CK was not statistically significant for SWSSF,but the SWSS in M_(P) was significantly higher than in CK.In terms of soil water storage after harvest (SWSH) and water consumption in the growth period(ET),there were no signi?cant differences among the three treatments.Based on the three analysis methods,we found that spike number and ET were positively correlated with grain yield.However,the relative importance of spike number to yield was the greatest in the M_(P )and M_(S) treatments,while that of ET was the greatest in CK.Suifcient SWSSF could indirectly increase spike number and ET in the three treatments.Based on these results,mulch can improve yield and soil water storage.The most important factor affecting the grain yield of dryland wheat was spike number under mulching,and ET with CK.These findings may help us to understand the main factors influencing dryland wheat grain yield under mulching conditions compared to CK. 展开更多
关键词 dryland winter wheat plastic mulch spike number straw mulch
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Plastic mulch increases dryland wheat yield and water-use productivity,while straw mulch increases soil water storage 被引量:1
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作者 Hubing Zhao Guanfei Liu +5 位作者 Yingxia Dou Huimin Yang Tao Wang Zhaohui Wang Sukhdev Malhi Adnan Anwar Khan 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第9期3174-3185,共12页
Amplifying drought stress and high precipitation variability impair dryland wheat production.These problems can potentially be minimized by using plastic mulch(PM)or straw mulch(SM).Therefore,wheat grain yield,soil wa... Amplifying drought stress and high precipitation variability impair dryland wheat production.These problems can potentially be minimized by using plastic mulch(PM)or straw mulch(SM).Therefore,wheat grain yield,soil water storage,soil temperature and water-use productivity of PM and SM treatments were compared with no mulch(CK)treatment on dryland wheat over a period of eight seasons.Compared to the CK treatment,PM and SM treatments on average significantly increased grain yield by 12.6 and 10.5%,respectively.Compared to the CK treatment,SM treatment significantly decreased soil daily temperature by 0.57,0.60 and 0.48℃ for the whole seasons,growing periods and summer fallow periods,respectively.In contrast,compared to the CK treatment,PM treatment increased soil daily temperature by 0.44,0.51 and 0.27℃ for the whole seasons,growing periods and summer fallow periods,respectively.Lower soil temperature under SM allowed greater soil water storage than under PM.Soil water storage pre-seeding was 17%greater under the SM than under the PM treatment.Soil water storage post-harvest was similar for the PM and SM treatments,but evapotranspiration was 4.5%higher in the SM than in the PM treatment.Consequently,water-use productivity was 6.6%greater under PM than under the SM treatment.Therefore,PM treatment increased dryland wheat yield and water-use productivity,while straw mulch increased soil water storage. 展开更多
关键词 plastic mulch soil water storage straw mulch water-use productivity winter wheat
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Spectral purification improves monitoring accuracy of the comprehensive growth evaluation index for film-mulched winter wheat 被引量:1
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作者 Zhikai Cheng Xiaobo Gu +5 位作者 Yadan Du Zhihui Zhou Wenlong Li Xiaobo Zheng Wenjing Cai Tian Chang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第5期1523-1540,共18页
In order to further improve the utility of unmanned aerial vehicle(UAV)remote-sensing for quickly and accurately monitoring the growth of winter wheat under film mulching, this study examined the treatments of ridge m... In order to further improve the utility of unmanned aerial vehicle(UAV)remote-sensing for quickly and accurately monitoring the growth of winter wheat under film mulching, this study examined the treatments of ridge mulching,ridge–furrow full mulching, and flat cropping full mulching in winter wheat.Based on the fuzzy comprehensive evaluation (FCE) method, four agronomic parameters (leaf area index, above-ground biomass, plant height, and leaf chlorophyll content) were used to calculate the comprehensive growth evaluation index (CGEI) of the winter wheat, and 14 visible and near-infrared spectral indices were calculated using spectral purification technology to process the remote-sensing image data of winter wheat obtained by multispectral UAV.Four machine learning algorithms, partial least squares, support vector machines, random forests, and artificial neural network networks(ANN), were used to build the winter wheat growth monitoring model under film mulching, and accuracy evaluation and mapping of the spatial and temporal distribution of winter wheat growth status were carried out.The results showed that the CGEI of winter wheat under film mulching constructed using the FCE method could objectively and comprehensively evaluate the crop growth status.The accuracy of remote-sensing inversion of the CGEI based on the ANN model was higher than for the individual agronomic parameters, with a coefficient of determination of 0.75,a root mean square error of 8.40, and a mean absolute value error of 6.53.Spectral purification could eliminate the interference of background effects caused by mulching and soil, effectively improving the accuracy of the remotesensing inversion of winter wheat under film mulching, with the best inversion effect achieved on the ridge–furrow full mulching area after spectral purification.The results of this study provide a theoretical reference for the use of UAV remote-sensing to monitor the growth status of winter wheat with film mulching. 展开更多
关键词 mulched winter wheat machine learning fuzzy comprehensive evaluation comprehensive growth evaluation index unmanned aerial vehicle
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Can soil organic carbon sequestration and the carbon management index be improved by changing the film mulching methods in the semiarid region?
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作者 Jialin Yang Liangqi Ren +6 位作者 Nanhai Zhang Enke Liu Shikun Sun Xiaolong Ren Zhikuan Jia Ting Wei Peng Zhang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第5期1541-1556,共16页
Plastic film mulching has been widely used to increase maize yield in the semiarid area of China.However, whether long-term plastic film mulching is conducive to agricultural sustainability in this region remains cont... Plastic film mulching has been widely used to increase maize yield in the semiarid area of China.However, whether long-term plastic film mulching is conducive to agricultural sustainability in this region remains controversial.A field experiment was initiated in 2013 with five different film mulching methods:(i) control method, flat planting without mulching (CK),(ii) flat planting with half film mulching (P),(iii) film mulching on ridges and planting in narrow furrows(S),(iv) full film mulching on double ridges (D), and (v) film mulching on ridges and planting in wide furrows (R).The effects on soil organic carbon (SOC) content, storage, and fractions, and on the carbon management index (CMI)were evaluated after nine consecutive years of plastic film mulching.The results showed that long-term plastic film mulching generally maintained the initial SOC level.Compared with no mulching, plastic film mulching increased the average crop yield, biomass yield, and root biomass by 48.38, 35.06, and 37.32%, respectively, which led to the improvement of SOC sequestration.Specifically, plastic film mulching significantly improved CMI, and increased the SOC content by 13.59%, SOC storage by 7.47%and easily oxidizable organic carbon (EOC) by 13.78%on average,but it reduced the other labile fractions.SOC sequestration and CMI were improved by refining the plastic film mulching methods.The S treatment had the best effect among the four mulching methods, so it can be used as a reasonable film mulching method for sustainable agricultural development in the semiarid area. 展开更多
关键词 plastic film mulching soil organic carbon labile organic carbon fractions semiarid area
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Effects of film-stalk spaced dual mulching system on corn growth and yield
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作者 CAO Jinjun SUN Yaqi +7 位作者 PENG Shuili LI Wanxing HE Xiaobing LI Xiaoxia LI Dan JIN Kunpeng YANG Yi LIU Yongzhong 《Journal of Arid Land》 SCIE CSCD 2024年第12期1714-1729,共16页
Film-stalk spaced dual mulching is a new type of cultivation measure that is increasingly highlighted in semi-arid areas in China.Despite its potential,there is limited understanding of how different mulching material... Film-stalk spaced dual mulching is a new type of cultivation measure that is increasingly highlighted in semi-arid areas in China.Despite its potential,there is limited understanding of how different mulching materials affect both soil quality and crop yield in these areas.To address this gap,we conducted a two-year(2020-2021)field experiment in central China to explore the yield-enhancing mechanisms and assess the impact of various mulching materials on soil and corn yield.The experiment comprised six treatments,i.e.,plastic film-whole stalk spaced mulching in fall(PSF),plastic film-whole stalk spaced mulching in spring(PSS),black and silver plastic film-whole stalk spaced mulching in spring(BPSS),biodegradable film-whole stalk spaced mulching in spring(BSS),liquid film-whole stalk spaced mulching in spring(LSS),and non-mulching cultivation(CK).Results revealed that BPSS demonstrated the most significant yield increase,surpassing CK by a notable 10.0%and other mulching treatments by 2.4%-5.9%.The efficacy of BPSS lied in its provision of favorable hydrothermal conditions for corn cultivation,particularly during hot season.Its cooling effect facilitated the establishment of optimal temperature conditions relative to transparent mulching,leading to higher root growth indices(e.g.,length and surface area),as well as higher leaf photosynthetic rate and dry matter accumulation per plant.Additionally,BPSS maintained higher average soil moisture content within 0-100 cm depth compared with biodegradable mulching and liquid mulching.As a result,BPSS increased activities of urease,catalase,and alkaline phosphatase,as well as the diversity and abundance of soil bacteria and fungi in the rhizosphere zone of corn,facilitating nutrient accessibility by the plant.These findings suggest that selecting appropriate mulching materials is crucial for optimizing corn production in drought-prone areas,highlighting the potential of BPSS cultivation. 展开更多
关键词 film-stalk spaced dual mulching black plastic film cover CORN yield conservational tillage system
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Effect of Different Mulch Materials on Yield and Nutrition Profile of Common Capsicum (Capsicum annuum) Cultivars in Bangladesh
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作者 Prince Biswas Md. Abubakar Siddik +5 位作者 Md. Shariful Islam Mohammad Zahir Ullah Md. Shamsuzzoha Hasina Akter Akm Maksudul Alam Mominul Hauque Robin 《Agricultural Sciences》 2024年第2期246-255,共10页
Capsicum is a nutritious vegetable and its cultivation in farms is getting popular in Bangladesh. Although many efforts have lain to explore better yielding and nutritionally rich cultivars with suitable modern cultiv... Capsicum is a nutritious vegetable and its cultivation in farms is getting popular in Bangladesh. Although many efforts have lain to explore better yielding and nutritionally rich cultivars with suitable modern cultivation techniques but still have to find the desired outcome. Thus, it’s necessary to conduct further research to identify the high-yielding and nutritious capsicum cultivars in Bangladesh. An experiment was conducted from July 2021 to June 2022 at the Bangladesh Institute of Research and Training on Applied Nutrition (BIRTAN) research field with three cultivars of capsicum: B<sub>0</sub> = California Wonder, B<sub>1</sub> = BARI Misti Morich-1 and B<sub>2</sub> = BARI Misti Morich-2 and three mulching: T<sub>0</sub> = No mulching, T<sub>1</sub> = Water hyacinth, T<sub>2</sub> = Poly Mulching in randomized complete block design with three replications to identify better quality capsicum cultivar and suitable mulching material. Among cultivars the BARI Misti Morich-2 (B<sub>2</sub>) showed increased agronomic parameters like number of branches and effective branches per plant, leaves length and width, consequently yield and yield contributing traits were also enhanced like fruits per plant, fruit length, fruit diameter and yield per plant (25.97%, 4.54%, 3.64% and 21.43%, respectively). Poly Mulching (T<sub>2</sub>) increased agronomic traits, yield traits and yield (0.61 kg) than BARI Misti Morich-1 (T<sub>1</sub>). The combined effect of B<sub>2</sub>T<sub>2</sub> increased the number of branches per plant, effective branches per plant, leaves length and breadth by 40%, 90%, 15.57% and 26.22%, respectively, hence resulting in an increased yield of 20%. BARI Misti Morich-2 cultivar showed an increase in Fe, Zn and Vitamin-C content of 26.24% and 23.10%, 8.82% and 5.14%, and 6.03% and 5.74% than B0 and B1 cultivars, respectively. Therefore, BARI Misti Morich-2 exhibited the improved agronomic, yield and nutritional traits of capsicum under poly mulching among other cultivars in Bangladesh. 展开更多
关键词 Capsicum Cultivars mulch Materials YIELD Yield Contributing Traits Nutritional Quality
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Performance of Bt cotton evaluated in relation to mulching and weed control measures in northwest India
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作者 PRIYANKA Devi KARMAL Singh +1 位作者 MEENA Sewhag SUSHIL Kumar 《Journal of Cotton Research》 CAS 2024年第4期353-360,共8页
Background Weed infestation in cotton has been reported to offer severe competition and cause yield reduction to a large extent.Weeding via cultural practices is time consuming,tedious,and expensive due to long durati... Background Weed infestation in cotton has been reported to offer severe competition and cause yield reduction to a large extent.Weeding via cultural practices is time consuming,tedious,and expensive due to long duration of cotton crop and regular monsoon rains during cotton production in India.Chemical weed control has been successfully utilized in cotton in the recent past.However,continuous use of similar herbicides leads to resistance in weeds against herbicides.And when sprayed to the field,herbicides not only suppress weeds but leave undesirable residues in the soil that are hazardous to the environment.Therefore,a study was performed at cotton research area at Chaudhary Charan Singh Haryana Agricultural University,Hisar,Haryana during two consecutive kharif seasons(2020 and 2021)to determine the most suitable and sustainable weed management strategy through the integration of chemical and cultural methods.Results Mulching with rice straw of 7.5 t ha^(-1)resulted in significantly higher cotton seed yield(3189 and 3084 kg ha^(-1))and better weed control in comparison to no mulch treatments(2990 and 2904 kg ha^(-1))in 2020 and 2021,respectively.Among various weed management levels,the significantly lowest cotton seed yield was recorded in untreated control(1841 and 1757 kg·ha^(-1)during 2020 and 2021,respectively)in comparison to other treatments while all other treatments were statistically at par with each other during both years of crop experimentation.Conclusion Mulching with rice straw of 7.5 t·ha^(-1)along with a pre-emergence application of pendimethalin(active ingredient)at 1.5 kg·ha^(-1)fb(followed by)one hoeings at 45 days after sowing(DAS)and fb glyphosate 2 kg·ha^(-1)(Shielded spray)at 90 DAS is a viable option for effective control of grassy and broadleaved weeds in Bt cotton in north-west India. 展开更多
关键词 Bt Cotton Pre-and post-emergence herbicides Rice straw mulching Weed management
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Rice Cultivation under Film Mulching Can Improve Soil Environment and Be Beneficial for Rice Production in China
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作者 ZHANG Youliang ZHU Kaican +1 位作者 TANG Yongqi FENG Shaoyuan 《Rice science》 SCIE CSCD 2024年第5期545-555,共11页
Rice cultivation under film mulching is an integrated management technology that can conserve water, increase soil temperature, improve yield, and enhance water and nitrogen use efficiencies. Despite these advantages,... Rice cultivation under film mulching is an integrated management technology that can conserve water, increase soil temperature, improve yield, and enhance water and nitrogen use efficiencies. Despite these advantages, the system does have its drawbacks, such as soil organic matter reduction and microplastic pollution, which impede the widespread adoption of film mulching cultivation in China. Nonetheless, the advent of degradable film, controlled-release fertilizer, organic fertilizer, and film mulching machinery is promoting the development of rice film mulching cultivation. This review outlines the impact of rice cultivation under film mulching on soil moisture, soil temperature, soil fertility, greenhouse gas emissions, weed control, and disease and pest management. It also elucidates the mechanism of changes in rice growth, yield and quality, water use efficiency, and nitrogen use efficiency. This paper incorporates a review of published research articles and discusses some uncertainties and shortcomings associated with rice cultivation under film mulching. Consequently, prospective research directions for the technology of rice film mulching cultivation are outlined, and recommendations for future research into rice cultivation under film mulching are proposed. 展开更多
关键词 nitrogen use efficiency rice cultivation under film mulching soil organic matter yield and quality water use efficiency
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Effect of Different Mulching Materials on Growth Parameters and Yield of Okra (Abelmoschus esculentus) Production in Minna, Nigeria
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作者 Ebierin Akpoebidimiyen Otuaro John Jiya Musa +2 位作者 Mohammed Musa Isah Abayomi Ibrahim Kuti Muhammad Yusuf Salihu 《Open Journal of Forestry》 2024年第3期197-213,共17页
During the 2022 growing season (August to November) at the Federal University of Technology, Minna School farm, Niger State, an experiment was conducted to investigate the influence of mulching on Okras growth, yield,... During the 2022 growing season (August to November) at the Federal University of Technology, Minna School farm, Niger State, an experiment was conducted to investigate the influence of mulching on Okras growth, yield, and moisture content was examined across four distinct growth stages (initial, development, mid, and late) and at varying soil depths (0 - 30 cm and 30 - 60 cm). The study employed a randomised complete block design with four replications, encompassing control (T0), groundnut shells mulch (T1), black polythene mulch (T2), and white polythene mulch (T3) as treatments. The highest average Okra fresh pod yield, amounting to 23.4 t/ha, was achieved by implementing white plastic mulch, contrasting with the control treatment, which yielded the lowest at 22 t/ha. Notably, the control plots exhibited yield reductions of up to 32% compared to the plots employing white plastic mulching. The utilisation of mulch had a notable impact on the overall crop yield, with the superior quality evident in the treatment employing white plastic mulch (26 t/ha). The control treatment exhibited the lowest quality at 24.3 t/ha. Groundnut shell mulch influenced moisture conservation, but no significant variance was observed compared to the control plots. Therefore, the study suggests that polythene mulch may be the most suitable type to enhance the quality of okra production by conserving soil moisture. Among the biodegradable and non-biodegradable mulches used in this study, white polythene mulch was the most effective. 展开更多
关键词 CROP Groundnut Shell mulch Plastic Pod Soil
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西北绿洲灌区玉米叶片衰老特征对不同地膜覆盖利用方式的响应
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作者 王丽萍 李盼 +6 位作者 赵连豪 樊志龙 胡发龙 范虹 何蔚 柴强 殷文 《作物学报》 CAS 北大核心 2025年第1期233-246,共14页
西北绿洲灌区玉米传统生产模式中大量使用地膜伴随着生态环境污染严重,且在极端高温下玉米出现叶片早衰。针对该现象,通过免耕一膜2年覆盖利用技术探讨延缓玉米叶片衰老并增加玉米产量的可行性,以期为构建西北绿洲灌区地膜减量玉米高效... 西北绿洲灌区玉米传统生产模式中大量使用地膜伴随着生态环境污染严重,且在极端高温下玉米出现叶片早衰。针对该现象,通过免耕一膜2年覆盖利用技术探讨延缓玉米叶片衰老并增加玉米产量的可行性,以期为构建西北绿洲灌区地膜减量玉米高效生产技术提供理论支撑。2013年在西北绿洲灌区设置免耕一膜2年覆盖利用(NTP)、秋免耕春覆膜(RTP)和传统每年覆新膜(对照, CTP) 3种处理(本文采用2021-2023数据),探究玉米叶片光合源、持绿特性、细胞抗氧化酶活性和渗透调节物质含量对不同地膜覆盖利用方式的响应。结果表明,NTP和RTP可有效调节玉米生育期内光合源和叶片持绿性能的动态关系,维持生育后期较大的叶面积指数(LAI)、光合势(LAD)、叶片持绿性(SG)和叶绿素相对含量(SPAD),有利于延缓叶片衰老。与CTP相比, NTP玉米出苗后75~120 d的LAI、LAD、SG和SPAD分别提高15.1%~16.1%、14.8%~15.5%、7.2%~9.2%和11.3%~11.7%,RTP分别提高12.4%~13.0%、11.5%~12.4%、10.0%~17.6%和6.0%~6.7%。同时,通过单株绿色叶面积的拟合,发现NTP和RTP较CTP叶片衰老时间平均推迟了5.8~7.0d和6.2~7.7d,这可能是由于NTP和RTP有助于增强玉米大喇叭口期-灌浆期叶片的抗氧化能力和细胞渗透调节作用。玉米出苗后60~105 d, NTP较CTP叶片抗氧化酶(SOD、POD、CAT和APX)活性分别提高17.6%~20.0%、28.4%~34.4%、6.7%~8.4%和8.3%~10.9%, RTP较CTP分别提高11.3%~11.7%、16.9%~18.2%、4.4%~6.1%和5.8%~7.7%。此外,与CTP相比,NTP与RTP可溶性蛋白和脯氨酸含量分别提高35.9%~43.9%和29.5%~31.8%,20.7%~31.7%和17.4%~20.4%,丙二醛含量分别降低26.0%~27.8%和17.5%~25.9%。NTP对抗氧化酶和渗透调节物质的影响更大,NTP较CTP增产5.2%~6.0%。免耕一膜2年覆盖利用技术是西北灌区在实现资源减投条件下,有效延缓玉米叶片衰老且增加产量的适宜措施。 展开更多
关键词 地膜覆盖 光合源 抗氧化酶活性 细胞渗透调节能力 籽粒产量
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可降解秸秆基地膜增韧改性及其对水稻生长的影响 被引量:1
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作者 孙恩惠 陈玲 +3 位作者 范肖东 彭鵾 GUEGUIM KANA E B 翟胜丞 《林产化学与工业》 北大核心 2025年第1期63-71,共9页
以秸秆纤维为原料,经氯化胆碱/尿素-微生物联合预处理之后,依次通过填充不同添加量的杨木纤维、调控湿强剂组合种类以及利用自主研发的纳米木质素聚合物作表面涂层,制备改性秸秆纤维基地膜(MSFM),分析改性处理对可降解秸秆纤维基地膜力... 以秸秆纤维为原料,经氯化胆碱/尿素-微生物联合预处理之后,依次通过填充不同添加量的杨木纤维、调控湿强剂组合种类以及利用自主研发的纳米木质素聚合物作表面涂层,制备改性秸秆纤维基地膜(MSFM),分析改性处理对可降解秸秆纤维基地膜力学性能、韧性、疏水性、降解性及水稻生长等的影响。研究结果表明:杨木纤维的填充可有效降低细小秸秆纤维流失率;优选杨木纤维与秸秆纤维质量比为4∶6,湿强剂硫酸铝(AS)添加量1.5%、阳离子分散松香胶(CDR)1.5%,纳米木质素聚合物表层涂布量2~2.5 g/m^(2)时,获得的改性秸秆纤维基地膜(MSFM)抗张指数为30.33 N·m/g、湿抗张指数9.23 N·m/g、撕裂指数5.16 mN·m^(2)/g、耐破指数2.36 kPa·m^(2)/g,应变由0.48%提高到1.13%,增幅达135.42%,且表现出优异的疏水性和湿稳定性。地膜降解试验结果表明:第9周时MSFM失重率达62%,同时盆栽试验期杂草抑制率达81.20%,且具有良好的土壤保温及水稻促生作用。生物可降解秸秆纤维地膜能够从源头减少污染物和化石资源投入,在农田土壤覆盖应用领域前景广阔。 展开更多
关键词 秸秆纤维 可降解地膜 增韧改性 力学性能 杂草防控 增温促生
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聚对苯二甲酸-己二酸丁二酯生物降解膜对土壤细菌群落的影响
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作者 林青 曾军 +5 位作者 高雁 史应武 杨红梅 楚敏 娄恺 霍向东 《西北农业学报》 北大核心 2025年第3期508-517,共10页
为探究聚对苯二甲酸-己二酸丁二酯[Poly(butylene adipate-co-terephthalate),PBAT]生物降解膜对土壤细菌群落的影响,选取甜菜、番茄、玉米、马铃薯、花生和棉花6种作物,分别铺覆PBAT膜和传统PE膜种植,收获期前采集膜下土壤,测定理化性... 为探究聚对苯二甲酸-己二酸丁二酯[Poly(butylene adipate-co-terephthalate),PBAT]生物降解膜对土壤细菌群落的影响,选取甜菜、番茄、玉米、马铃薯、花生和棉花6种作物,分别铺覆PBAT膜和传统PE膜种植,收获期前采集膜下土壤,测定理化性质,通过16S rDNA高通量测序解析土壤细菌群落结构差异和菌群组成及预测群落功能。结果表明:同一作物(除棉花外)2种膜下的土壤理化性质之间无明显差异。所有处理土壤细菌群落多样性丰富,同一作物2种膜下的多样性指数(棉花组谱系多样性例外)均无显著差异(P>0.05)。细菌群落中丰度占比较高的门有Proteobacteria、Bacteroidetes、Acidobacteria、Actinobacteria等,属有H16、Pontibacter、Arenimonas等。多数细菌门、属丰度占比在同一作物2种膜下无显著差异(P>0.05)。化能异养、需氧化能异养、硝化作用、好氧氨氧化、含硫化合物的呼吸作用等菌群功能丰度相对较高。多数细菌群落功能相对占比在同一作物2种膜下无显著差异(P>0.05)。部分土壤理化性质和优势细菌菌群呈极显著(P<0.01)相关或显著(P<0.05)相关。同种作物铺覆PBAT生物降解膜和PE膜对土壤的理化性质和细菌群落的影响基本无显著差异。 展开更多
关键词 聚对苯二甲酸-己二酸丁二酯 地膜 生物降解 细菌群落 高通量测序
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灌水下限和施肥量对膜下滴灌小型大白菜耗水及光合特性的影响
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作者 马彦霞 陈静茹 +3 位作者 王晓巍 张玉鑫 张俊峰 蒯佳琳 《中国农业科技导报(中英文)》 北大核心 2025年第3期239-249,共11页
为探求河西冷凉灌区秋茬小型大白菜(Brassica pekinensis)节水节肥、高产高效的科学灌溉施肥制度,以当地秋茬主栽品种‘金皇后’为试材,研究膜下滴灌条件下不同水肥(低水,H1;中水,H2;高水,H3;低肥,F1;中肥,F2;高肥,F3)组合对小型大白菜... 为探求河西冷凉灌区秋茬小型大白菜(Brassica pekinensis)节水节肥、高产高效的科学灌溉施肥制度,以当地秋茬主栽品种‘金皇后’为试材,研究膜下滴灌条件下不同水肥(低水,H1;中水,H2;高水,H3;低肥,F1;中肥,F2;高肥,F3)组合对小型大白菜耗水及其叶片光合特性的影响。结果表明,灌水量、施肥量及其交互均不同程度地影响小型大白菜的耗水和光合特性及产量。在不同水肥耦合作用下,小型大白菜耗水强度均于结球初期达到最大值,低水、中水和高水处理的耗水强度分别为0.0032、0.0033、0.0034 m^(3)·d^(-1)·m^(-2)。水肥耦合模式下,中水中肥处理小型大白菜的叶绿素含量、叶片净光合速率、气孔导度、蒸腾速率、经济产量较低水低肥处理分别提高4.4%、10.4%、27.3%、23.6%、62.3%,叶片胞间CO_(2)浓度降低3.0%。综合考虑小型大白菜的耗水、产量和光合利用等特性,甘肃河西走廊冷凉灌区露地秋茬小型大白菜的适宜水肥耦合模式为灌水量控制在田间持水量的70%,N、P_(2)O_(5)、K_(2)O的施用量分别为330、195、450 kg·hm^(-2)。以上结果为河西冷凉灌区秋茬小型大白菜水肥管理提供理论依据和技术支持。 展开更多
关键词 小型大白菜 膜下滴灌 耗水特征 施肥 光合特性
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灌水量及种植密度对河西灌区膜下滴灌水稻产量及水分利用效率影响
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作者 唐文雪 马忠明 +3 位作者 薛亮 连彩云 王智琦 罗双龙 《中国稻米》 北大核心 2025年第2期76-82,共7页
本研究旨在探讨不同灌水量与种植密度对膜下滴灌水稻产量、耗水量及水分利用效率的影响,并确定能够协同提升产量与水分利用效率的最佳灌水量与种植密度组合。采用裂区设计方法,主处理为灌水量,设750.00 mm(W1)、975.00 mm(W2)、1200.00 ... 本研究旨在探讨不同灌水量与种植密度对膜下滴灌水稻产量、耗水量及水分利用效率的影响,并确定能够协同提升产量与水分利用效率的最佳灌水量与种植密度组合。采用裂区设计方法,主处理为灌水量,设750.00 mm(W1)、975.00 mm(W2)、1200.00 mm(W3)3个水平;副处理为种植密度,设36.40万穴/hm^(2)(D1)、44.40万穴/hm^(2)(D2)、57.10万穴/hm^(2)(D3)3个水平。研究结果显示,水稻的产量、耗水量和水分利用效率均受到灌溉水平、种植密度及其交互作用的影响。在产量方面,W2和W3处理的产量相近,其比W1处理分别显著提高35.66%和36.86%。与D1和D2处理相比,D3处理的产量显著提高60.54%和12.79%。高密度种植与中高灌水量结合(W2D3和W3D3处理)能够使水稻获得更高的产量。在耗水量方面,W2处理比W1处理显著增加26.69%,但比W3处理显著降低17.13%。尽管D3处理的耗水量最高,但仅比D1和D2处理分别增加1.63%和1.47%。W3D1、W3D2、W3D3处理的耗水量较高,表明灌水量是影响水稻耗水量的主要因素。在水分利用效率方面,W2处理的水分利用效率为4.02 kg/(hm^(2)·mm),比W1和W3处理分别提高6.91%和20.00%;D3处理的水分利用效率为4.31 kg/(hm^(2)·mm),比D1和D2处理分别提高52.30%和8.02%。在各处理组合中,W1D2、W2D3、W3D3的水分利用效率较高,分别为4.45、4.87和4.41 kg/(hm^(2)·mm)。综合考虑水稻的增产和节水效果,灌水量为975.00 mm、种植密度为57.10万穴/hm^(2)时,水稻产量和水分利用效率均达到较高水平。 展开更多
关键词 膜下滴灌水稻 种植密度 灌水量 耗水量 产量 水分利用效率
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稻茬田油菜直播秸秆覆盖还田装置设计与试验
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作者 张青松 齐涛 +3 位作者 燕桓 廖庆喜 杜文斌 蔡家顺 《农业机械学报》 北大核心 2025年第1期186-196,共11页
针对长江中下游稻油轮作区油菜直播作业时,地表留存的水稻秸秆质量大,直播机触土部件进行秸秆混埋、深埋等作业时,存在秸秆全量还田难度大、机具易堵塞等问题,设计了一种稻茬田油菜直播秸秆覆盖还田装置,该装置可与油菜直播机配合作业,... 针对长江中下游稻油轮作区油菜直播作业时,地表留存的水稻秸秆质量大,直播机触土部件进行秸秆混埋、深埋等作业时,存在秸秆全量还田难度大、机具易堵塞等问题,设计了一种稻茬田油菜直播秸秆覆盖还田装置,该装置可与油菜直播机配合作业,完成秸秆后铺覆盖还田、开畦沟、灭茬旋耕碎土、施肥播种等作业工序,实现部分秸秆厢面覆盖还田,可以通过液压系统控制装置作业参数调节部分秸秆混埋还田作业效果和厢面覆盖秸秆质量。秸秆覆盖还田装置主要由拨秸部件、割秸部件、提秸部件、输秸部件和液压系统等组成,通过动力学与运动学分析,确定秸秆覆盖还田装置关键部件结构及运行参数。开展田间试验,试验结果表明,油菜直播秸秆覆盖还田装置各工作部件作业正常,机组作业通过顺畅,当秸秆覆盖输入量为1.9~2.7 kg/s时,机具作业后厢面秸秆覆盖作业均匀性好,当输入秸秆量达2.7 kg/s时,秸秆覆盖作业均匀性系数可达90.8%,研究结果为稻茬田油菜直播秸秆覆盖还田装置设计提供参考。 展开更多
关键词 油菜直播 秸秆覆盖还田装置 稻茬田 田间试验
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会宁半干旱区全生物降解地膜覆盖栽培下玉米品种筛选试验
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作者 周刚 李尚中 +4 位作者 樊廷录 赵刚 张建军 党翼 王磊 《寒旱农业科学》 2025年第1期28-33,共6页
研究筛选会宁半干旱地区抗旱高产优质玉米品种,为促进会宁半干旱地区全生物降解地膜替代普通地膜种植方式的进一步转变提供科学依据。以引进的11个抗旱玉米品种为试验材料,利用全生物降解黑色地膜及全膜双垄覆盖沟播技术,测定和分析玉... 研究筛选会宁半干旱地区抗旱高产优质玉米品种,为促进会宁半干旱地区全生物降解地膜替代普通地膜种植方式的进一步转变提供科学依据。以引进的11个抗旱玉米品种为试验材料,利用全生物降解黑色地膜及全膜双垄覆盖沟播技术,测定和分析玉米的生育期、农艺性状、产量、SPAD值及品质指标。结果表明,在种植密度为6万株/hm^(2)时,先玉1483折合产量最高,为9584.1 kg/hm^(2);MC703、迪卡C1563折合产量较高,分别为9147.8、8987.2 kg/hm^(2)。先玉1483、MC703、迪卡C1563生育期均为127 d,灌浆时期叶片SPAD值分别为55.7、56.5、52.3,后期的光合能力较强,且综合籽粒营养品质较好。以上3个玉米品种可作为会宁半干旱区使用全生物降解地膜进行全膜双垄沟播种植模式下的示范推广品种。 展开更多
关键词 玉米 品种 全生物降解地膜 筛选试验 会宁半干旱区
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基于决策融合的南方复杂地区覆膜农田信息快速提取研究
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作者 林娜 陈宏 +1 位作者 谢骞 赵健 《安徽农业科学》 2025年第3期229-235,242,共8页
为实现快速且准确地获取南方复杂地区覆膜农田信息,探索一种基于决策融合规则的单时相遥感提取方法。首先基于Sentinel-2影像数据,在南方丘陵山区这一典型地表混杂区域,应用特征提取算法与最小距离、最大似然、支持向量机、BP神经网络... 为实现快速且准确地获取南方复杂地区覆膜农田信息,探索一种基于决策融合规则的单时相遥感提取方法。首先基于Sentinel-2影像数据,在南方丘陵山区这一典型地表混杂区域,应用特征提取算法与最小距离、最大似然、支持向量机、BP神经网络、随机森林5种单分类器进行遥感影像分类,在此基础上依据各分类器分类结果与分类性能,构建一种结合层次分析与投票机制的自适应决策融合规则,进行了覆膜农田信息的提取,并评估其精度。对比5种单分类器与决策融合模型的分类性能,结果表明决策融合模型在精度评价指标上均显著优于单一分类器,总体精度达到91.82%,Kappa系数达到0.89,对覆膜农田的提取识别能力也表现优异,其生产者精度、用户精度和F_(1)Score分别达到92.68%、81.74%和0.87。提出的方法有效提高了覆膜农田的提取准确率、复杂度和计算成本较低,具有较强的泛化性与可操作性,适用于南方复杂农业环境,为实际生产应用提供了可靠的解决方案。 展开更多
关键词 决策融合 多分类器 覆膜农田 Sentinel-2 复杂地区
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液态地膜对番茄产量的影响
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作者 李丹丹 杨浩瑜 +1 位作者 武晓燕 秦洁 《农业技术与装备》 2025年第2期131-133,共3页
为了了解液态地膜在番茄种植过程中的效果,设置液态地膜处理组和对照无处理组,对比探讨液态地膜对番茄种植过程中土壤温湿度及番茄产量的影响。结果表明,液态地膜处理组的土壤温湿度优于对照无处理组,液态地膜处理组的番茄产量显著高于... 为了了解液态地膜在番茄种植过程中的效果,设置液态地膜处理组和对照无处理组,对比探讨液态地膜对番茄种植过程中土壤温湿度及番茄产量的影响。结果表明,液态地膜处理组的土壤温湿度优于对照无处理组,液态地膜处理组的番茄产量显著高于对照无处理组,产量提高了17.52%,从经济效益验证了液态地膜覆盖的可行性,具有一定的推广意义。 展开更多
关键词 液态地膜 番茄 土壤保温 土壤保湿 产量
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膜下微喷灌条件下水氮耦合对制种玉米产量及水肥效应的影响
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作者 连彩云 马忠明 +3 位作者 王智琦 薛亮 唐文雪 罗双龙 《寒旱农业科学》 2025年第1期39-46,共8页
研究水氮耦合对膜下微喷灌制种玉米产量及水氮利用率的响应,实现制种玉米高产和水氮资源的高效利用。于2022年在甘肃省农业科学院张掖节水农业试验站以灌水量为主处理(2700、3600、4500 m^(3)/hm^(2))、施N量为副处理(0、120、240、360 ... 研究水氮耦合对膜下微喷灌制种玉米产量及水氮利用率的响应,实现制种玉米高产和水氮资源的高效利用。于2022年在甘肃省农业科学院张掖节水农业试验站以灌水量为主处理(2700、3600、4500 m^(3)/hm^(2))、施N量为副处理(0、120、240、360 kg/hm^(2)),分析了膜下微喷灌条件下不同水氮耦合模式对制种玉米产量及水肥效应的影响。结果表明,在微喷灌溉条件下,增加灌水量和施N量均能有效提高制种玉米籽粒产量,但当水氮施用量达到一定程度后,其增产效应减弱。不同的灌水量下,施N量为240 kg/hm^(2)的处理较其余施氮处理均明显提高了叶面积指数及光的截获率,叶面积指数在灌浆期时较0、120、360 kg/hm^(2)施氮处理分别高16.69%~21.12%、1.33%~2.00%、-3.79%~13.73%。在灌水量为4500 m^(3)/hm^(2)、施N量为240 kg/hm^(2)的条件下,玉米籽粒产量最高,为7.84 t/hm^(2),但与灌水量为3600 m^(3)/hm^(2)、施N量为240 kg/hm^(2)的处理(7.80 t/hm^(2))差异不显著,仅增产0.5%;且后者与前者相比,灌水量减少了20%,水分利用效率则增加了13.50%,氮肥农学利用效率(NAE)提高了60.91%。综上认为,在膜下微喷灌条件下,灌水量为3600 m^(3)/hm^(2)、施N量为240 kg/hm^(2)是试验区乃至河西灌区制种玉米生产的最适宜水氮耦合模式。 展开更多
关键词 制种玉米 水氮耦合 产量 水肥效应 膜下微喷灌
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