Results 1 to 10 of about 337 (103)

Effects of interactions between anthropogenic stressors and recurring perturbations on ecosystem resilience and collapse

open access: yesConservation Biology, Volume 37, Issue 1, February 2023., 2023
Abstract Insights into declines in ecosystem resilience and their causes and effects can inform preemptive action to avoid ecosystem collapse and loss of biodiversity, ecosystem services, and human well‐being. Empirical studies of ecosystem collapse are rare and hampered by ecosystem complexity, nonlinear and lagged responses, and interactions across ...
David A. Keith   +8 more
wiley   +1 more source

果壳生物质炭的改性及其对DEP的吸附机理

open access: yesShuitu Baochi Xuebao, 2021
为探究改性前后生物质炭的理化属性变化及其对邻苯二甲酸二乙酯(DEP)的吸附机理,以椰子壳和花生壳为原料制备生物质炭,分别进行14% H3PO4改性和1.0 mol/L NaOH-30% H2O2联合改性处理。结果表明:改性后生物质炭的芳香化程度和含氧官能团含量增加,除C300N (经NaOH-H2O2改性的300℃—椰子壳生物质炭)外比表面积(SA)都增大。P800N (经NaOH-H2O2改性的800℃—花生壳生物质炭)有最大的SA (584.22 m2/g),因此对DEP的吸附亲和力最高 ...
范新会   +5 more
doaj  

Characterization of poultry and swine manure-derived biochar as affected by pyrolysis temperature(热解温度对畜禽粪便制备的生物质炭性质的影响)

open access: yesZhejiang Daxue xuebao. Lixue ban, 2014
以猪粪和鸡粪为原料,研究了热解温度(200~700 ℃)对生物质炭物理和化学性质的影响.结果表明,生物质炭的得率随着热解温度的升高逐渐降低,猪粪生物质炭的得率较鸡粪高;猪粪和鸡粪生物质炭的灰分含量分别为41. 2%~70. 6%和20. 3%~48.1%.生物质炭均为中性或碱性,300~700 ℃热解所制备的生物质炭的pH值不仅与灰分含量有关,还可能与Ca含量密切相关.红外光谱表明,低温热解条件下(≤300 ℃)生物质炭中的含氧官能团与原材料相比无明显变化;但是当热解温度高于400 ℃时 ...
WANGLihua(王立华), LINQi(林琦)
doaj   +1 more source

生物质炭和腐殖质对稻田土壤CH

open access: yesShuitu Baochi Xuebao, 2022
为探讨生物质炭与腐殖质单独施用与配合施用对稻田土壤CH4和N2O气体排放以及水稻产量的影响。以浙江临安潜育性水稻土的稻田系统为研究对象, 设置2个水稻秸秆生物质炭添加水平(0, 20 t/hm2)和3个腐殖质水平(0, 0.6, 1.2 t/hm2), 共6个处理, 分别为: (1)B0F0(对照, 不添加生物质炭和腐殖质); (2)B0F1(腐殖质用量为0.6 t/hm2); (3)B0F2(腐殖质用量为1.2 t/hm2); (4)B1F0(生物质炭用量为20 t/hm2); (5)B1F1 ...
陈峰   +6 more
doaj  

土壤属性和作物生长对生物炭施用的响应和反馈研究进展

open access: yesShuitu Baochi Xuebao, 2022
生物炭作为一种土壤改良剂,近年来在提升土壤质量和作物产量方面效应良好。在全面梳理生物炭施用效果方面的最新研究基础上,总结了土壤理化性质、作物生长和产量对生物炭施用的响应和反馈规律。结果表明:(1)生物炭的来源、是否酸化、施用年限及施用量决定了施用后的土壤属性及作物产量变化幅度。一般来说,施用量增加、土壤容重降低,土壤孔隙度增加、土壤水力性质及入渗性能改善,土壤温度也增加。(2)由于土壤物理性质改变,施用生物炭最终降低了土壤表层的盐分表聚。生物炭对土壤pH的调节效果取决于两者pH的差异。此外 ...
李毅   +6 more
doaj  

芦荻生物质炭基肥研制及其对水稻土氮损失的影响

open access: yesShuitu Baochi Xuebao, 2022
为实现秸秆资源化利用和强化生物质炭基肥生产应用,以洞庭湖芦荻秸秆热解生物质炭为基质,采用包膜和混合造粒技术,以改性淀粉为黏合剂,辅以膨润土、腐殖酸等材料制备包膜炭基肥(CT)和混合炭基肥(MT)。以生物质炭占比10%(T1),15%(T2),20%(T3),25%(T4)和30%(T5),从微观形态结构、养分释放速率、粒径及抗压强度等基本性质进行择优筛选,将筛选后的炭基肥处理(CT2、CT3、CT4和MT1、MT2、MT3)与普通复合肥(NPK)、不施肥(CK)共8个处理进行室内水稻盆栽试验 ...
赵杭   +7 more
doaj  

小麦秸秆及其生物炭添加对黄绵土表面电化学性质的影响

open access: yesShuitu Baochi Xuebao, 2022
土壤表面电化学性质是土壤具有肥力的重要基础, 研究小麦秸秆及其生物炭添加对黄绵土表面电化学性质的影响, 可为黄绵土耕地质量的提升及可持续利用、减少土壤侵蚀提供重要的理论及实践依据。通过室内恒温培养试验, 设置对照(CK)、1%秸秆(J1)、3%秸秆(J3)、5%秸秆(J5)、7%秸秆(J7)、10%秸秆(J10)和1%生物炭(S1)、3%生物炭(S3)、5%生物炭(S5)、7%生物炭(S7)、10%生物炭(S10)11个处理。培养10个月后采集土壤样品, 采用物质表面性质联合测定法测定表面电化学参数 ...
涂坤   +7 more
doaj  

An assessment of future rewilding potential in the United Kingdom

open access: yesConservation Biology, Volume 38, Issue 4, August 2024.
Abstract Restoring ecosystems is an imperative for addressing biodiversity loss and climate change, and achieving the targets of the Kunming–Montreal Global Biodiversity Framework. One form of restoration, rewilding, may have particular promise but may also be precluded by requirements for other forms of land use now or in the future.
C. Brown, R. Prestele, M. Rounsevell
wiley   +1 more source

Global status, impacts, and management of rocky temperate mesophotic ecosystems

open access: yesConservation Biology, Volume 38, Issue 1, February 2024.
Abstract The ecology and function of rocky temperate mesophotic ecosystems (TMEs) remain poorly understood globally despite their widespread distribution. They typically occur at 20–150 m (the limit of photosynthesis), and on rocky substratum they support rich benthic communities and mobile fauna.
James J. Bell   +5 more
wiley   +1 more source

红薯藤及其生物质炭还田对旱地红壤微生物活性及养分含量的影响

open access: yesShuitu Baochi Xuebao, 2022
为探究红薯藤及其生物质炭还田对旱地红壤微生物活性及养分含量的影响, 通过田间定位试验, 设置5个处理: (1)常规处理(CK); (2)3 000 kg/hm2红薯藤还田(S1);(3)6 000 kg/hm2红薯藤还田(S2);(4)1 000 kg/hm2红薯藤生物质炭还田(BC1);(5)2 000 kg/hm2红薯藤生物质炭还田(BC2), 研究不同剂量红薯藤及其生物质炭还田对红壤微生物活性和养分含量的影响。结果表明: 与CK相比, 在0—10 cm土层中, BC1的土壤基础呼吸增加17.93%,
郜茹茹   +6 more
doaj  

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