Wanmao Liu , Yuee Liu , Guangzhou Liu , Ruizhi Xie , Bo Ming , Yunshan Yang , Xiaoxia Guo , Keru Wang , Jun Xue , Yonghong Wang , Rulang Zhao , Wenjie Zhang , Yongjun Wang , Shaofeng Bian , Hong Ren , Xiaoyan Zhao , Peng Liu , Jianzhi Chang , Guohe Zhang , Jiayou Liu , Peng Hou
{"title":"Estimation of maize straw production and appropriate straw return rate in China","authors":"Wanmao Liu , Yuee Liu , Guangzhou Liu , Ruizhi Xie , Bo Ming , Yunshan Yang , Xiaoxia Guo , Keru Wang , Jun Xue , Yonghong Wang , Rulang Zhao , Wenjie Zhang , Yongjun Wang , Shaofeng Bian , Hong Ren , Xiaoyan Zhao , Peng Liu , Jianzhi Chang , Guohe Zhang , Jiayou Liu , Peng Hou","doi":"10.1016/j.agee.2022.107865","DOIUrl":null,"url":null,"abstract":"<div><p>Accurate estimation of maize (<em>Zea mays</em><span> L.) straw production and exploration of appropriate straw return rate have important reference for guiding the comprehensive utilization of crop straw. In this study, we estimated the maize straw production (including aboveground straw and root straw) in recent ten years (2009–2018) of the four largest maize growing regions across China using the latest obtained region-specific maize straw index and root-shoot ratio and then determined the appropriate straw return rate of different regions based on the carbon (C) balance between straw C input and the total C emissions generated in maize cultivation. Our results showed that there were significant differences in maize straw index (MSI) and root-shoot ratio between different maize growing regions in China with spatial distribution trends of Huanghuaihai (HM) > North (NM) > Southwest (SW) > Northwest (NW) maize regions and SW > NW > NM > HM, respectively. On average, in the recent ten years, the total maize straw production of the four major regions was 216.03 Mt yr</span><sup>−1</sup>, including 192.73 Mt yr<sup>−1</sup> for the aboveground straw production and 23.30 Mt yr<sup>−1</sup><span> for root straw production. Nationally, when the maize straw return rate was 70.4% (45.8%, 57.4%, 62.2% and 84.5% in SW, HM, NW and NM respectively), the straw C input into soil can theoretically counterbalance the total C emission generated in maize cultivation. Additionally, the total soil organic C sequestration increased from 11.26 to 18.88 Mt C yr</span><sup>−1</sup> for the whole four regions under the scenarios of 0%, 25%, 50%, 75% and 100% maize straw return.</p></div>","PeriodicalId":7512,"journal":{"name":"Agriculture, Ecosystems & Environment","volume":"328 ","pages":"Article 107865"},"PeriodicalIF":6.0000,"publicationDate":"2022-04-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"13","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Agriculture, Ecosystems & Environment","FirstCategoryId":"97","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S0167880922000147","RegionNum":1,"RegionCategory":"农林科学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"AGRICULTURE, MULTIDISCIPLINARY","Score":null,"Total":0}
引用次数: 13
Abstract
Accurate estimation of maize (Zea mays L.) straw production and exploration of appropriate straw return rate have important reference for guiding the comprehensive utilization of crop straw. In this study, we estimated the maize straw production (including aboveground straw and root straw) in recent ten years (2009–2018) of the four largest maize growing regions across China using the latest obtained region-specific maize straw index and root-shoot ratio and then determined the appropriate straw return rate of different regions based on the carbon (C) balance between straw C input and the total C emissions generated in maize cultivation. Our results showed that there were significant differences in maize straw index (MSI) and root-shoot ratio between different maize growing regions in China with spatial distribution trends of Huanghuaihai (HM) > North (NM) > Southwest (SW) > Northwest (NW) maize regions and SW > NW > NM > HM, respectively. On average, in the recent ten years, the total maize straw production of the four major regions was 216.03 Mt yr−1, including 192.73 Mt yr−1 for the aboveground straw production and 23.30 Mt yr−1 for root straw production. Nationally, when the maize straw return rate was 70.4% (45.8%, 57.4%, 62.2% and 84.5% in SW, HM, NW and NM respectively), the straw C input into soil can theoretically counterbalance the total C emission generated in maize cultivation. Additionally, the total soil organic C sequestration increased from 11.26 to 18.88 Mt C yr−1 for the whole four regions under the scenarios of 0%, 25%, 50%, 75% and 100% maize straw return.
准确估算玉米(Zea mays L.)秸秆产量,探索适宜的秸秆还田率,对指导作物秸秆的综合利用具有重要参考意义。本研究利用最新获得的玉米秸秆区域特征指数和根冠比估算了中国4个最大玉米产区近10年(2009-2018年)的玉米秸秆产量(包括地上秸秆和根秸秆),并基于玉米种植过程中秸秆C投入与碳排放总量之间的碳(C)平衡,确定了不同区域适宜的秸秆还原率。结果表明:中国不同玉米产区玉米秸秆指数(MSI)和根冠比存在显著差异,黄淮海(HM) >北(NM) >西南(SW) >西北(NW)玉米产区和西南地区;西北祝辞纳米比;嗯,分别。近10年,4个主要区域玉米秸秆总产量平均为21603 Mt yr - 1,其中地上秸秆产量192.73 Mt yr - 1,根秸秆产量2330 Mt yr - 1。在全国范围内,当玉米秸秆还还率为70.4%(西南、HM、西北和NM分别为45.8%、57.4%、62.2%和84.5%)时,秸秆C输入土壤理论上可以抵消玉米种植产生的总碳排放。此外,在玉米秸秆还田0%、25%、50%、75%和100%的情况下,4个地区土壤有机碳固存总量从11.26 Mt C yr - 1增加到18.88 Mt C yr - 1。
期刊介绍:
Agriculture, Ecosystems and Environment publishes scientific articles dealing with the interface between agroecosystems and the natural environment, specifically how agriculture influences the environment and how changes in that environment impact agroecosystems. Preference is given to papers from experimental and observational research at the field, system or landscape level, from studies that enhance our understanding of processes using data-based biophysical modelling, and papers that bridge scientific disciplines and integrate knowledge. All papers should be placed in an international or wide comparative context.