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41.
China’s large population and deteriorating environment have created great concern related to the sustainability of food production, especially since details related to this topic remain poorly studied. Thus, an integrated analysis of both crop yield and cultivated area is essential for gaining a better understanding of cereal grain production in China and for making corresponding policies designed to achieve food security. In this study, we adopt trend analysis of both provincial yield and cultivated area to assess the subsequent provincial-level cereal production sustainability between 1980 and 2011 with the goal of providing a better understanding of regional agricultural development. The results indicate that while maize shows the most promise for yield improvement, rice and wheat production is experiencing substantial yield stagnation among most provinces across mainland China. In addition, the trends in spatial patterns are prominently different from those of yields. The sizes of the main rice- and wheat-growing areas in China have declined greatly, suggesting that the related production of these cereals should attract more attention from land management planners and farmers. Specifically, the south-eastern coastal provinces have largely failed to sustain both crop yield and area, while the north-eastern provinces have witnessed thriving agricultural production during the last three decades. Moreover, we find that cereal production in China is significantly affected by governmental policies related to the agricultural sector. Thus, this analysis of food production in China will help policymakers to better understand how the potential implications of food security in China may be applicable to countries worldwide. 相似文献
42.
Zhang Xiaoli Cai Xuewei Wang Zhaowei Yang Xing Li Shan Liang Guiwei Xie Xiaoyun 《Environmental science and pollution research international》2021,28(11):13375-13393
Environmental Science and Pollution Research - A large amount of biochar-derived dissolved organic matter (BDOM) will be released into the environment with biochars application into repairing... 相似文献
43.
Geochemistry of heavy metal-contaminated sediments from the Four River inlets of Dongting lake,China
Fang Xiaohong Peng Bo Song Zhaoliang Wu Sicheng Chen Danting Zhao Yafang Liu Jing Dai Yanan Tu Xianglin 《Environmental science and pollution research international》2021,28(22):27593-27613
Environmental Science and Pollution Research - The concentrations of major and trace elements in the sediments from the Four River inlets of Dongting Lake were analysed. The results show that the... 相似文献
44.
Liu Xiaohui Wei Jia Hou Liangang Zhu Yuhan Wu Yaodong Xing Luyi Zhang Yifei Li Jun 《Environmental science and pollution research international》2021,28(28):37448-37458
Environmental Science and Pollution Research - In the process of water treatment, excessive nitrogen and phosphorus pollutants are of great concern. Therefore, we prepared nanoscale zerovalent iron... 相似文献
45.
Su Wei Li Xinyan Zhang Hongshuo Xing Yi Liu Ping Cai Changqing 《Environmental science and pollution research international》2021,28(35):47838-47855
Environmental Science and Pollution Research - The pollution of heavy metals (HMs) in the soil has become one of the important factors affecting the national environment and human health.... 相似文献
46.
铁炭内电解垂直流人工湿地对污水厂尾水深度脱氮效果 总被引:2,自引:1,他引:1
针对污水厂尾水总氮(TN)含量偏高、微生物可利用碳源低的问题,构建铁炭内电解垂直流人工湿地(ICIE-VFCW)装置,研究了ICIE-VFCW对尾水的处理效果,并采用紫外-可见光光谱(UV-VIS)、凝胶过滤色谱(GFC),进一步探讨了ICIEVFCW强化脱氮机制.结果表明,ICIE-VFCW可提高系统对尾水中COD的去除,出水COD可稳定在30 mg·L~(-1)以下,全年、暖季、寒季COD平均去除率较普通垂直流人工湿地分别可提高10.16%、9.81%、11.22%.系统出水TN可维持在10 mg·L~(-1)以下,全年、暖季、寒季TN平均去除率较普通垂直流人工湿地分别提高13.72%、12.90%、16.17%.经过人工湿地处理后,污水中有机物的腐殖度、芳香度及相对分子质量(Mr)均有所下降,且ICIE-VFCW中Mr下降更为明显.湿地基质掺杂铁炭可促进尾水中大分子有机物转化为小分子,为微生物提供更多可利用碳源,从而提高脱氮效率. 相似文献
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以辽宁沿海地区陆域水环境风险调查为基础,借鉴了国际海事组织《73/78防污公约》和《IBC规则》等相关管理要求及技术规定,构建了风险识别及评估体系,并对辽宁近岸海域的水环境风险状况进行了调查评估.共识别出近岸海域水环境风险源128个,其中以大连地区近岸海域水环境风险源分布最为集中,风险行业主要集中在石化加工、化学原料制造,以及原油码头、储油罐区等行业企业. 相似文献
50.
为保证出水水质稳定并提高氨氮去除率,实现CANON工艺的优化,利用SBR反应器进行了基于实时控制技术的CANON工艺稳定性研究.试验过程中,温度控制在30℃±1℃,pH 7~8,通过反应过程中氨氮、硝态氮、亚硝态氮和pH、DO、ORP的变化规律,制定了可行的实时控制策略.结果表明,进水氨氮浓度为917~1 540 mg·L~(-1)时,以6 mg·L~(-1)的剩余氨氮浓度作为控制参数可以满足工艺稳定性的要求,但氨氮传感器存在费用昂贵和误差较大等问题.采用pH、DO和ORP曲线的平台和特征点作为自控参数,可以维持CANON工艺的长期稳定运行,保证氨氮去除率平均维持在99%以上且出水水质稳定. 相似文献