期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
Effects of Temperature and Moisture on Soil Organic Matter Decomposition Along Elevation Gradients on the Changbai Mountains, Northeast China 被引量:15
1
作者 WANG Dan HE Nianpeng +4 位作者 WANG Qing lv yuliang WANG Qiufeng XU Zhiwei ZHU Jianxing 《Pedosphere》 SCIE CAS CSCD 2016年第3期399-407,共9页
Decomposition of soil organic matter(SOM) is of importance for CO_2 exchange between soil and atmosphere and soil temperature and moisture are considered as two important factors controlling SOM decomposition. In this... Decomposition of soil organic matter(SOM) is of importance for CO_2 exchange between soil and atmosphere and soil temperature and moisture are considered as two important factors controlling SOM decomposition. In this study, soil samples were collected at 5 elevations ranging from 753 to 2 357 m on the Changbai Mountains in Northeast China, and incubated under different temperatures(5, 10, 15, 20, 25, and 30?C) and soil moisture levels(30%, 60%, and 90% of saturated soil moisture) to investigate the effects of both on SOM decomposition and its temperature sensitivity at different elevations. The results showed that incubation temperature(F = 1 425.10, P < 0.001), soil moisture(F = 1 327.65, P < 0.001), and elevation(F = 1 937.54, P < 0.001) all had significant influences on the decomposition rate of SOM. The significant effect of the interaction of incubation temperature and soil moisture on the SOM decomposition rate was observed at all the 5 sampling elevations(P < 0.001). A two-factor model that used temperature and moisture as variables fitted the SOM decomposition rate well(P < 0.001) and could explain 80%–93% of the variation of SOM decomposition rate at the 5 elevations. Temperature sensitivity of SOM decomposition, expressed as the change of SOM decomposition rate in response to a 10?C increase in temperature(Q_(10)), was significantly different among the different elevations(P < 0.01), but no apparent trend with elevation was discernible. In addition, soil moisture and incubation temperature both had great impacts on the Q_(10) value(P < 0.01), which increased significantly with increasing soil moisture or incubation temperature. Furthermore, the SOM decomposition rate was significantly related to soil total Gram-positive bacteria(R^2= 0.33, P < 0.01) and total Gram-negative bacteria(R^2= 0.58, P < 0.001). These findings highlight the importance of soil moisture to SOM decomposition and its Q_(10) value,which needs to be emphasized under warming climate scenarios. 展开更多
关键词 Gram-negative bacteria Gram-positive bacteria saturated soil moisture soil respiration temperature sensitivity warming climate scenarios
原文传递
Q345B钢板直角折弯开裂原因分析 被引量:4
2
作者 王喜攀 张占杰 +2 位作者 屈晓彬 吕玉良 宋君君 《山西冶金》 CAS 2022年第2期56-57,128,共3页
针对20 mm厚Q345B钢板直角折弯过程中出现开裂现象,采用金相显微镜、扫描电镜和能谱分析等进行原因分析,结果表明:Q345B钢板直角折弯开裂主要是由于钢板1/4处较多MnS聚集及中心偏析严重,偏析处存在较多贝氏体组织。通过一系列措施,改善... 针对20 mm厚Q345B钢板直角折弯过程中出现开裂现象,采用金相显微镜、扫描电镜和能谱分析等进行原因分析,结果表明:Q345B钢板直角折弯开裂主要是由于钢板1/4处较多MnS聚集及中心偏析严重,偏析处存在较多贝氏体组织。通过一系列措施,改善其性能指标,避免此类问题重复出现。 展开更多
关键词 Q345B 钢板 直角折弯 原因分析 控制措施
在线阅读 下载PDF
恶性胸腺瘤的外科治疗效果观察 被引量:1
3
作者 段浩清 吕玉良 卢秋良 《实用癌症杂志》 2019年第12期2012-2013,共2页
目的探讨恶性胸腺瘤的手术治疗效果。方法回顾分析手术治疗并经术后病理证实的恶性胸腺瘤58例,其中合并重症肌无力49例(43例眼肌型)。52例行完全性切除,6例行肿瘤+胸腺全切除。结果围手术期无死亡病例。术后48例辅助放疗,2例辅助化疗。4... 目的探讨恶性胸腺瘤的手术治疗效果。方法回顾分析手术治疗并经术后病理证实的恶性胸腺瘤58例,其中合并重症肌无力49例(43例眼肌型)。52例行完全性切除,6例行肿瘤+胸腺全切除。结果围手术期无死亡病例。术后48例辅助放疗,2例辅助化疗。49例获得随访,Ⅱ期5年生存率76.3%(29/38);Ⅲ期5年生存率66.7%(12/18);Ⅳ期5年生存率0%。结论恶性胸腺瘤首选手术切除,手术应尽可能做到纵隔脂肪淋巴组织的清扫。 展开更多
关键词 恶性胸腺瘤 手术 预后
暂未订购
45#钢浅表层下水波纹形成原因分析 被引量:1
4
作者 吕玉良 李忠波 +3 位作者 张占杰 庞百鸣 屈晓彬 王喜攀 《河北冶金》 2022年第8期64-69,共6页
45#钢板上表面机加工约5 mm后出现了类似裂纹形貌的水波纹,硬度异常,导致刀具损耗增大,生产成本增加。采用低倍检测、磁粉、渗透和超声波探伤、直读光谱仪、维氏硬度计、金相显微镜分别对钢板的组织、硬度进行了分析,并通过CCT曲线模拟... 45#钢板上表面机加工约5 mm后出现了类似裂纹形貌的水波纹,硬度异常,导致刀具损耗增大,生产成本增加。采用低倍检测、磁粉、渗透和超声波探伤、直读光谱仪、维氏硬度计、金相显微镜分别对钢板的组织、硬度进行了分析,并通过CCT曲线模拟结果,结合连铸工艺,对水波纹的形成原因进行了详细分析,提出了改进措施。结果表明,水波纹并非裂纹缺陷,只存在于钢板上表面,打磨后可消失;该处维氏硬度高于基体,存在C、Mn成分偏析,组织为回火索氏体;非金属夹杂物主要为硫化物夹杂,分布不均。工艺排查原因为连铸机二冷段漏水,通过加强设备维保、调整辊缝大小、控制拉速在0.75~0.85 m/min、过热度在10~25℃等工艺措施,水波纹问题得到了解决。 展开更多
关键词 水波纹 硬度 偏析 二冷 辊缝 拉速 过热度
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部